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中国科学院力学研究所机构知识库
Knowledge Management System of Institue of Mechanics, CAS
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Source Publication:Journal of Computational Physics
Creator:reprint author
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Multiple temperature model for the information preservation method and its application to nonequilibrium gas flows
期刊论文
Journal of Computational Physics, 2011, 卷号: 230, 期号: 19, 页码: 7250-7265
Authors:
Zhang J(张俊)
;
Fan J(樊菁)
;
Jiang JZ(蒋建政)
;
Fan, J (reprint author), Chinese Acad Sci, Inst Mech, Lab High Temp Gas Dynam, Beijing 100190, Peoples R China
Adobe PDF(1189Kb)
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View/Download:877/185
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Submit date:2012/04/01
Information Preservation Method
Direct Simulation Monte Carlo Method
Multiple Temperature Model
Nonequilibruim Flows
Thermal Creep
Rarefied Gas Dynamics
Simulation Monte-carlo
Rarefied-gas
Statistical Simulation
Microchannel Flows
Boltzmann-equation
Speed
Driven
An immersed boundary method based on discrete stream function formulation for two- and three-dimensional incompressible flows
期刊论文
Journal of Computational Physics, 2011, 卷号: 230, 期号: 9, 页码: 3479-3499
Authors:
Wang SZ(王士召)
;
Zhang X(张星)
;
Zhang, X (reprint author), Chinese Acad Sci, Inst Mech, LNM, Beijing 100190, Peoples R China
Adobe PDF(1449Kb)
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View/Download:908/280
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Submit date:2012/04/01
Immersed Boundary Method
Discrete Stream Function Formulation
Incompressible Flow
Navier-stokes Equations
Parallel Computing
Large-eddy Simulation
Cartesian Grid Method
External Force-field
Low-reynolds-number
Circular-cylinder
Interface Method
Conservation Properties
Numerical-solutions
Moving Boundary
Viscous-flow
An Efficient Front-Tracking Method For Fully Nonlinear Interfacial Waves
期刊论文
Journal of Computational Physics, 2008, 页码: 7346-7367
Authors:
Fan P(范平)
;
Ping, F (reprint author), Chinese Acad Sci, Inst Mech, 15 Beisihuanxi Rd, Beijing 100190, Peoples R China.
Adobe PDF(1101Kb)
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View/Download:719/152
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Submit date:2009/08/03
Moving Boundary
Front-tracking
Nonlinear Interfacial Waves
Kdv Theory
Free-surface Flows
Multi-fluid Flows
Internal Waves
Solitary Waves
Permanent Form
Computation
Boundaries
Dynamics
Depth