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职业迁徙
个人简介
Our research is broadly defined by multiphysics problems in fluid dynamics and transport engineering. Our work contributes to the understanding of these problems primarily through theoretical tools such as techniques of applied mathematics as well as massively-parallel simulations. Numerical simulations enable quantitative visualization of the detailed physical processes which can be difficult to detect experimentally. They also provide quantitative data that guide the development of reduced-order models, which would naturally induce insight for design, optimization and control. Most of our work involves complementary interactions with experimental groups within and outside of Stanford. Specific current research topics include:
(1) Electro-convection and microscale chaos near electrochemical interfaces
(2) Particle-laden flows with applications in solar receivers
(3) Applications of superhydrophobic surfaces for drag reduction of turbulent flows
(4) Micro-bubble generation by breaking waves
(5) Electrokinetics of micropores and nanopores
(1) Electro-convection and microscale chaos near electrochemical interfaces
(2) Particle-laden flows with applications in solar receivers
(3) Applications of superhydrophobic surfaces for drag reduction of turbulent flows
(4) Micro-bubble generation by breaking waves
(5) Electrokinetics of micropores and nanopores
研究兴趣
论文共 236 篇作者统计合作学者相似作者
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Journal of Computational Physics (2024): 112747
JOURNAL OF COMPUTATIONAL PHYSICS (2024): 112721
JOURNAL OF COMPUTATIONAL PHYSICS (2024): 112657
arXiv (Cornell University) (2023)
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Siavash Kananian, Jihun Rho,Cheng Chen,Shahab Mirjalili,Alwin Daus, Min-gu Kim,Simiao Niu,Eric Pop,H.-S. Philip Wong,Zhenan Bao,Ali Mani,Ada S.Y. Poon
Deviceno. 6 (2023): 100183
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arXiv (Cornell University) (2023)
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J. Horvat, K. Vanka, R. Kim, A. Brown, C. Donovan,M. Ali, H. Gomez, T. Palanisami, C. James, K. Williams, D. Ilic, P. Hansbro
RESPIROLOGY (2023): 60-60
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