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Yamamoto, Ryoichi

Graduate School of Engineering, Division of Chemical Engineering Professor

Yamamoto, Ryoichi
list
    Last Updated :2025/04/22

    Basic Information

    Faculty

    • Faculty of Engineering

    Concurrent Affiliation

    • Center for the Promotion of Interdisciplinary Education and Research (C-PiER), 日本-エジプト連携教育研究ユニット, 教授
    • Center for the Promotion of Interdisciplinary Education and Research (C-PiER), スーパーグローバルコース 化学系ユニット

    Professional Memberships

    • 化学工学会
    • 分子シミュレーション研究会
    • 日本物理学会
    • Chemical Engineering Society of Japan
    • the molecular simulation society of Japan
    • Japanese physical society

    Academic Degree

    • 修士(工学)(神戸大学)
    • 博士(工学)(京都大学)

    Academic Resume (Graduate Schools)

    • 神戸大学, 大学院工学研究科修士課程化学工学専攻, 修了

    Academic Resume (Undergraduate School/Majors)

    • 神戸大学, 工学部化学工学科, 卒業

    Research History

    • From Oct. 2008, To Present
      Kyoto University, Graduate School of Engineering Department of Chemical Engineering, Professor
    • From Oct. 2004, To Sep. 2008
      Kyoto University, Graduate School of Engineering Department of Chemical Engineering, Associate Professor
    • From Jan. 2000, To Sep. 2004
      Kyoto University, Graduate School of Science Division of Physics and Astronomy, Lecturer
    • From Mar. 1996, To Dec. 1999
      Kyoto University, Graduate School of Science Division of Physics and Astronomy, Assistant Professor
    • From Sep. 1994, To Feb. 1996
      Kobe University, Graduate School of Science and Technology, Assistant Professor
    • From Oct. 1989, To Mar. 1990
      Kobe University, Faculty of Engineering, Research Student
    • From Apr. 1988, To Jul. 1989
      株式会社本田技研工業

    Language of Instruction

    • English

    ID,URL

    researchmap URL

    list
      Last Updated :2025/04/22

      Research

      Research Interests

      • cells and tissues
      • Active Matter
      • Soft Matter
      • Colloids
      • computer Simulation
      • 移動現象
      • Glass
      • Liquid Crystal
      • Colloid
      • Computer Simulation
      • Transport Phenomena

      Research Areas

      • Informatics, Computational science
      • Natural sciences, Bio-, chemical, and soft-matter physics
      • Manufacturing technology (mechanical, electrical/electronic, chemical engineering), Transfer phenomena and unit operations

      Papers

      • Understanding Nash epidemics
        Simon K. Schnyder; John J. Molina; Ryoichi Yamamoto; Matthew S. Turner
        Proceedings of the National Academy of Sciences, 27 Feb. 2025
      • 遊走メカニズムを数理モデルから理解する
        多羅間 充輔; 山本 量一
        生物物理 / 日本生物物理学会 編, Dec. 2023, Peer-reviewed
      • KAPSEL-Direct numerical simulations of electrophoresis of charged colloids
        Kang Kim; Yasuya Nakayama; Ryoichi Yamamoto
        Polymer Preprints, Japan, 2006
      • Autonomous navigation of smart microswimmers in non-uniform flow fields
        Krongtum Sankaewtong; John J. Molina; Ryoichi Yamamoto
        Physics of Fluids, 01 Apr. 2024
      • Direct numerical simulations of suspension of disk-shaped particles
        Adnan Hamid; Muhammad Shakaib; John J. Molina; M. Danyal Qasim; Bilal Fareed; Muhammad Uzair; Ryoichi Yamamoto
        Physics of Fluids, 01 Apr. 2024
      • 外部トルクによって駆動されるコロイド粒子系の直接数値シミュレーション
        今村 舜; 大山 倫弘; John Jairo Molina; 山本 量一
        日本物理学会講演概要集, 2020
      • 自己泳動粒子分散系における方向秩序形成メカニズムの理解
        大山 倫弘; John Jairo Molina; 山本 量一
        日本物理学会講演概要集, Jan. 2016
      • 28am2-F-4 高分子液体の熱潤滑に対するマルチスケールモデリング
        安田 修悟; 山本 量一
        マイクロ・ナノ工学シンポジウム, Jan. 2015
      • パイプ内での自走粒子の方向秩序形成について
        大山 倫弘; John Jairo Molina; 山本 量一
        日本物理学会講演概要集, Jan. 2017
      • 1. Particle characteristics and measurement 1.10 motion of a single particle 1.10.3 brownian motion
        Yamamoto, R.
        Journal of the Society of Powder Technology, Japan, 2019
      • Rational social distancing policy during epidemics with limited healthcare capacity.
        Simon K Schnyder; John J Molina; Ryoichi Yamamoto; Matthew S Turner
        PLoS computational biology, Oct. 2023, Peer-reviewed
      • Learning to swim efficiently in a nonuniform flow field.
        Krongtum Sankaewtong; John J Molina; Matthew S Turner; Ryoichi Yamamoto
        Physical review. E, Jun. 2023, Peer-reviewed, Last author, Corresponding author
      • Rational social distancing in epidemics with uncertain vaccination timing.
        Simon K Schnyder; John J Molina; Ryoichi Yamamoto; Matthew S Turner
        PloS one, 2023, Peer-reviewed
      • Dynamics of a Model Microswimmer in the Vicinity of a Liquid Droplet
        Chao Feng; John J. Molina; Ryoichi Yamamoto
        Journal of the Physical Society of Japan, 15 Jul. 2023, Peer-reviewed, Last author, Corresponding author
      • Dynamics of microswimmers near a liquid–liquid interface with viscosity difference
        Chao Feng; John J. Molina; Matthew S. Turner; Ryoichi Yamamoto
        Physics of Fluids, 01 May 2023, Peer-reviewed, Last author, Corresponding author
      • Collective Motion of Quincke Rollers with Fully Resolved Hydrodynamics
        Shun Imamura; Kohei Sawaki; John J. Molina; Matthew S. Turner; Ryoichi Yamamoto
        Advanced Theory and Simulations, Apr. 2023, Peer-reviewed, Last author, Corresponding author
      • Direct numerical simulations of isolated rigid particles; Validation of smooth profile method
        M Uzair; MD Qasim; MA Bhatti; AA Zaidi; JJ Molina; R Yamamoto; A Hamid
        POWDER TECHNOLOGY, Mar. 2023, Peer-reviewed
      • Dynamics of microswimmers near a soft penetrable interface
        Chao Feng; John J. Molina; Matthew S. Turner; Ryoichi Yamamoto
        Physical Review Research, 21 Dec. 2022, Peer-reviewed, Last author, Corresponding author
      • Mechanochemical subcellular-element model of crawling cells
        Tarama, M.; Mori, K.; Yamamoto, R.
        Frontiers in Cell and Developmental Biology, Dec. 2022, Peer-reviewed, Last author, Corresponding author
      • X線光子相関分光法を用いたガラス転移近傍での動的不均一性の研究
        星野 大樹; 山本 量一
        放射光 : 日本放射光学会誌 = Journal of the Japanese Society for Synchrotron Radiation Research / 日本放射光学会 編, Sep. 2022, Peer-reviewed
      • Competition between cell types under cell cycle regulation with apoptosis
        Jintao Li; Simon K. Schnyder; Matthew S. Turner; Ryoichi Yamamoto
        Physical Review Research, 29 Aug. 2022, Peer-reviewed, Last author, Corresponding author
      • Direct numerical simulations of a microswimmer in a viscoelastic fluid
        Takuya Kobayashi; Gerhard Jung; Yuki Matsuoka; Yasuya Nakayama; John J. Molina; Ryoichi Yamamoto
        Soft Matter, 2023, Peer-reviewed, Last author, Corresponding author
      • Relation between dynamic heterogeneities observed in scattering experiments and four-body correlations
        Kohsei Kanayama; Taiki Hoshino; Ryoichi Yamamoto
        Physical Review Research, 06 Apr. 2022, Peer-reviewed, Last author, Corresponding author
      • コロイド分散系の直接数値計算
        山本 量一
        粉砕 = The micromeritics, 2022
      • アクティブマターの物理学 : 特異な集団運動の発生機構を理解する
        山本 量一
        数理科学, Nov. 2021, Peer-reviewed
      • Hybrid Computer Simulation for Colloidal Dispersions
        YAMAMOTO Ryoichi
        Kobunshi, 01 Dec. 2007
      • Direct Numerical Simulations of Charged Colloidal Dispersions-Basis and Usage of KAPSEL-:Basis and Usage of KAPSEL
        Kim Kang; Nakayama Yasuya; Yamamoto Ryoichi
        Journal of the Research Association of Powder Technology, Japan, 2007
      • Kinetic Heterogeneities in Highly Supercooled Liquids
        YAMAMOTO Ryoichi; ONUKI Akira
        The Review of High Pressure Science and Technology, 20 May 1999
      • Developments of Accurate Simulations for Particle Dispersions
        YAMAMOTO Ryoichi; J. MOLINA John
        Hosokawa Powder Technology Foundation ANNUAL REPORT, 2014
      • Role of the Cell Cycle in Collective Cell Dynamics
        Jintao Li; Simon K. Schnyder; Matthew S. Turner; Ryoichi Yamamoto
        Physical Review X, 30 Jul. 2021, Peer-reviewed, Last author, Corresponding author
      • Smoothed profile method for direct numerical simulations of hydrodynamically interacting particles
        Ryoichi Yamamoto; John J. Molina; Yasuya Nakayama
        Soft Matter, Apr. 2021, Peer-reviewed, Lead author, Corresponding author
      • Control of cell colony growth by contact inhibition
        Simon K. Schnyder; John J. Molina; Ryoichi Yamamoto
        Scientific Reports, Dec. 2020, Peer-reviewed, Last author, Corresponding author
      • Dynamics of a chiral swimmer sedimenting on a flat plate
        Federico Fadda; John Jairo Molina; Ryoichi Yamamoto
        Physical Review E, 18 May 2020, Peer-reviewed, Last author, Corresponding author
      • Eulerian/Lagrangian formulation for the elasto-capillary deformation of a flexible fibre
        Gregory Lecrivain; Taisa Beatriz Pacheco Grein; Ryoichi Yamamoto; Uwe Hampel; Takashi Taniguchi
        JOURNAL OF COMPUTATIONAL PHYSICS, May 2020, Peer-reviewed
      • Direct observation of the attachment behavior of hydrophobic colloidal particles onto a bubble surface
        Nozomi Arai; Satoshi Watanabe; Minoru T. Miyahara; Ryoichi Yamamoto; Uwe Hampel; Gregory Lecrivain
        Soft Matter, 2020, Peer-reviewed
      • A numerical study of sedimentation of rod like particles using smooth profile method
        Hamid, A.; Arshad, A.B.; Mehdi, S.; Qasim, M.D.; Ullah, A.; Molina, J.J.; Yamamoto, R.
        International Journal of Multiphase Flow, 2020, Peer-reviewed, Last author
      • Modeling the mechanosensitivity of fast-crawling cells on cyclically stretched substrates
        John J. Molina; Ryoichi Yamamoto
        Soft Matter, 2019, Peer-reviewed
      • Spontaneous spatiotemporal ordering of shape oscillations enhances cell migration
        Matteo Campo; Simon K. Schnyder; John J. Molina; Thomas Speck; Ryoichi Yamamoto
        Soft Matter, 2019, Peer-reviewed
      • Diffuse interface model to simulate the rise of a fluid droplet across a cloud of particles
        Lecrivain, G.; Kotani, Y.; Yamamoto, R.; Hampel, U.; Taniguchi, T.
        Physical Review Fluids, Sep. 2018, Peer-reviewed
      • Reynolds-number-dependent dynamical transitions on hydrodynamic synchronization modes of externally driven colloids
        Norihiro Oyama; Kosuke Teshigawara; John Jairo Molina; Ryoichi Yamamoto; Takashi Taniguchi
        Physical Review E, 30 Mar. 2018, Peer-reviewed
      • Mechanics of cell crawling by means of force-free cyclic motion
        Mitsusuke Tarama; Ryoichi Yamamoto
        Journal of the Physical Society of Japan, 2018, Peer-reviewed
      • Field-induced dipolar attraction between like-charged colloids
        Chunyu Shih; John J. Molina; Ryoichi Yamamoto
        Soft Matter, 2018, Peer-reviewed
      • Direct numerical simulations of correlated settling particles
        Muhammad Shakeel; Adnan Hamid; Atta Ullah; John J. Molina; Ryoichi Yamamoto
        Journal of the Physical Society of Japan, 2018, Peer-reviewed
      • Do hydrodynamically assisted binary collisions lead to orientational ordering of microswimmers?
        Norihiro Oyama; John Jairo Molina; Ryoichi Yamamoto
        EUROPEAN PHYSICAL JOURNAL E, Nov. 2017, Peer-reviewed
      • Simulations of Model Microswimmers with Fully Resolved Hydrodynamics
        Norihiro Oyama; John J. Molina; Ryoichi Yamamoto
        JOURNAL OF THE PHYSICAL SOCIETY OF JAPAN, Oct. 2017, Peer-reviewed
      • Collective motion of cells crawling on a substrate: roles of cell shape and contact inhibition
        Simon K. Schnyder; John J. Molina; Yuki Tanaka; Ryoichi Yamamoto
        SCIENTIFIC REPORTS, Jul. 2017, Peer-reviewed
      • Direct numerical simulation of an arbitrarily shaped particle at a fluidic interface
        Lecrivain, Gregory; Yamamoto, Ryoichi; Hampel, Uwe; Taniguchi, Takashi
        Physical Review E, 2017, Peer-reviewed
      • Microstructure of Rod like Sedimenting Particles: Direct Numerical Simulations
        Samia Mehdi; Adnan Hamid; Atta Ullah; Ryoichi Yamamoto
        PROCEEDINGS OF 2017 14TH INTERNATIONAL BHURBAN CONFERENCE ON APPLIED SCIENCES AND TECHNOLOGY (IBCAST), 2017
      • Synchronized molecular-dynamics simulation for the thermal lubrication of a polymeric liquid between parallel plates
        Yasuda, Shugo; Yamamoto, Ryoichi
        Computers & Fluids, 2016, Peer-reviewed
      • Rheological evaluation of colloidal dispersions using the smoothed profile method: formulation and applications
        Molina, John J.; Otomura, Kotaro; Shiba, Hayato; Kobayashi, Hideki; Sano, Masaki; Yamamoto, Ryoichi
        Journal of Fluid Mechanics, 2016, Peer-reviewed
      • Purely hydrodynamic origin for swarming of swimming particles
        Oyama, Norihiro; Molina, John Jairo; Yamamoto, Ryoichi
        Physical Review E, 2016, Peer-reviewed
      • Direct numerical simulation of a particle attachment to an immersed bubble
        Lecrivain, Gregory; Yamamoto, Ryoichi; Hampel, Uwe; Taniguchi, Takashi
        Physics of Fluids, 2016, Peer-reviewed
      • GRAVITATIONAL SETTLING OF GLASS FIBERS ON AN AIR BUBBLE
        Gregory Lecrivain; Giacomo Petrucci; Uwe Hampel; Ryoichi Yamamoto
        PROCEEDINGS OF THE ASME/JSME/KSME JOINT FLUIDS ENGINEERING CONFERENCE, 2015, VOL 1A, SYMPOSIA, PT 2, 2016
      • KAPSEL: Colloidal dispersion simulator
        Ryoichi Yamamoto; John Jairo Molina
        Computer Simulation of Polymeric Materials: Applications of the OCTA System, 01 Jan. 2016, Peer-reviewed
      • Dynamic polarisation of a charged colloid in an oscillating electric field
        Chunyu Shih; John J. Molina; Ryoichi Yamamoto
        MOLECULAR PHYSICS, Sep. 2015, Peer-reviewed
      • Simulation studies of microstructure of colloids in sedimentation
        Hamid, Adnan; Molina, John Jairo; Yamamoto, Ryoichi
        Molecular Simulation, 2015, Peer-reviewed
      • Multiscale simulation for thermo-hydrodynamic lubrication of a polymeric liquid between parallel plates
        Yasuda, Shugo; Yamamoto, Ryoichi
        Molecular Simulation, 2015, Peer-reviewed
      • Mutual information reveals multiple structural relaxation mechanisms in a model glass former
        Dunleavy, Andrew J.; Wiesner, Karoline; Yamamoto, Ryoichi; Royall, C. Patrick
        Nature Communications, 2015, Peer-reviewed
      • Attachment of solid elongated particles on the surface of a stationary gas bubble
        Lecrivain, Gregory; Petrucci, Giacomo; Rudolph, Martin; Hampel, Uwe; Yamamoto, Ryoichi
        International Journal of Multiphase Flow, 2015, Peer-reviewed
      • Dynamic electrophoresis of charged colloids in an oscillating electric field
        Chunyu Shih; Ryoichi Yamamoto
        Physical Review E - Statistical, Nonlinear, and Soft Matter Physics, 26 Jun. 2014, Peer-reviewed
      • Diffusion of colloidal particles in swimming suspensions
        Molina, John J.; Yamamoto, Ryoichi
        Molecular Physics, 2014, Peer-reviewed
      • Synchronized Molecular-Dynamics Simulation via Macroscopic Heat and Momentum Transfer: An Application to Polymer Lubrication
        Yasuda, Shugo; Yamamoto, Ryoichi
        Physical Review X, 2014, Peer-reviewed
      • Direct numerical simulations of sedimenting spherical particles at non-zero Reynolds number
        Hamid, A.; Molina, J. J.; Yamamoto, R.
        Rsc Advances, 2014, Peer-reviewed
      • ELKIN2012
        Motoyoshi Kobayashi; Ryoichi Yamamoto; Satoshi Nishimura; Yasuhisa Adachi; Hiroyuki Ohshima
        COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, Jan. 2014, Peer-reviewed
      • Simulating colloids and self-propelled particles with fully resolved hydrodynamics using the smoothed profile method (SPM)
        Yamamoto, Ryoichi; Molina, John J; Tatsumi, Rei
        Hybrid Particle-Continuum Methods in Computational Materials Physics,46, pp. 11-24, Mar. 2013
      • Direct numerical simulations of anisotropic diffusion of spherical particles in sedimentation
        Adnan Hamid; Ryoichi Yamamoto
        Physical Review E - Statistical, Nonlinear, and Soft Matter Physics, 27 Feb. 2013, Peer-reviewed
      • Anisotropic Velocity Fluctuations and Particle Diffusion in Sedimentation
        Hamid, Adnan; Yamamoto, Ryoichi
        Journal of the Physical Society of Japan, 2013, Peer-reviewed
      • Velocity relaxation of a particle in a confined compressible fluid
        Tatsumi, R.; Yamamoto, R.
        Journal of Chemical Physics, 2013, Peer-reviewed
      • Sedimentation at Finite Peclet Number: Direct Numerical Simulation
        Hamid, A.; Yamamoto, R.; Tokuyama, M; Oppenheim, I
        4th International Symposium on Slow Dynamics in Complex Systems: Keep Going Tohoku, 2013, Peer-reviewed
      • Multiscale Modeling for Polymeric Flow: Particle-Fluid Bridging Scale Methods
        Murashima, Takahiro; Yasuda, Shugo; Taniguchi, Takashi; Yamamoto, Ryoichi
        Journal of the Physical Society of Japan, 2013, Peer-reviewed
      • General Constitutive Model for Supercooled Liquids: Anomalous Transverse Wave Propagation
        Mizuno, Hideyuki; Yamamoto, Ryoichi
        Physical Review Letters, 2013, Peer-reviewed
      • Hydrodynamic interactions of self-propelled swimmers
        Molina, John J.; Nakayama, Yasuya; Yamamoto, Ryoichi
        Soft Matter, 2013, Peer-reviewed
      • Propagation of hydrodynamic interactions between particles in a compressible fluid
        Tatsumi, R.; Yamamoto, R.
        Physics of Fluids, 2013, Peer-reviewed
      • Direct numerical simulations of rigid body dispersions. I. Mobility/friction tensors of assemblies of spheres
        Molina, John J.; Yamamoto, Ryoichi
        Journal of Chemical Physics, 2013, Peer-reviewed
      • Sedimentation of non-Brownian spheres at high volume fractions
        Hamid, Adnan; Molina, John J.; Yamamoto, Ryoichi
        Soft Matter, 2013, Peer-reviewed
      • Computer Simulations of Charged Colloids: 2. Electrophoresis and Sedimentation
        Kang Kim; Yasuya Nakayama; Ryoichi Yamamoto
        Electrical Phenomena at Interfaces and Biointerfaces: Fundamentals and Applications in Nano-, Bio-, and Environmental Sciences, 31 Jan. 2012
      • Computer Simulations of Charged Colloids
        Yasuya Nakayama; Kang Kim; Ryoichi Yamamoto
        Electrical Phenomena at Interfaces and Biointerfaces: Fundamentals and Applications in Nano-, Bio-, and Environmental Sciences, 31 Jan. 2012
      • Electrostatic Potential around a Charged Colloidal Particle in an Electrolyte Solution with Ion Strong Coupling
        Uranagase, Masayuki; Taniguchi, Takashi; Yamamoto, Ryoichi
        Journal of the Physical Society of Japan, 2012, Peer-reviewed
      • Dynamical heterogeneity in a highly supercooled liquid under a sheared situation
        Mizuno, Hideyuki; Yamamoto, Ryoichi
        Journal of Chemical Physics, 2012, Peer-reviewed
      • Mechanical responses and stress fluctuations of a supercooled liquid in a sheared non-equilibrium state
        Mizuno, H.; Yamamoto, R.
        European Physical Journal E, 2012, Peer-reviewed
      • Direct numerical simulation of dispersed particles in a compressible fluid
        Tatsumi, Rei; Yamamoto, Ryoichi
        Physical Review E, 2012, Peer-reviewed
      • Two-dimensional lattice liquid models
        Ishimoto, Yukitaka; Murashima, Takahiro; Taniguchi, Takashi; Yamamoto, Ryoichi
        Physical Review E, 2012, Peer-reviewed
      • Acoustic Wave Propagation through a Supercooled Liquid: A Normal Mode Analysis
        Matsuoka, Yuki; Mizuno, Hideyuki; Yamamoto, Ryoichi
        Journal of the Physical Society of Japan, 2012, Peer-reviewed
      • Effect of hydrodynamic interactions on rapid Brownian coagulation of colloidal dispersions
        Matsuoka, Yuki; Fukasawa, Tomonori; Higashitani, Ko; Yamamoto, Ryoichi
        Physical Review E, 2012, Peer-reviewed
      • Lattice-Boltzmann method combined with smoothed-profile method for particulate suspensions
        Jafari, S; Yamamoto, R; Rahnama, M
        Physical Review E, 2011, Peer-reviewed
      • Implementation of Lees-Edwards periodic boundary conditions for direct numerical simulations of particle dispersions under shear flow
        Kobayashi, H; Yamamoto, R
        Journal of Chemical Physics, 2011, Peer-reviewed
      • Dynamical heterogeneity in a highly supercooled liquid: Consistent calculations of correlation length, intensity, and lifetime
        Mizuno, Hideyuki; Yamamoto, Ryoichi
        Physical Review E, 2011, Peer-reviewed
      • Dynamic rheology of a supercooled polymer melt in nonuniform oscillating flows between rapidly oscillating plates
        Yasuda, Shugo; Yamamoto, Ryoichi
        Physical Review E, 2011, Peer-reviewed
      • Reentrant transition in the shear viscosity of dilute rigid-rod dispersions
        Kobayashi, H.; Yamamoto, R.
        Physical Review E, 2011, Peer-reviewed
      • Lifetime of dynamical heterogeneity in a highly supercooled liquid
        Hideyuki Mizuno; Ryoichi Yamamoto
        Physical Review E - Statistical, Nonlinear, and Soft Matter Physics, 13 Sep. 2010, Peer-reviewed
      • Direct simulation of flowing colloidal dispersions by smoothed profile method
        NAKAYAMA, Y; KIM, K; YAMAMOTO, R
        Advanced Powder Technology, 2010, Peer-reviewed
      • Multiscale modeling and simulation for polymer melt flows between parallel plates
        YASUDA, S; YAMAMOTO, R
        PHYSICAL REVIEW E, 2010, Peer-reviewed
      • Tumbling motion of a single chain in shear flow: A crossover from Brownian to non-Brownian behavior
        KOBAYASHI, H; YAMAMOTO, R
        PHYSICAL REVIEW E, 2010, Peer-reviewed
      • A direct numerical simulation method for complex modulus of particle dispersions
        Iwashita, T; Kumagai, T; Yamamoto, R
        European Physical Journal E, 2010, Peer-reviewed
      • SMOOTHED PROFILE METHOD TO SIMULATE COLLOIDAL PARTICLES IN COMPLEX FLUIDS
        Ryoichi Yamamoto; Yasuya Nakayama; Kang Kim
        INTERNATIONAL JOURNAL OF MODERN PHYSICS C, Sep. 2009, Peer-reviewed
      • Velocity Autocorrelation Function of Fluctuating Particles in Incompressible Fluids - Toward Direct Numerical Simulation of Particle Dispersions
        IWASHITA, T; NAKAYAMA, Y; YAMAMOTO, R
        PROGRESS OF THEORETICAL PHYSICS SUPPLEMENT, 2009, Peer-reviewed
      • Short-time motion of Brownian particles in a shear flow
        IWASHITA, T; YAMAMOTO, R
        PHYSICAL REVIEW E, 2009, Peer-reviewed
      • Rheological properties of polymer melt between rapidly oscillating plates: An application of multiscale modeling
        YASUDA, S; YAMAMOTO, R
        EPL, 2009, Peer-reviewed
      • Direct numerical simulations for non-Newtonian rheology of concentrated particle dispersions
        IWASHITA, T; YAMAMOTO, R
        PHYSICAL REVIEW E, 2009, Peer-reviewed
      • A numerical model for Brownian particles fluctuating in incompressible fluids
        IWASHITA, T; NAKAYAMA, Y; YAMAMOTO, R
        JOURNAL OF THE PHYSICAL SOCIETY OF JAPAN, 2008, Peer-reviewed
      • Simulating (electro) hydrodynamic effects in colloidal dispersions: Smoothed profile method
        NAKAYAMA, Y; KIM, K; YAMAMOTO, R
        EUROPEAN PHYSICAL JOURNAL E, 2008, Peer-reviewed
      • On the role of hydrodynamic interactions in colloidal gelation
        YAMAMOTO, R; KIM, K; NAKAYAMA, Y; et al.
        JOURNAL OF THE PHYSICAL SOCIETY OF JAPAN, 2008, Peer-reviewed
      • A model for hybrid simulations of molecular dynamics and computational fluid dynamics
        YASUDA, S; YAMAMOTO, R
        PHYSICS OF FLUIDS, 2008, Peer-reviewed
      • Smoothed Profile Method for Direct Simulation of Flowing (Charged) Colloids in Solvents
        Nakayama, Yasuya; Kim, Kang; Yamamoto, Ryoichi
        AES Technical Reviews Part A: International Journal of Nano and Advanced Engineering Materials, 2008, Peer-reviewed
      • Strict simulations of non-equilibrium dynamics of colloids
        YAMAMOTO, R; KIM, K; NAKAYAMA, Y
        COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2007, Peer-reviewed
      • Direct numerical simulations of electrophoresis of charged colloids
        KIM, K; NAKAYAMA, Y; YAMAMOTO, R
        PHYSICAL REVIEW LETTERS, 2006, Peer-reviewed
      • Supercooled liquids under shear: Computational approach
        YAMAMOTO, R
        2006, Peer-reviewed
      • Direct numerical simulations of electrophoresis of charged colloids (vol. 96, pg 208302, 2006)
        KIM, K; NAKAYAMA, Y; YAMAMOTO, R
        PHYSICAL REVIEW LETTERS, 2006, Peer-reviewed
      • KAPSEL: Kyoto Advanced Particle Simulator for ELectrohydrodynamics-Toward Direct Numerical Simulations of Colloidal Dispersions
        Yamamoto, Ryoichi; Kim, Kang; Nakayama, Yasuya
        Kona, 2006, Peer-reviewed
      • Hydrodynamic effects in colloidal dispersions studied by a new efficient direct simulation
        Yasuya Nakayama; Kang Kim; Ryoichi Yamamoto
        FLOW DYNAMICS, 2006, Peer-reviewed
      • Simulating electrohydrodynamics in charged colloidal dispersions: A smoothed profile method
        Kang Kim; Yasuya Nakayama; Ryoichi Yamamoto
        FLOW DYNAMICS, 2006, Peer-reviewed
      • Molecular dynamics simulation of heat conduction in near-critical fluids
        HAMANAKA, T; YAMAMOTO, R; ONUKI, A
        PHYSICAL REVIEW E, 2005, Peer-reviewed
      • Simulation method to resolve hydrodynamic interactions in colloidal dispersions
        NAKAYAMA, Y; YAMAMOTO, R
        PHYSICAL REVIEW E, 2005, Peer-reviewed
      • Efficient simulations of charged colloidal dispersions: A density functional approach
        KIM, K; YAMAMOTO, R
        MACROMOLECULAR THEORY AND SIMULATIONS, 2005, Peer-reviewed
      • A method to resolve hydrodynamic interactions in colloidal dispersions
        YAMAMOTO, R; NAKAYAMA, Y; KIM, K
        COMPUTER PHYSICS COMMUNICATIONS, 2005, Peer-reviewed
      • A smoothed profile method for simulating charged colloidal dispersions
        KIM, K; NAKAYAMA, Y; YAMAMOTO, R
        COMPUTER PHYSICS COMMUNICATIONS, 2005, Peer-reviewed
      • A smooth interface method for simulating liquid crystal colloid dispersions
        YAMAMOTO, R; NAKAYAMA, Y; KIM, K
        JOURNAL OF PHYSICS-CONDENSED MATTER, 2004, Peer-reviewed
      • Supercooled liquids under shear: Theory and simulation
        MIYAZAKI, K; REICHMAN, DR; YAMAMOTO, R
        PHYSICAL REVIEW E, 2004, Peer-reviewed
      • Entanglements in quiescent and sheared polymer melts
        YAMAMOTO, R; ONUKI, A
        PHYSICAL REVIEW E, 2004, Peer-reviewed
      • Supercooled liquids under shear: Computational approach
        YAMAMOTO, R; MIYAZAKI, K; REICHMAN, DR; TOKUYAMA, M; OPPENHEIM, I
        2004, Peer-reviewed
      • Supercooled liquids under shear: A mode-coupling theory appraoch
        K Miyazaki; R Yamamoto; DR Reichman
        SLOW DYNAMICS IN COMPLEX SYSTEMS, 2004, Peer-reviewed
      • Supercooled fluids under shear: A mode coupling approach.
        MIYAZAKI, K; YAMAMOTO, R; REICHMAN, D
        ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2003, Peer-reviewed
      • Dynamics and rheology of a supercooled polymer melt in shear flow
        YAMAMOTO, R; ONUKI, A
        JOURNAL OF CHEMICAL PHYSICS, 2002, Peer-reviewed
      • Simulating particle dispersions in nematic liquid-crystal solvents
        YAMAMOTO, R
        PHYSICAL REVIEW LETTERS, 2001, Peer-reviewed
      • Equilibrating glassy systems with parallel tempering
        Kob, W; Brangian, C; Stuhn, T; Yamamoto, R
        Computer Simulation Studies in Condensed-Matter Physics Xiii, 2001, Peer-reviewed
      • Dynamics and rheology of a supercooled polymer melt
        R Yamamoto; A Onuki
        STATISTICAL PHYSICS, 2000, Peer-reviewed
      • Replica-exchange molecular dynamics simulation for supercooled liquids
        YAMAMOTO, R; KOB, W
        PHYSICAL REVIEW E, 2000, Peer-reviewed
      • Dynamics of highly supercooled liquids far from equilibrium
        YAMAMOTO, R; ONUKI, A
        JOURNAL OF PHYSICS-CONDENSED MATTER, 2000, Peer-reviewed
      • Dynamics and rheology of a supercooled polymer melt
        Yamamoto, R.; Onuki, A.
        Progress of Theoretical Physics Supplement, 2000, Peer-reviewed
      • Apparent finite-size effects in the dynamics of supercooled liquids
        KIM, K; YAMAMOTO, R
        PHYSICAL REVIEW E, 2000, Peer-reviewed
      • Heterogeneity and finite size effects in the dynamics of supercooled liquids
        YAMAMOTO, R; KIM, K
        JOURNAL DE PHYSIQUE IV, 2000, Peer-reviewed
      • Molecular dynamics study of a phase-separating fluid mixture under shear flow
        YAMAMOTO, R; ZENG, XC
        PHYSICAL REVIEW E, 1999, Peer-reviewed
      • Can thin disk-like ice clusters be more stable than compact droplet-like ice clusters?
        TANAKA, H; YAMAMOTO, R; KOGA, K; et al.
        CHEMICAL PHYSICS LETTERS, 1999, Peer-reviewed
      • Dynamics of highly supercooled liquids
        YAMAMOTO, R; ONUKI, A; TOKUYAMA, M; OPPENHEIM, I
        1999, Peer-reviewed
      • Large scale long-lived heterogeneity in the dynamics of supercooled liquids
        YAMAMOTO, R; ONUKI, A
        INTERNATIONAL JOURNAL OF MODERN PHYSICS C, 1999, Peer-reviewed
      • Heterogeneous diffusion in highly supercooled liquids
        YAMAMOTO, R; ONUKI, A
        PHYSICAL REVIEW LETTERS, 1998, Peer-reviewed
      • Kinetic heterogeneities and non-linear rheology of highly supercooled liquids
        ONUKI, A; YAMAMOTO, R
        JOURNAL OF NON-CRYSTALLINE SOLIDS, 1998, Peer-reviewed
      • Dynamics of highly supercooled liquids: Heterogeneity, rheology, and diffusion
        YAMAMOTO, R; ONUKI, A
        PHYSICAL REVIEW E, 1998, Peer-reviewed
      • Computer simulation of ionic conduction in ZrF4-BaF2 glass .2. Normal-mode analysis
        YAMAMOTO, R; KANO, M; KAWAMOTO, Y
        JOURNAL OF PHYSICS-CONDENSED MATTER, 1997, Peer-reviewed
      • Phase separation in polymer solutions induced by shear
        Onuki, A.; Yamamoto, R.; Taniguchi, T.
        Journal de Physique I, 1997, Peer-reviewed
      • Viscoelastic effects and shear-induced phase separation in polymer solutions
        ONUKI, A; YAMAMOTO, R; TANIGUCHI, T; KAWASAKI, K; LINDMAN, B; OKABAYASHI, H
        1997, Peer-reviewed
      • Nonlinear rheology of a highly supercooled liquid
        YAMAMOTO, R; ONUKI, A
        EUROPHYSICS LETTERS, 1997, Peer-reviewed
      • Kinetic heterogeneities in a highly supercooled liquid
        YAMAMOTO, R; ONUKI, A
        JOURNAL OF THE PHYSICAL SOCIETY OF JAPAN, 1997, Peer-reviewed
      • Volumetric properties of mixtures of 1,4-dioxane and water at high pressures
        MATSUO, S; MIZUGUCHI, Y; TANAKA, Y; et al.
        INTERNATIONAL JOURNAL OF THERMOPHYSICS, 1996, Peer-reviewed
      • Computer simulation of vapor-liquid phase separation
        YAMAMOTO, R; NAKANISHI, K
        MOLECULAR SIMULATION, 1996, Peer-reviewed
      • MONTE-CARLO SIMULATION OF FLUORO PROPANE
        YAMAMOTO, R; KITAO, O; NAKANISHI, K
        FLUID PHASE EQUILIBRIA, 1995, Peer-reviewed
      • MOLECULAR-DYNAMICS SIMULATION OF EU3+-DOPED CHLOROFLUOROZIRCONATE GLASSES
        TAKAHASHI, M; YAMAMOTO, R; KANNO, R; et al.
        JOURNAL OF PHYSICS-CONDENSED MATTER, 1995, Peer-reviewed
      • COMPUTER-SIMULATION OF VAPOR-LIQUID PHASE-SEPARATION IN 2-DIMENSIONAL AND 3-DIMENSIONAL FLUIDS .2. DOMAIN-STRUCTURE
        YAMAMOTO, R; NAKANISHI, K
        PHYSICAL REVIEW B, 1995, Peer-reviewed
      • COMPUTER-SIMULATION OF IONIC-CONDUCTION IN ZRF4-BAF2 GLASS
        YAMAMOTO, R; KOBAYASHI, T; KAWAMOTO, Y
        JOURNAL OF PHYSICS-CONDENSED MATTER, 1995, Peer-reviewed
      • CAN THE VAN-DER-WAALS LOOP VANISH .2. EFFECT OF DOMAIN SIZE
        YAMAMOTO, R; KITAO, O; NAKANISHI, K
        MOLECULAR PHYSICS, 1995, Peer-reviewed
      • VOLUMETRIC PROPERTIES OF MIXTURES OF FLUOROALCOHOLS AND WATER AT HIGH-PRESSURES
        MATSUO, S; YAMAMOTO, R; KUBOTA, H; et al.
        INTERNATIONAL JOURNAL OF THERMOPHYSICS, 1994, Peer-reviewed
      • INTERMOLECULAR INTERACTION OF FLUORO-PROPANES
        YAMAMOTO, R; KITAO, O; NAKANISHI, K
        MOLECULAR SIMULATION, 1994, Peer-reviewed
      • COMPUTER-SIMULATION OF VAPOR-LIQUID PHASE-SEPARATION IN 2-DIMENSIONAL AND 3-DIMENSIONAL FLUIDS - GROWTH LAW OF DOMAIN SIZE
        YAMAMOTO, R; NAKANISHI, K
        PHYSICAL REVIEW B, 1994, Peer-reviewed
      • CAN THE VAN-DER-WAALS LOOP VANISH - EFFECT OF SURFACE FREE-ENERGY
        YAMAMOTO, R; TANAKA, H; NAKANISHI, K; et al.
        CHEMICAL PHYSICS LETTERS, 1994, Peer-reviewed
      • VISCOSITY OF MIXTURES OF FLUOROALCOHOLS AND WATER AT HIGH-PRESSURES
        MATSUO, S; YAMAMOTO, R; TANAKA, Y; et al.
        INTERNATIONAL JOURNAL OF THERMOPHYSICS, 1993, Peer-reviewed
      • THERMAL-CONDUCTIVITY OF HALOGENATED ETHANES, HFC-134A, HCFC-123, AND HCFC-141B
        YAMAMOTO, R; MATSUO, S; TANAKA, Y
        INTERNATIONAL JOURNAL OF THERMOPHYSICS, 1993, Peer-reviewed

      Misc.

      • Computer Simulations for Liquid Crystals
        YAMAMOTO Ryoichi; YONEYA Makoto; OKUZONO Tohru; FUKUDA Jun-ichi
        Journal of the Japanese Liquid Crystal Society, 25 Jul. 2007
      • 過冷却液体のダイナミクス : 計算機シミュレーションによる動的不均一性の解析(非平衡複雑多体系ダイナミクスと統計)
        山本 量一
        物性研究, 2007
      • Smoothed Profile法によるコロイド分散系のシミュレーション(ソフトマターの物理学2004-変形と流動-,研究会報告)
        山本 量一; 名嘉山 祥也; 金 鋼
        物性研究, 2004
      • P44 Dynamics and Rheology of Supercooled Liquids :
        Yamamoto Ryoichi; Onuki Akira
        物性研究, 2002
      • Direct Numerical Simulations of Colloidal Dispersions under External Force(New Frontiers in Colloidal Physics : A Bridge between Micro- and Macroscopic Concepts in Soft Matter) :
        Yamamoto Ryoichi; Iwashita Takuya; Kim Kang; Nakayama Yasuya
        物性研究, 2007
      • Two approaches simulating Brownian motion in fluid suspensions(Poster session 1, New Frontiers in Colloidal Physics : A Bridge between Micro- and Macroscopic Concepts in Soft Matter) :
        Nakayama Yasuya; Iwashita Takuya; Yamamoto Ryoichi
        物性研究, 2007
      • 56. Simulations of electrophoresis in charged colloidal dispersions : Smoothed profile method(poster presentation,Soft Matter as Structured Materials) :
        Kim Kang; Nakayama Yasuya; Yamamoto Ryoichi
        物性研究, 2005
      • 29a-XC-7 Dynamical Density Functional Theory on binary mixture of supercooled liquids.
        Miyashita H.; Yamamoto R.; Onuki A.
        Meeting abstracts of the Physical Society of Japan, 15 Mar. 1999
      • Direct Simulation of Flowing Colloidal Dispersions by Smoothed Profile Method
        NAKAYAMA Yasuya; KIM Kang; YAMAMOTO Ryoichi
        Journal of the Society of Powder Technology,Japan, 10 Mar. 2007
      • Report of the 42nd Summer Symposium Toward Further Progress in Computer Simulations of Powder Systems : Scaling up, Speeding up, Hybrid Modeling and Continuum Modeling
        YAMAMOTO Ryoichi
        粉体工学会誌 = Journal of the Society of Powder Technology, Japan, 10 Mar. 2007
      • 20aXJ-11 3D Simulations of Electrophoresis in Charged Colloiods : Smoothed Profile Method
        Kim K.; Nakayama Y.; Yamamoto R.
        Meeting abstracts of the Physical Society of Japan, 19 Aug. 2005
      • 20pYL-7 A new simulation method for colloidal particles in complex fluids
        Yamamoto R.; Nakayama Y.; Kim K.
        Meeting abstracts of the Physical Society of Japan, 19 Aug. 2005
      • 29pWF-4 Computer simulations of colloid dispersions in complex fluids
        Kim K.; Nakayama Y.; Yamamoto R.
        Meeting abstracts of the Physical Society of Japan, 03 Mar. 2004
      • 29pWF-3 Simulating colloidal dispersions
        Nakayama Y.; Yamamoto R.
        Meeting abstracts of the Physical Society of Japan, 03 Mar. 2004
      • 12pTA-8 Simulating colloidal dispersions in complex fluids
        Nakayama Y; Yamamoto R
        Meeting abstracts of the Physical Society of Japan, 25 Aug. 2004
      • 12pTA-7 Simulation study of electrokinetic phenomena in charged colloidal dispersions
        Kim K; Nakayama Y; Yamamoto R
        Meeting abstracts of the Physical Society of Japan, 25 Aug. 2004
      • Smoothed Profile 法による荷電コロイド粒子の電気泳動シミュレーション(混合、化学反応、燃焼の流体力学)
        金 鋼; 名嘉山 祥也; 山本 量一
        数理解析研究所講究録, May 2006
      • Direct numerical simulations of electrophoresis of charged colloids : Smoothed profile method :
        Kim Kang; Nakayama Yasuya; Yamamoto Ryoichi
        物性研究, 2006
      • Recent Topics on Non-equilibrium Dynamics of Structural Glasses
        Yamamoto Ryoichi
        Meeting abstracts of the Physical Society of Japan, 15 Aug. 2003
      • Density profile of counterions between two like-charged plates : Density functional approach
        Kim Kang; Yamamoto Ryoichi
        Meeting abstracts of the Physical Society of Japan, 15 Aug. 2003
      • 6p-YL-12 Kinetic Heterogencitics in a Highly Supercooled Liquid
        Onuki Akira; Yamamoto Ryoichi
        Meeting abstracts of the Physical Society of Japan, 16 Sep. 1997
      • 6p-YL-13 Nonlinear Rheology of a Highly Supercooled Liquid
        Yamamoto Ryoichi; Onuki Akira
        Meeting abstracts of the Physical Society of Japan, 16 Sep. 1997
      • Nonlinear Dynamics of Glasses
        YAMAMOTO Ryoichi; ONUKI Akira
        Butsuri, 05 Aug. 2005
      • 27pWA-1 MD Simulation of Heat-Conducting States near the Critical Point
        Hamanaka T.; Onuki A.; Yamamoto R.
        Meeting abstracts of the Physical Society of Japan, 03 Mar. 2004
      • Phase Separation in Polymer Solutions Induced by Shear
        Onuki Akira; Yamamoto Ryoichi; Taniguchi Takashi
        Abstracts of the meeting of the Physical Society of Japan. Sectional meeting, 13 Sep. 1996
      • 25aP-9 Apparent finite-size effects in the dynamics of supercooled liquids
        KIM Kang; YAMAMOTO Ryoichi
        Meeting abstracts of the Physical Society of Japan, 03 Sep. 1999
      • 26pPSA-9 Charge inversion induced by ion strong coupling
        Uranagase Masayuki; Yamamoto Ryoichi
        Meeting abstracts of the Physical Society of Japan, 18 Aug. 2009
      • 28aVB-2 Frequency of Tumbling of Rod like Particle in Linear Shear Flow
        KOBAYASHI Hideki; YAMAMOTO Ryoichi
        Meeting abstracts of the Physical Society of Japan, 03 Mar. 2009
      • 2503 Direct Numerical Simulations of Colloidal Dispersions:Methods and Applications
        YAMAMOTO Ryoichi
        The Computational Mechanics Conference, 25 Nov. 2007
      • 19pRE-9 The dynamics of a polymer chain in solution with hydrodynamic interaction
        Iwashita Takuya; Nakayama Yasuya; Yamamoto Ryoichi
        Meeting abstracts of the Physical Society of Japan, 28 Feb. 2007
      • アクティブマターのモデリング:水中を泳ぐ微生物/基板上で遊走・増殖する細胞
        山本 量一
        アンサンブル, Jan. 2019
      • Modeling of Cells which Migrate and Proliferate on a Substrate
        Ryoichi Yamamoto; John J. Molina; Simon K. Schnyder
        JOURNAL OF COMPUTER CHEMISTRY-JAPAN, 2018, Peer-reviewed
      • 細胞と組織に対する力学的モデルの構築
        山本 量一; John J. MOLINA; Simon K. SCHNYDER
        生物物理, Jan. 2018, Peer-reviewed
      • Applications of Soft-Matter Modeling toward Non-Equilibrium and Biological Systems
        山本 量一; 大山 倫弘; John J. MOLINA; Simon K. SCHNYDER
        化学工学 = Chemical engineering of Japan, Jan. 2017
      • 「力学的モデルによる細胞の集団運動のシミュレーション」
        山本 量一
        生産研究, Jan. 2017
      • Synchronized Molecular-Dynamics simulation for the thermal lubrication of a polymeric liquid
        安田 修悟; 山本 量一
        ながれ : 日本流体力学会誌 = Nagare : journal of Japan Society of Fluid Mechanics, Aug. 2016
      • Synchronized Molecular Dynamics 法による高分子潤滑の解析
        安田 修悟; 山本 量一
        アンサンブル, 2015, Peer-reviewed
      • 研究室だより 京都大学 工学研究科 化学工学専攻 移動現象論分野 山本研究室
        山本 量一
        アンサンブル : 分子シミュレーション研究会会誌, Jul. 2014
      • 27aXU-7 Dynamics of a particle in a compressible fluid confined between parallel walls
        Tatsumi Rei; Yamamoto Ryoichi
        Meeting abstracts of the Physical Society of Japan, 26 Mar. 2013
      • ソフトマターのマルチスケールシミュレーション
        谷口貴志; 山本量一
        日本物理学会誌, 05 May 2012, Peer-reviewed
      • ソフトマターのマルチスケールシミュレーション
        安田修悟; 村島隆浩; 谷口貴志; 山本量一
        シミュレーション, 15 Mar. 2012, Peer-reviewed
      • 27aAH-6 分散系の音波物性(27aAH コロイド・タンパク質,領域12(ソフトマター物理,化学物理,生物物理))
        辰巳 玲; 山本 量一
        日本物理学会講演概要集, 05 Mar. 2012
      • ソフトマターの多階層・相互接続シミュレーション―高分子メルト のマルチスケールモデル―
        村島隆浩; 安田修悟; 谷口貴志; 山本 量一
        工業材料,60, pp. 27-30, Mar. 2012
      • ソフトマターの多階層/相互接続シミュレーション
        山本 量一
        マルチスケール・マルチフィジックス現象の統合シミュレーション,, pp. 129-136, Mar. 2012, Peer-reviewed
      • 21aJF-2 粘性流体中の粒子による音波減衰(21aJF コロイド・タンパク質・ミセル,領域12(ソフトマター物理,化学物理,生物物理))
        辰巳 怜; 山本 量一
        日本物理学会講演概要集, 24 Aug. 2011
      • 振動境界層流れにおける高分子液体の動的レオロジー特性 (特集 マルチスケール・シミュレーション--古典MDから連続体への接続)
        安田 修悟; 山本 量一
        アンサンブル, Jul. 2011, Peer-reviewed
      • 特集 マルチスケール・シミュレーション--古典MDから連続体への接続
        山本 量一
        アンサンブル, Jul. 2011, Peer-reviewed
      • 25aGV-2 過冷却液体の非線形構成方程式(25aGV 領域12,領域11合同(ガラス合同セッション),領域12(ソフトマター物理,化学物理,生物物理))
        水野 英如; 山本 量一
        日本物理学会講演概要集, 03 Mar. 2011
      • 28pGV-11 圧縮性溶媒中での溶質分子の運動(28pGV 化学物理,領域12(ソフトマター物理,化学物理,生物物理))
        辰巳 怜; 山本 量一
        日本物理学会講演概要集, 03 Mar. 2011
      • Multiscale hybrid simulation of MD and CFD for polymer melt flows in parallel plates
        安田 修悟; 山本 量一
        ハイパフォーマンスコンピューティングと計算科学シンポジウム論文集, 11 Jan. 2011
      • Viscoelastic behavior of polymer melt in rapidly oscillating plates: an application of multiscale modeling (Mathematical analysis in fluid and gas dynamics)
        Yasuda Shugo; Yamamoto Ryoichi
        RIMS Kokyuroku, Jun. 2010, Peer-reviewed
      • DIRECT SIMULATION FOR TRANSPORT PHENOMENA OF COLLOIDAL DISPERSIONS : SMOOTHED PROFILE METHOD
        名嘉山 祥也; 金 鋼; 山本 量一
        計算工学講演会論文集 = Proceedings of the Conference on Computational Engineering and Science, May 2010
      • 20aEC-2 過冷却液体の動的不均一性の寿命(20aEC 領域12,領域11合同(ガラスとその関連系I),領域12(ソフトマター物理,化学物理,生物物理))
        水野 英如; 山本 量一
        日本物理学会講演概要集, 01 Mar. 2010
      • 22pED-12 煎断流下鎖分散系の粘性率の数値計算的解析(22pED コロイド,高分子,領域12(ソフトマター物理,化学物理,生物物理))
        小林 秀樹; 山本 量一
        日本物理学会講演概要集, 01 Mar. 2010
      • Multi-scale simulation for viso-elastic flows of polymeric liquid between slabs
        YASUDA Shugo; YAMAMOTO Ryoichi
        日本流体力学会年会講演論文集, 2010
      • C. Holm and K. Kremer, eds., Advanced Computer Simulation Approaches for Soft Matter Sciences III, Springer, Heidelberg, 2009, xiv+237p, 24×16cm, 〓199,95, (Advances in Polymer Science 221), [専門書], ISBN978-3-540-87705-9
        山本 量一
        日本物理學會誌, Jan. 2010, Invited
      • Multi-scale Simulation for Softmatters : an Application to Polymer Melt Flow
        YASUDA Shugo; YAMAMOTO Ryoichi
        Journal of plasma and fusion research, 25 Sep. 2009
      • 定常ずり流動下における微粒子分散系の直接数値計算
        岩下拓哉; 山本量一; 山本量一
        日本物理学会講演概要集, 2009
      • Multiscale simulation for polymer melt flow in rapidly oscillating plates
        YASUDA Shugo; YAMAMOTO Ryoichi
        日本流体力学会年会講演論文集, 2009
      • Flows of polymer melt in rapidly oscillating plates:an application of multiscale modeling
        Yasuda Shugo; Yamamoto Ryoichi
        NCTAM papers, National Congress of Theoretical and Applied Mechanics, Japan, 2009, Peer-reviewed
      • Computer Simulations of Charged Colloidal Dispersions
        YAMAMOTO Ryoichi
        Ceramics Japan, 01 Mar. 2008
      • 流体力学的相互作用と熱揺らぎを考慮した微粒子分散系の非線形レオロジー
        岩下拓哉; 名嘉山祥也; 山本量一; 山本量一
        粉体工学会研究発表会講演論文集, 2008
      • コロイド分散系の直接数値シミュレーション
        山本量一; 山本量一; 岩下拓哉; 山本剛紀; KIM Kang; 名嘉山祥也
        流動化・粒子プロセッシングシンポジウム講演論文集, 2008
      • A Model for Hybrid Simulations of CFD and MD
        YASUDA Shugo; YAMAMOTO Ryoichi
        日本流体力学会年会講演論文集, 2008
      • 流体力学相互作用を考慮したブラウン運動する微粒子の直接数値計算
        岩下拓哉; 山本量一; 名嘉山祥也
        日本レオロジー学会年会講演予稿集, 2007
      • 熱揺らぎと流体力学相互作用を考慮した微粒子分散系のシミュレーション
        山本量一; 岩下拓哉; 名嘉山祥也
        化学工学会年会研究発表講演要旨集, 2007
      • ニュートン流体中に分散したブラウン粒子に対する付加質量の影響
        岩下拓哉; 名嘉山祥也; 山本量一; 山本量一
        日本機械学会計算力学講演会講演論文集, 2007

      Presentations

      • 自己泳動粒子分散系における方向秩序形成メカニズムの理解
        大山 倫弘; John Jairo Molina; 山本 量一
        日本物理学会講演概要集, Jan. 2016, 一般社団法人 日本物理学会
      • Simulating Particles Moving through Fluids
        YAMAMOTO Ryoichi
        Physics of Structural and Dynamical Hierarchy in Soft Matter, 16 Mar. 2015, Invited
      • DNS of colloidal dispersions using the smoothed profile method: formulation and applications
        YAMAMOTO Ryoichi
        High Performance and Parallel Computing for Materials Defects and Multiphase Flows, 02 Mar. 2015, Invited
      • 28am2-F-4 Multiscale modeling for thermal lubrication of polymeric liquid
        Yasuda Shugo; Yamamoto Ryoichi
        The Proceedings of the Symposium on Micro-Nano Science and Technology, 2015, The Japan Society of Mechanical Engineers
      • Direct Numerical Simulations (DNS) of Swimming Particles
        YAMAMOTO Ryoichi
        International symposium and workshop on Computational condensed matter: advances and challenges (CompMat2014), 07 Sep. 2014, Invited
      • Acoustic vs. Viscous Momentum Transports between Colloidal Particles
        YAMAMOTO Ryoichi
        The AIMR International Symposium 2014 (AMIS 2014), 16 Feb. 2014, Invited
      • Smoothed Profile Method for DNS of Particle Dispersions
        YAMAMOTO Ryoichi
        3rd International Conference on Molecular Simulation (ICMS-2013), 18 Nov. 2013, Invited
      • Simulations of colloids and self-propelled particles with fully resolved hydrodynamics
        YAMAMOTO Ryoichi
        Physics of Complex Colloids (COMPLOID-2013), 14 May 2013, Invited
      • Modeling and applications of particle-hydrodynamics hybrid method for self-propelled particles
        YAMAMOTO Ryoichi
        NIC (John von Neumann Institute for Computing) workshop "Hybrid particle-continuum methods in computational materials physics", 04 Mar. 2013, Invited
      • 27aAH-6 分散系の音波物性(27aAH コロイド・タンパク質,領域12(ソフトマター物理,化学物理,生物物理))
        辰巳 玲; 山本 量一
        日本物理学会講演概要集, Jan. 2012, 一般社団法人日本物理学会
      • 高分子液体の流動解析:マルチスケールシミュレーションの応用
        安田 修悟; 山本 量一
        化学工学会 研究発表講演要旨集, 2010, 公益社団法人 化学工学会
      • 分子動力学とCFDの連結シミュレーションのモデル
        安田 修悟; 山本 量一
        化学工学会 研究発表講演要旨集, 2008, 公益社団法人 化学工学会

      Books and Other Publications

      • 粉体工学ハンドブック
        名嘉山 祥也; 金 鋼; 山本 量一, Contributor, 2.23.3.3, 2.23.3.4
        朝倉書店, Feb. 2014, Not refereed
      • マルチスケール・マルチフィジックス現象の統合シミュレーション
        山本 量一, Contributor, ソフトマターの多階層/相互接続シミュレーション
        科学技術振興機構, Feb. 2012, Not refereed
      • マルチスケール・マルチフィジックス現象の統合シミュレーション
        山本 量一, Editor
        科学技術振興機構, Feb. 2012, Not refereed
      • Electrical Phenomena at Interfaces and Biointerfaces: Fundamentals and Applications in Nano-, Bio-, and Environmental Sciences
        KIM Kang; NAKAYAMA Yasuya; YAMAMOTO Ryoichi, Joint work, Chapter 8,9
        Wiley, Jan. 2012, Not refereed
      • Nonlinear rheology of highly supercooled liquids
        山本 量一
        Proceedings of the 2nd Tohwa University International Meeting "Statistical Physics" edited by M. Tokuyama and I. Oppenheim(World Scinetific, Singapore, 1998).,, 1998, Not refereed

      Awards

      • 2006
        ホソカワ粉体工学振興財団, Hosokawa Encouragement Award
      • 2002
        分子シミュレーション研究会, Academic prize, the molecular simulation society of Japan

      External funds: Kakenhi

      • Challenge from mechanical self-organization to elucidate the physical properties of non-equilibrium soft matter / amorphous material
        Grant-in-Aid for Specially Promoted Research
        Science and Engineering
        The University of Tokyo
        田中 肇
        From 30 Jul. 2020, To 31 Mar. 2025, Granted
        非均衡固体;運動量保存則;アモルファス物質;ソフトマター;力学・熱物性;非平衡固体;相分離;水の異常性
      • Direct numerical simulations of meso fluids at non-equilibrium conditions
        Grant-in-Aid for Scientific Research (A)
        Medium-sized Section 13:Condensed matter physics and related fields
        Kyoto University
        山本 量一
        From 01 Apr. 2020, To 31 Mar. 2024, Granted
        ソフトマター;シミュレーション;流体力学;マイクロスイマー;コロイド分散系;直接数値計算
      • Multi-scale/multi-physics modeling for particle/fluid coupling system and its applications
        Grant-in-Aid for Scientific Research (A)
        Kyoto University
        Ryoichi Yamamoto
        From 01 Apr. 2017, To 31 Mar. 2020, Project Closed
        ソフトマター;流体力学;アクティブマター;コロイド;レオロジー;マイクロスイマー;シミュレーション;混相流
      • 微生物集団が示す特異な動的秩序形成機構の解明とその制御
        Grant-in-Aid for Scientific Research on Innovative Areas (Research in a proposed research area)
        Science and Engineering
        Kyoto University
        山本 量一
        From 01 Apr. 2016, To 31 Mar. 2018, Project Closed
        シミュレーション;微生物;細胞;集団運動
      • Kinetic modeling and multiscale mechanism in collective behaviors of microorganisms
        Grant-in-Aid for Scientific Research (C)
        University of Hyogo
        Shugo Yasuda
        From 10 Jul. 2015, To 31 Mar. 2018, Project Closed
        自己組織化;走化性バクテリア;運動論;メゾスコピック;計算生物学;計算科学;数理生物学;マルチスケール;数理科学;微生物
      • Dynamics of lipid bilayer membrane induced by external stimuli
        Grant-in-Aid for Scientific Research (B)
        Kyoto University
        TAKASHI TANIGUCHI
        From 01 Apr. 2015, To 31 Mar. 2018, Project Closed
        ソフトマター物理;脂質膜;自発曲率;計算物理;ソフトマター物理学;統計力学;シグナル伝達;脂質;ミクロ相分離
      • Simulations of tumor grawth with cell division
        Grant-in-Aid for Challenging Exploratory Research
        Kyoto University
        Ryoichi Yamamoto
        From 01 Apr. 2014, To 31 Mar. 2017, Project Closed
        シミュレーション;アクティブマター;細胞遊走;生体組織;細胞分裂;腫瘍
      • Developments and applications of accurate simulation methods for micro particles and organisms
        Grant-in-Aid for Scientific Research (A)
        Kyoto University
        Ryoichi Yamamoto
        From 27 Jun. 2014, To 31 Mar. 2017, Project Closed
        ソフトマター;アクティブマター;シミュレーション;コロイド;流体力学
      • 直接数値計算を用いたモデル微生物の動的性質に関する理学的研究
        Grant-in-Aid for Scientific Research on Innovative Areas (Research in a proposed research area)
        Science and Engineering
        Kyoto University
        山本 量一
        From 01 Apr. 2014, To 31 Mar. 2016, Project Closed
        モデル微生物;シミュレーション;流体力学;アクティブマター;ソフトマター
      • Deformation dynamics of composite lipid membranes
        Grant-in-Aid for Scientific Research (B)
        Kyoto University
        Takashi TANIGUCHI
        From 01 Apr. 2011, To 31 Mar. 2014, Project Closed
        脂質二重膜;流体膜;相分離;ベシクル;多成分脂質膜;相転移;非対称膜;ラフト
      • Application of meso-scale modelling for soft materials
        Grant-in-Aid for Scientific Research (A)
        Kyoto University
        Ryoichi YAMAMOTO
        From 01 Apr. 2011, To 31 Mar. 2014, Project Closed
        計算科学;計算物理学;化学物理;統計力学;高分子構造・物性;科学物理;計算物理
      • 高分子微粒子熱変形プロセスを利用したネットワーク細線型透明導電性膜の開発
        Grant-in-Aid for Exploratory Research
        Kyoto University
        東谷 公
        From 01 Apr. 2006, To 31 Mar. 2008, Project Closed
        ネットワーク電極;ナノ細線;透明導電膜;熱変形;金ナノ粒子;無電解銅めっき
      • Studies of Non-equilibrium Phenomena of Colloidal Dispersions Using a New Simulation Method
        Grant-in-Aid for Scientific Research (C)
        Kyoto University
        Ryoichi YAMAMOTO
        From 01 Apr. 2006, To 31 Mar. 2008, Project Closed
        計算物理;物性理論;モデル化;流体;コロイド;並列計算;レオロジー;熱揺らぎ, Computational Physics;Chemical Physics;Modeling;Fluid;Colloid;Parallel Computation;Rheology;Thermal Fluctuation
      • Reseach on charge and polarization in soft matter and on nonequilibrium effects in shear flow
        Grant-in-Aid for Scientific Research on Priority Areas
        Science and Engineering
        Kyoto University
        Akira ONUKI
        From 01 Apr. 2006, To 31 Mar. 2011, Project Closed
        ソフトマター;非平衡現象;電荷・極性;せん断;選択的溶媒和;相転移;非平衡;電荷;ガラス;構造形成;分極効果;濡れ転移;誘電関数;臨海揺らぎ
      • Studies of Rheology and Deformation Mechanism of Amorphous materials
        Grant-in-Aid for Scientific Research (C)
        Kyoto University
        Akira ONUKI
        From 01 Apr. 2003, To 31 Mar. 2006, Project Closed
        ガラス;塑性変形;格子欠陥;構造緩和;多結晶;高分子動力学;絡み合い;ガラス転移;せん断変形;アモルファス;レオロジー;変形;理論;シミュレーション;プラスチック;転移;せん断, glass;plastic deformation;lattice imperfection;structural relaxation;poly crystal
      • 長距離弾性相互作用のあるコロイド系の計算機シミュレーション
        Grant-in-Aid for Young Scientists (B)
        Kyoto University
        山本 量一
        From 01 Apr. 2001, To 31 Mar. 2003, Project Closed
        液晶;コロイド;エマルジョン(懸濁液);分散系;ネマチック;スメクチック;シミュレーション;ハイブリッド型;エマルジョン;ネマティック;メソスコピック
      • 計算機シミュレーションによる薄膜ガラス状物質の動的性質の解明
        Grant-in-Aid for Encouragement of Young Scientists (A)
        Kyoto University
        山本 量一
        From 01 Apr. 2000, To 31 Mar. 2001, Project Closed
      • Computer Simulations of nonlinear dynamics of entangled polymer liquids
        Grant-in-Aid for Scientific Research (C)
        KYOTO UNIVERSITY
        Akira ONUKI
        From 01 Apr. 2000, To 31 Mar. 2003, Project Closed
        高分子;分子動力学シミュレーション;シア(せん断)流;レオロジー;ダイナミクス;非線形;非平衡;絡み合い;シア;高分子溶融体;非線形ダイナミクス;せん断流, Polymer;Molecular Dynamics Simulation;Shear Flow;Rheology;Dynamics;Nonlinear;Non equilibrium;Entanglement
      • 分子動力学シミュレーションによるガラス状高分子のダイナミクスと非線形レオロジー
        Grant-in-Aid for Encouragement of Young Scientists (A)
        Kyoto University
        山本 量一
        From 01 Apr. 1998, To 31 Mar. 2000, Project Closed
        高分子メルト;レオロジー;線形応答;非線型応答;ガラス転移;過冷却液体;分子動力学;動的不均一性;拡散係数;Stokes-Einstein則;臨界現象
      • 固体における弾性効果と相転移現象の研究
        Grant-in-Aid for Scientific Research on Priority Areas (A)
        Kyoto University
        小貫 明
        From 01 Apr. 1998, To 31 Mar. 1999, Project Closed
        相転移ダイナミクス;パターン形成;弾性効果;構造相転移;前駆現象;ガラスのダイナミクス;ガラス中の拡散;過冷却液体
      • 計算機シミュレーションを用いたシア-流化でのガラス転移点近傍液体の研究
        Grant-in-Aid for Scientific Research on Priority Areas
        Kyoto University
        山本 量一
        From 01 Apr. 1997, To 31 Mar. 1998, Project Closed
        ガラス転移;過冷却液体;不均一性;レオロジー;ダイナミクス
      • 分子シミュレーションによる流体の相分離ダイナミクスの研究
        Grant-in-Aid for Encouragement of Young Scientists (A)
        Kyoto University
        山本 量一
        From 01 Apr. 1996, To 31 Mar. 1997, Project Closed
        分子シミュレーション;相分離;せん断
      • 分子シミュレーションによる複雑液体のシア-誘起相転移現象の解明
        Grant-in-Aid for Scientific Research on Priority Areas
        Kyoto University
        山本 量一
        From 01 Apr. 1996, To 31 Mar. 1997, Project Closed
        分子シミュレーション;ガラス転移;せん断
      • ゾル・ゲル-フッ化のソフト化学法によるフッ化物ガラス薄膜の創製と光・電気機能
        Grant-in-Aid for General Scientific Research (C)
        Kobe University
        河本 洋二
        From 01 Apr. 1995, To 31 Mar. 1996, Project Closed
        ゾル・ゲル;フッ化物ガラス;ガラス薄膜;フッ化反応;ソフト化学
      • 高イオン受容性新機能材料の電解合成
        Grant-in-Aid for General Scientific Research (C)
        Kobe University
        菅野 了次
        From 01 Apr. 1995, To 31 Mar. 1996, Project Closed
        電解合成;正極材料;リチウム電池;インターカレーション
      • DEVELOPMENT OF LIGHT WAVEGUIDE OF FLUORIDE GLASS THIN FILMS BY COMBINED SOL-GEL AND FLUORINATION
        Grant-in-Aid for Scientific Research (B)
        KOBE UNIVERSITY
        Yoji KAWAMOTO
        From 01 Apr. 1995, To 31 Mar. 1997, Project Closed
        フッ化物ガラス;薄膜;光導波路;ゾル・ゲル;フッ化;ECRプラズマCVD;光機能;フッ化反応;ガラス薄膜, FLUORIDE GLASS;THIN FILM;LIGHT WAVEGUIDE;SOL-GEL;FLUORINATION;ECR-PLASMA-CVD;OPTICAL FUNCTIONALITY
      • 計算機シミュレーションによる高せん断応力下での高分子液体の挙動の解明
        Grant-in-Aid for Scientific Research on Priority Areas
        Kobe University
        山本 量一
        From 01 Apr. 1995, To 31 Mar. 1996, Project Closed
        分子シミュレーション;相分離;せん断

      External funds: others

      • 自己組織化するアクティブマターの物理学国際研究ネットワーク (2023年度分)
        Japan Society for the Promotion of Science (JSPS), 研究拠点形成事業 A.先端拠点形成型
        From 01 Apr. 2023, To 31 Mar. 2024
        代表者
      • コンピュータシミュレーションによる新規医用材料開発の高精度・高効率化 (2021年度分)
        京都市, 京都発革新的医療技術研究開発助成事業
        From 01 Apr. 2021, To 31 Mar. 2022
        代表
      • Non-Equilibrium Soft Matter: Glasses and Active Matter in Silico and in Vitro
        京都大学融合チーム研究プログラム -SPIRITS-
        From 01 Apr. 2015, To 31 Mar. 2017
        山本量一
      • Multiscale Simulations for Softmatters
        独立行政法人科学技術振興機構 戦略的創造事業本部長分任契約 担当者理事 北澤宏一
        From 01 Oct. 2006, To 31 Mar. 2012
        山本量一
      • Hybrid molecular dynamics simulations for soft matters
        JST戦略的創造研究推進制度(個人研究型) (個人研究推進事業:さきがけ研究21‐PRESTO)
        From 01 Oct. 2002, To 31 Mar. 2006
        山本量一
      • アクティフ?マターに現れる共同運動の制御 (平成29年度分)
        二国間交流事業共同研究・セミナー
        From 01 Apr. 2017, To 31 Mar. 2018
        山本 量一
      • アクティフ?マターに現れる共同運動の制御 (平成30年度分)
        二国間交流事業共同研究・セミナー
        From 01 Apr. 2018, To 31 Mar. 2019
        山本 量一
      list
        Last Updated :2025/04/22

        Education

        Teaching subject(s)

        • From 01 Apr. 2024, To 31 Mar. 2025
          Fundamental Chemical Process Engineering
          7105, Spring, Faculty of Engineering, 2
        • From 01 Apr. 2024, To 31 Mar. 2025
          Simulations in Chemical Engineering
          7101, Fall, Faculty of Engineering, 2
        • From 01 Apr. 2024, To 31 Mar. 2025
          Transport Phenomena
          7046, Spring, Faculty of Engineering, 2
        • From 01 Apr. 2024, To 31 Mar. 2025
          Physical Chemistry III (Chemical Engineering)
          7309, Fall, Faculty of Engineering, 2
        • From 01 Apr. 2024, To 31 Mar. 2025
          Research in Chemical EngineeringIII
          E049, Spring, Graduate School of Engineering, 2
        • From 01 Apr. 2024, To 31 Mar. 2025
          Research in Chemical EngineeringII
          E047, Fall, Graduate School of Engineering, 2
        • From 01 Apr. 2024, To 31 Mar. 2025
          Research in Chemical EngineeringI
          E045, Spring, Graduate School of Engineering, 2
        • From 01 Apr. 2024, To 31 Mar. 2025
          Special Seminar in Chemical Engineering 3
          T006, Fall, Graduate School of Engineering, 2
        • From 01 Apr. 2024, To 31 Mar. 2025
          Special Seminar in Chemical Engineering 1
          T004, Spring, Graduate School of Engineering, 2
        • From 01 Apr. 2024, To 31 Mar. 2025
          Research in Chemical EngineeringIV
          E051, Fall, Graduate School of Engineering, 2
        • From 01 Apr. 2024, To 31 Mar. 2025
          Research Internship in Chemical Engineering
          E041, Year-long, Graduate School of Engineering, 2
        • From 01 Apr. 2024, To 31 Mar. 2025
          Master's Thesis
          E099, Year-long, Graduate School of Engineering, 0
        • From 01 Apr. 2024, To 31 Mar. 2025
          Chemical Engineering Seminar IV
          P046, Fall, Graduate School of Engineering, 0.5
        • From 01 Apr. 2024, To 31 Mar. 2025
          Chemical Engineering Seminar III
          P045, Spring, Graduate School of Engineering, 0.5
        • From 01 Apr. 2024, To 31 Mar. 2025
          Chemical Engineering Seminar II
          P044, Fall, Graduate School of Engineering, 0.5
        • From 01 Apr. 2024, To 31 Mar. 2025
          Chemical Engineering Seminar I
          P043, Spring, Graduate School of Engineering, 0.5
        • From 01 Apr. 2024, To 31 Mar. 2025
          Advanced Topics in Transport Phenomena(English lecture)
          H003, Spring, Graduate School of Engineering, 1.5
        • From 01 Apr. 2023, To 31 Mar. 2024
          Simulations in Chemical Engineering
          7101, Fall, Faculty of Engineering, 2
        • From 01 Apr. 2023, To 31 Mar. 2024
          Transport Phenomena
          7046, Spring, Faculty of Engineering, 2
        • From 01 Apr. 2023, To 31 Mar. 2024
          Special Seminar in Chemical Engineering 6
          T009, Spring, Graduate School of Engineering, 2
        • From 01 Apr. 2023, To 31 Mar. 2024
          Physical Chemistry III (Chemical Engineering)
          7309, Fall, Faculty of Engineering, 2
        • From 01 Apr. 2023, To 31 Mar. 2024
          Fundamental Chemical Process Engineering
          7105, Spring, Faculty of Engineering, 2
        • From 01 Apr. 2023, To 31 Mar. 2024
          Advanced Topics in Transport Phenomena
          H002, Spring, Graduate School of Engineering, 1.5
        • From 01 Apr. 2023, To 31 Mar. 2024
          Physical Chemistry and Analytical Techniques of Complex Systems
          H407, Fall, Graduate School of Engineering, 1.5
        • From 01 Apr. 2022, To 31 Mar. 2023
          Fundamental Chemical Process Engineering
          7105, Spring, Faculty of Engineering, 2
        • From 01 Apr. 2022, To 31 Mar. 2023
          Advanced Seminar on Materials Engineering and Chemistry VI
          W442, Fall, Graduate School of Engineering, 1
        • From 01 Apr. 2022, To 31 Mar. 2023
          Advanced Seminar on Materials Engineering and Chemistry V
          W441, Fall, Graduate School of Engineering, 1
        • From 01 Apr. 2022, To 31 Mar. 2023
          Transport Phenomena
          7046, Spring, Faculty of Engineering, 2
        • From 01 Apr. 2022, To 31 Mar. 2023
          Advanced Seminar on Materials Engineering and Chemistry III
          W439, Fall, Graduate School of Engineering, 1
        • From 01 Apr. 2022, To 31 Mar. 2023
          Laboratory and Exercise on Materials Engineering and Chemistry I
          W432, Spring, Graduate School of Engineering, 2
        • From 01 Apr. 2022, To 31 Mar. 2023
          Simulations in Chemical Engineering
          7101, Fall, Faculty of Engineering, 2
        • From 01 Apr. 2022, To 31 Mar. 2023
          Advanced Seminar on Materials Engineering and Chemistry IV
          W440, Fall, Graduate School of Engineering, 1
        • From 01 Apr. 2022, To 31 Mar. 2023
          Laboratory and Exercise on Materials Engineering and Chemistry III
          W434, Spring, Graduate School of Engineering, 2
        • From 01 Apr. 2022, To 31 Mar. 2023
          Advanced Seminar on Materials Engineering and Chemistry II
          W438, Spring, Graduate School of Engineering, 1
        • From 01 Apr. 2022, To 31 Mar. 2023
          Advanced Topics in Transport Phenomena(English lecture)
          H003, Spring, Graduate School of Engineering, 1.5
        • From 01 Apr. 2022, To 31 Mar. 2023
          Advanced Seminar on Materials Engineering and Chemistry I
          W437, Spring, Graduate School of Engineering, 1
        • From 01 Apr. 2022, To 31 Mar. 2023
          Laboratory and Exercise on Materials Engineering and Chemistry IV
          W435, Fall, Graduate School of Engineering, 2
        • From 01 Apr. 2022, To 31 Mar. 2023
          Laboratory and Exercise on Materials Engineering and Chemistry II
          W433, Fall, Graduate School of Engineering, 2
        • From Apr. 2011, To Mar. 2012
          移動現象特論
          Fall, 工学研究科
        • From Apr. 2011, To Mar. 2012
          移動現象
          Spring, 工学部
        • From Apr. 2011, To Mar. 2012
          化学工学シミュレーション
          Fall, 工学部
        • From Apr. 2011, To Mar. 2012
          化学プロセス工学基礎[1クラス]
          Spring, 工学部
        • From Apr. 2011, To Mar. 2012
          化学工学特別セミナー6
          Spring, 工学研究科
        • From Apr. 2011, To Mar. 2012
          複合系の物理化学と解析技術
          Fall, 工学研究科
        • From Apr. 2012, To Mar. 2013
          Simulations in Chemical Engineering
          Fall, 工学部
        • From Apr. 2012, To Mar. 2013
          Fundamental Chemical Process Engineering
          Spring, 工学部
        • From Apr. 2012, To Mar. 2013
          Research Internship in Chemical Engineering
          Year-long, 工学研究科
        • From Apr. 2012, To Mar. 2013
          Transport Phenomena
          Spring, 工学部
        • From Apr. 2012, To Mar. 2013
          Transport Phenomena
          Fall, 工学研究科
        • From Apr. 2013, To Mar. 2014
          Transport Phenomena
          Spring, 工学部
        • From Apr. 2013, To Mar. 2014
          Simulations in Chemical Engineering
          Fall, 工学部
        • From Apr. 2013, To Mar. 2014
          Fundamental Chemical Process Engineering
          Spring, 工学部
        • From Apr. 2013, To Mar. 2014
          Transport Phenomena
          Spring, 工学研究科
        • From Apr. 2013, To Mar. 2014
          Research Internship in Chemical Engineering
          Year-long, 工学研究科
        • From Apr. 2013, To Mar. 2014
          Special Seminar in Chemical Engineering 6
          Year-long, 工学研究科
        • From Apr. 2013, To Mar. 2014
          Physical Chemistry and Analytical Techniques of Complex Systems
          Fall, 工学研究科
        • From Apr. 2014, To Mar. 2015
          Transport Phenomena
          Spring, 工学部
        • From Apr. 2014, To Mar. 2015
          Simulations in Chemical Engineering
          Fall, 工学部
        • From Apr. 2014, To Mar. 2015
          Fundamental Chemical Process Engineering
          Spring, 工学部
        • From Apr. 2014, To Mar. 2015
          Transport Phenomena
          Spring, 工学研究科
        • From Apr. 2014, To Mar. 2015
          Research Internship in Chemical Engineering
          Year-long, 工学研究科
        • From Apr. 2015, To Mar. 2016
          Chemical Engineering Seminar III
          Spring, 工学研究科
        • From Apr. 2015, To Mar. 2016
          Chemical Engineering Seminar II
          Fall, 工学研究科
        • From Apr. 2015, To Mar. 2016
          Chemical Engineering Seminar IV
          Fall, 工学研究科
        • From Apr. 2015, To Mar. 2016
          Chemical Engineering Seminar I
          Spring, 工学研究科
        • From Apr. 2015, To Mar. 2016
          Simulations in Chemical Engineering
          Fall, 工学部
        • From Apr. 2015, To Mar. 2016
          Fundamental Chemical Process Engineering
          Spring, 工学部
        • From Apr. 2015, To Mar. 2016
          Special Seminar in Chemical Engineering 1
          Spring, 工学研究科
        • From Apr. 2015, To Mar. 2016
          Special Seminar in Chemical Engineering 2
          Fall, 工学研究科
        • From Apr. 2015, To Mar. 2016
          Special Seminar in Chemical Engineering 3
          Fall, 工学研究科
        • From Apr. 2015, To Mar. 2016
          Special Seminar in Chemical Engineering 6
          Spring, 工学研究科
        • From Apr. 2015, To Mar. 2016
          Special Seminar in Chemical Engineering 7
          Fall, 工学研究科
        • From Apr. 2015, To Mar. 2016
          Research in Chemical EngineeringIII
          Spring, 工学研究科
        • From Apr. 2015, To Mar. 2016
          Research in Chemical EngineeringII
          Fall, 工学研究科
        • From Apr. 2015, To Mar. 2016
          Research in Chemical EngineeringIV
          Fall, 工学研究科
        • From Apr. 2015, To Mar. 2016
          Research in Chemical EngineeringI
          Spring, 工学研究科
        • From Apr. 2015, To Mar. 2016
          Research Internship in Chemical Engineering
          Year-long, 工学研究科
        • From Apr. 2015, To Mar. 2016
          Master's Thesis
          Year-long, 工学研究科
        • From Apr. 2015, To Mar. 2016
          Transport Phenomena
          Spring, 工学部
        • From Apr. 2015, To Mar. 2016
          Transport Phenomena
          Spring, 工学研究科
        • From Apr. 2015, To Mar. 2016
          Introduction to Computational Science
          Spring, 全学共通科目
        • From Apr. 2016, To Mar. 2017
          Advanced Topics in Transport Phenomena(English lecture)
          Spring, 工学研究科
        • From Apr. 2016, To Mar. 2017
          ILAS Seminar
          Spring, 全学共通科目
        • From Apr. 2016, To Mar. 2017
          ILAS Seminar-E2
          Spring, 全学共通科目
        • From Apr. 2016, To Mar. 2017
          Theoretical Chemistry I-E2
          Spring, 全学共通科目
        • From Apr. 2016, To Mar. 2017
          Simulations in Chemical Engineering
          Fall, 工学部
        • From Apr. 2016, To Mar. 2017
          Fundamental Chemical Process Engineering
          Spring, 工学部
        • From Apr. 2016, To Mar. 2017
          Transport Phenomena
          Spring, 工学部
        • From Apr. 2016, To Mar. 2017
          Introduction to Computational Science
          Spring, 全学共通科目
        • From Apr. 2017, To Mar. 2018
          ILAS Seminar
          Spring, 全学共通科目
        • From Apr. 2017, To Mar. 2018
          ILAS Seminar-E2
          Spring, 全学共通科目
        • From Apr. 2017, To Mar. 2018
          Theoretical Chemistry I-E2
          Spring, 全学共通科目
        • From Apr. 2017, To Mar. 2018
          Simulations in Chemical Engineering
          Fall, 工学部
        • From Apr. 2017, To Mar. 2018
          Fundamental Chemical Process Engineering
          Spring, 工学部
        • From Apr. 2017, To Mar. 2018
          Special Seminar in Chemical Engineering 6
          Spring, 工学研究科
        • From Apr. 2017, To Mar. 2018
          Transport Phenomena
          Spring, 工学部
        • From Apr. 2017, To Mar. 2018
          Transport Phenomena
          Spring, 工学研究科
        • From Apr. 2018, To Mar. 2019
          Advanced Topics in Transport Phenomena(English lecture)
          Spring, 工学研究科
        • From Apr. 2018, To Mar. 2019
          Simulations in Chemical Engineering
          Fall, 工学部
        • From Apr. 2018, To Mar. 2019
          Fundamental Chemical Process Engineering
          Spring, 工学部
        • From Apr. 2018, To Mar. 2019
          ChemicalProcessEngineeringLaboratoryII(Chemical Engineering)
          Fall, 工学部
        • From Apr. 2018, To Mar. 2019
          ChemicalProcessEngineeringLaboratoryI(Chemical Engineering)
          Spring, 工学部
        • From Apr. 2018, To Mar. 2019
          Transport Phenomena
          Spring, 工学部
        • From Apr. 2019, To Mar. 2020
          Simulations in Chemical Engineering
          Fall, 工学部
        • From Apr. 2019, To Mar. 2020
          Fundamental Chemical Process Engineering
          Spring, 工学部
        • From Apr. 2019, To Mar. 2020
          ChemicalProcessEngineeringLaboratoryII(Chemical Engineering)
          Fall, 工学部
        • From Apr. 2019, To Mar. 2020
          Special Seminar in Chemical Engineering 2
          Fall, 工学研究科
        • From Apr. 2019, To Mar. 2020
          Special Seminar in Chemical Engineering 6
          Spring, 工学研究科
        • From Apr. 2019, To Mar. 2020
          Transport Phenomena
          Spring, 工学部
        • From Apr. 2019, To Mar. 2020
          Transport Phenomena
          Spring, 工学研究科
        • From Apr. 2019, To Mar. 2020
          Physical Chemistry and Analytical Techniques of Complex Systems
          Fall, 工学研究科
        • From Apr. 2020, To Mar. 2021
          Advanced Topics in Transport Phenomena(English lecture)
          Spring, 工学研究科
        • From Apr. 2020, To Mar. 2021
          Chemical Engineering Seminar III
          Spring, 工学研究科
        • From Apr. 2020, To Mar. 2021
          Chemical Engineering Seminar II
          Fall, 工学研究科
        • From Apr. 2020, To Mar. 2021
          Chemical Engineering Seminar IV
          Fall, 工学研究科
        • From Apr. 2020, To Mar. 2021
          Chemical Engineering Seminar I
          Spring, 工学研究科
        • From Apr. 2020, To Mar. 2021
          Simulations in Chemical Engineering
          Fall, 工学部
        • From Apr. 2020, To Mar. 2021
          Fundamental Chemical Process Engineering
          Spring, 工学部
        • From Apr. 2020, To Mar. 2021
          ChemicalProcessEngineeringLaboratoryII(Chemical Engineering)
          Fall, 工学部
        • From Apr. 2020, To Mar. 2021
          ChemicalProcessEngineeringLaboratoryI(Chemical Engineering)
          Spring, 工学部
        • From Apr. 2020, To Mar. 2021
          Special Seminar in Chemical Engineering 1
          Spring, 工学研究科
        • From Apr. 2020, To Mar. 2021
          Special Seminar in Chemical Engineering 3
          Fall, 工学研究科
        • From Apr. 2020, To Mar. 2021
          Research in Chemical EngineeringIII
          Spring, 工学研究科
        • From Apr. 2020, To Mar. 2021
          Research in Chemical EngineeringII
          Fall, 工学研究科
        • From Apr. 2020, To Mar. 2021
          Research in Chemical EngineeringIV
          Fall, 工学研究科
        • From Apr. 2020, To Mar. 2021
          Research in Chemical EngineeringI
          Spring, 工学研究科
        • From Apr. 2020, To Mar. 2021
          Research Internship in Chemical Engineering
          Year-long, 工学研究科
        • From Apr. 2020, To Mar. 2021
          Master's Thesis
          Year-long, 工学研究科
        • From Apr. 2020, To Mar. 2021
          Transport Phenomena
          Spring, 工学部
        • From Apr. 2021, To Mar. 2022
          Simulations in Chemical Engineering
          Fall, 工学部
        • From Apr. 2021, To Mar. 2022
          Fundamental Chemical Process Engineering
          Spring, 工学部
        • From Apr. 2021, To Mar. 2022
          Fundamental Chemical Process Engineering
          Spring, 工学部
        • From Apr. 2021, To Mar. 2022
          Fundamental Chemical Process Engineering
          Spring, 工学部
        • From Apr. 2021, To Mar. 2022
          Special Seminar in Chemical Engineering 6
          Spring, 工学研究科
        • From Apr. 2021, To Mar. 2022
          Advanced Seminar on Materials Engineering and Chemistry III
          Fall, 工学研究科
        • From Apr. 2021, To Mar. 2022
          Advanced Seminar on Materials Engineering and Chemistry II
          Spring, 工学研究科
        • From Apr. 2021, To Mar. 2022
          Advanced Seminar on Materials Engineering and Chemistry IV
          Fall, 工学研究科
        • From Apr. 2021, To Mar. 2022
          Advanced Seminar on Materials Engineering and Chemistry I
          Spring, 工学研究科
        • From Apr. 2021, To Mar. 2022
          Advanced Seminar on Materials Engineering and Chemistry VI
          Fall, 工学研究科
        • From Apr. 2021, To Mar. 2022
          Advanced Seminar on Materials Engineering and Chemistry V
          Fall, 工学研究科
        • From Apr. 2021, To Mar. 2022
          Laboratory and Exercise on Materials Engineering and Chemistry III
          Spring, 工学研究科
        • From Apr. 2021, To Mar. 2022
          Laboratory and Exercise on Materials Engineering and Chemistry II
          Fall, 工学研究科
        • From Apr. 2021, To Mar. 2022
          Laboratory and Exercise on Materials Engineering and Chemistry IV
          Fall, 工学研究科
        • From Apr. 2021, To Mar. 2022
          Laboratory and Exercise on Materials Engineering and Chemistry I
          Spring, 工学研究科
        • From Apr. 2021, To Mar. 2022
          Transport Phenomena
          Spring, 工学部
        • From Apr. 2021, To Mar. 2022
          Advanced Topics in Transport Phenomena
          Spring, 工学研究科
        • From Apr. 2021, To Mar. 2022
          Physical Chemistry and Analytical Techniques of Complex Systems
          Fall, 工学研究科

        Participation in PhD Defense

        • Processability and Foamability of Marine Degradable Bio-polymer,Poly(3-hydroxybutyrate-co-3-hydroxyhexanoate) (PHBH),and its Cellulose Nanofiber Composites
          Lee, Jisuk, Graduate School of Engineering, Sub-chief Examiner
          23 Mar. 2023
        • 化学架橋高分子材料の発泡成形プロセスにおいて架橋特性が気泡生成と成長に与える影響
          ITO AKIHIRO, Graduate School of Engineering, Sub-chief Examiner
          23 Mar. 2023
        • Dynamics of a model microswimmer near a liquid-liquid interface
          Chao Feng, Graduate School of Engineering, Chief Examiner
          23 Mar. 2023
        • Understanding the Physical Mechanisms behind the Collective Dynamics of Proliferating Cells
          Jintao Li, Graduate School of Engineering, Chief Examiner
          23 Mar. 2022
        • 定容積せん断試験法による粉体力学特性評価に関する研究
          SHIMADA YASUHIRO, Graduate School of Engineering, Sub-chief Examiner
          23 Mar. 2022

        Part-time lecturer

        • From 01 Apr. 2019, To 30 Sep. 2019
          東京大学, 生産技術研究所
        • From 01 Apr. 2018, To 31 Mar. 2019
          東京大学, 生産技術研究所
        list
          Last Updated :2025/04/22

          Administration

          School management (title, position)

          • From 01 May 2016, To 31 Mar. 2019
            国際高等教育院 企画評価専門委員会 数学部会 委員
          • From 01 Apr. 2019, To 31 Mar. 2020
            国際高等教育院 企画評価専門委員会 数学部会 委員
          • From 01 Apr. 2020, To 31 Mar. 2021
            国際高等教育院 企画評価専門委員会 数学部会 委員

          Faculty management (title, position)

          • From 01 Apr. 2015, To 31 Mar. 2016
            化学工学専攻長
          • From 01 Apr. 2015, To 31 Mar. 2016
            工学研究科点検・評価委員会 委員
          • From 01 Apr. 2015, To 31 Mar. 2017
            福井謙一記念研究センター運営員会委員
          • From 01 Apr. 2019, To 31 Mar. 2021
            福井謙一記念研究センター運営委員会委員
          • From 01 Apr. 2020, To 31 Mar. 2021
            化学工学専攻長
          • From 01 Apr. 2021, To 31 Mar. 2023
            福井謙一記念研究センター運営委員会委員
          • From 01 Apr. 2021, To 31 Mar. 2023
            工学研究科教育制度委員会 委員
          • From 01 Apr. 2021, To 31 Mar. 2023
            工学研究科高等教育院運営委員会 委員

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