Rchr
J-GLOBAL ID:201401003666633277   Update date: Nov. 14, 2024

Matsumoto Mitsuhiro

Matsumoto Mitsuhiro
Affiliation and department:
Research field  (1): Thermal engineering
Research keywords  (3): particle simulation ,  micro-scale thermofluids ,  transport phenomena
Research theme for competitive and other funds  (25):
  • 2021 - 2024 Investigation of Relevant Factors to Fluid Phase Change in Narrow Space
  • 2018 - 2021 Investigation and modelling of complex flow with phase change in microchannels
  • 2015 - 2018 Investigation of quasi two-dimensional fluid phase change and its application to cleansing of laminated plates
  • 2014 - 2018 Structural design of thermoelectric nano-composite based on topology optimizaiton
  • 2008 - 2010 Thermal Engineering Advanced Approach for Developing New Control Technology of Spectrally-Functional Thermal Radiation
Show all
Papers (102):
  • YS Huang, M Matsumoto. Effects of electric double layer on nanoscale boiling: Molecular dynamics approach. COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS. 2024. 695. 134253
  • Yoshiya Takahara, Mitsuhiro Matsumoto, Misaki Hanaoka, Manabu Iwakawa. Phonon transport simulation with an extended VOF scheme for nano-structured thin film. Applied Physics Letters. 2024. 124. 17. 172204-1-17220407
  • 松本 充弘. 計算化学的手法による有機物・無機物の熱物性・輸送特性予測. 京都大学化学研究所スーパーコンピュータシステム研究成果報告書. 2024. 2024. 51-51
  • I Shimizu, M Matsumoto. Free Energy Evaluation of Cavity Formation in Metastable Liquid Based on Stochastic Thermodynamics. Entropy. 2024. 26. 700
  • R Brunetto, C Lantz, Y Fukuda, A Aleon-Toppani, T Nakamura, Z Dionnet, D Baklouti, F Borondics, Z Djouadi, S Rubino, et al. Ryugu's Anhydrous Ingredients and Their Spectral Link to Primitive Dust from the Outer Solar System. ASTROPHYSICAL JOURNAL LETTERS. 2023. 951. 2. L33
more...
MISC (56):
  • 松本 充弘. 計算化学的手法による有機物・無機物の熱物性・輸送特性予測. 京都大学化学研究所スーパーコンピュータシステム研究成果報告書. 2021. 2020. 40-40
  • 松本 充弘. 計算化学的手法による有機物・無機物の熱物性・輸送特性予測. 京都大学化学研究所スーパーコンピュータシステム研究成果報告書. 2020. 2019. 2019. 45-45
  • 松本 充弘. 計算化学的手法による有機物および無機物の熱物性・輸送特性予測. 京都大学化学研究所スーパーコンピュータシステム研究成果報告書. 2019. 2018. 55-55
  • 三上 慎司, 大津 達也, 大津 陽平, 檜垣 誠妥, 波多野 直也, 松本 充弘, 富田 直秀. Destruction Energy Indexの提案-物質分離の指標. バイオエンジニアリング講演会. 2018. 2018. 0. 2H11
  • Furuta Kozo, Sato Ayami, Izui Kazuhiro, Yamada Takayuki, Matsumoto Mitsuhiro, Nishiwaki Shinji. Level set-based shape optimization for temperature minimization problems in nanostructures. The Proceedings of OPTIS. 2018. 2018. 0
more...
Books (9):
  • Computer Design for New Drugs and Materials: Molecular Dynamics of Nanoscale Phenomena
    Nova Science Publishers 2017
  • マイクロバブル(ファインバブル)のメカニズム・特性制御と実際応用のポイント
    情報機構 2015
  • Computational Materials and Biological Sciences
    Nova Publishers 2015
  • ナノ・マイクロスケール熱物性ハンドブック
    養賢堂 2014
  • インクジェット技術における微小液滴の吐出衝突乾燥
    技術情報教会 2009
more...
Lectures and oral presentations  (50):
  • Molecular Simulation Scheme for Chemical Reactions in Carbon Fiber Production
    (Polymers 2023)
  • Time - Dependent Quantum Simulation of Contact Electrification
    (6th World Congress on Nano Science, Nanotechnology and Advanced Materials)
  • Theoretical Evaluation of Transport Properties at Semiconductor Interface
    (6th World Congress on Nano Science, Nanotechnology and Advanced Materials)
  • Numerical Scheme for Boltzmann Transport Equations -Thermal Control with Nano-structured Materials-
    (34th IUPAP Conference on Computational Physics)
  • Thermal control with nano-structure: Phonon transport simulation
    (International Conference on Materials)
more...
Work history (3):
  • 1997/02/01 - Graduate School of Engineering, Kyoto University Associate Professor
  • 1990/04/01 - Graduate School of Engineering, Nagoya University Assistant Professor, Associate Professor
  • 1989/04/01 - Department of Chemical Engineering, Cornell University Postdoctoral Researcher
Association Membership(s) (4):
Molecular Simulation Society of Japan ,  Chemical Society of Japan ,  Physical Society of Japan ,  Japan Society of Mechanical Engineers
※ Researcher’s information displayed in J-GLOBAL is based on the information registered in researchmap. For details, see here.

Return to Previous Page