Rchr
J-GLOBAL ID:201801020921316894   Update date: Jun. 06, 2024

SURBLYS Donatas

スルブリス ドナタス | SURBLYS Donatas
Affiliation and department:
Research field  (1): Fluid engineering
Research theme for competitive and other funds  (2):
  • 2022 - 2026 Conservation laws in microscopic wetting: from equilbrium systems to nonequilibrium systems
  • 2020 - 2023 数値計算による熱輸送特性の解明手法の確立
Papers (38):
  • Haiyi Sun, Donatas Surblys, Shukai Cheng, Taku Ohara. Molecular dynamics study on the effect of surface ionization on the interfacial heat transfer between silica and water. Applied Thermal Engineering. 2024
  • Isseki Yu, Takaharu Mori, Daisuke Matsuoka, Donatas Surblys, Yuji Sugita. SPANA: Spatial decomposition analysis for cellular-scale molecular dynamics simulations. J. Comput. Chem. 2024. 45. 8. 498-505
  • Qing-Yao Luo, Donatas Surblys, Hiroki Matsubara, Taku Ohara. A molecular dynamics study on the solid-liquid polymer interface: insight into the effect of surface roughness scale and polymer chain length on interfacial thermal resistance. Molecular Physics. 2024
  • Takamasa Saito, Masaki Kubo, Takao Tsukada, Eita Shoji, Gota Kikugawa, Donatas Surblys, Momoji Kubo. Molecular dynamics simulations for interfacial structure and affinity between carboxylic acid-modified Al2O3 and polymer melts. The Journal of Chemical Physics. 2023. 159. 16
  • Hiroki Matsubara, Donatas Surblys, Taku Ohara. Degrees of freedom of atoms in a rigid molecule for local temperature calculation in molecular dynamics simulation. Molecular Simulation. 2023. 1-8
more...
MISC (5):
Books (1):
  • マイクロ・ナノ熱工学の進展
    エヌ・ティー・エス 2021 ISBN:9784860437220
Lectures and oral presentations  (56):
  • Various Insights about Heat Transfer at Solid-Liquid Interfaces and beyond via Molecular Dynamics
    (ELyT Workshop 2024 2024)
  • Using molecule dynamics to peer into heat transfer mechanism at solid-liquid interfaces and beyond
    (Korea-Japan Joint Seminar on Heat Transfer VIII 2024)
  • A reactive molecular dynamics model with faithful thermodynamic properties for liquid ammonia
    (The 33rd International Symposium on Transport Phenomena 2023)
  • Various Findings about Heat Transfer related to Solid- Liquid Interfaces via Investigation with Molecular Dynamics
    (10th US-Japan Joint Seminar on Nanoscale Transport Phenomena 2023)
  • Work of adhesion and wetting of water droplets on hydroxylated silica surfaces
    (AJKFED2023 2023)
more...
Professional career (1):
  • Doctor of Philosophy in Engineering (Osaka University)
Awards (1):
  • 2020/06 - 日本伝熱学会 日本伝熱学会賞 学術賞
Association Membership(s) (2):
日本伝熱学会 ,  THE JAPAN SOCIETY OF FLUID MECHANICS
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