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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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High-order simulation solving Navier-Stokes equations with Spalart–Allmaras turbulence model
会议论文
4th International Conference on Fluid Mechanics and Industrial Applications, FMIA 2020,, Asian Union of Information Technology, June 27, 2020 - June 28, 2020
作者:
Yang L
;
岳连捷
;
张启帆
;
张新宇
Adobe PDF(1289Kb)
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浏览/下载:193/45
  |  
提交时间:2021/01/12
Investigation of high-order cell-centered finite difference method for aeroacoustics
会议论文
25th AIAA/CEAS Aeroacoustics Conference, 2019, Delft, Netherlands, May 20, 2019 - May 23, 2019
作者:
Jin Y
;
Liao F(廖飞)
;
Cai JS
;
Morris PJ
Adobe PDF(2986Kb)
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收藏
  |  
浏览/下载:204/73
  |  
提交时间:2020/11/20
Full-scale Improved Delayed Detached Eddy Simulation of Transverse Hydrogen Jet in Supersonic Combustion
会议论文
2018 Joint Propulsion Conference, Cincinnati, Ohio. , July 9-11, 2018
作者:
Fan E
;
Wu K(吴坤)
;
Lee YC(李亚超)
;
Yao W(姚卫)
;
Fan XJ(范学军)
浏览
  |  
Adobe PDF(567Kb)
  |  
收藏
  |  
浏览/下载:325/98
  |  
提交时间:2018/12/26
INFLUENCE OF TYPICAL SUBGRADE STRUCTURES ON AERODYNAMIC CHARACTERISTICS OF HIGH SPEED TRAINS IN CROSS WIND CONDITIONS
会议论文
ASME Fluids Engineering Division Summer Meeting (FEDSM2018), Montreal, CANADA, JUL 15-20, 2018
作者:
Sun ZX(孙振旭)
;
Yang GW(杨国伟)
Adobe PDF(1819Kb)
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收藏
  |  
浏览/下载:228/39
  |  
提交时间:2019/04/19
A low-dissipation solver based on OpenFOAM designed for large eddy simulation in compressible flows
会议论文
21st AIAA International Space Planes and Hypersonics Technologies Conference, Xiamen, China, 6-9 March 2017
作者:
Lee YC(李亚超)
;
Yao W(姚卫)
;
Fan XJ(范学军)
Adobe PDF(1377Kb)
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收藏
  |  
浏览/下载:276/112
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提交时间:2020/08/26
Low-dissipation compressible Solver, Skew-symmetric Form, Benchmark Flow Problems
A low-dissipation scheme based on OpenFoam designed for large eddy simulation in compressible flow
会议论文
21st AIAA International Space Planes and Hypersonics Technologies Conference, Xiamen, China, 6-9 March 2017
作者:
Lee YC
;
Yao W(姚卫)
;
Fan XJ(范学军)
;
Yao, Wei(weiyao@imech.ac.cn)
Adobe PDF(1358Kb)
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浏览/下载:417/104
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提交时间:2018/01/16
Computational Fluid Dynamics
Computer Software
Digital Storage
Kinetic Energy
Kinetics
Open Source Software
Open Systems
Runge Kutta Methods
Shock Tubes
Shock Waves
Spacecraft
Turbulence
Two Phase Flow
Full Scale Detached Eddy Simulation of Transverse Hydrogen Jet in Supersonic Combustion
会议论文
53rd AIAA/SAE/ASEE Joint Propulsion Conference , Atlanta, GA., 10-12 July 2017
作者:
Fan E
;
Wu K(吴坤)
;
Lee YC
;
Yao W(姚卫)
;
Fan XJ(范学军)
Adobe PDF(2297Kb)
  |  
收藏
  |  
浏览/下载:250/107
  |  
提交时间:2018/01/16
A low-dissipation solver based on openFOAM designed for large eddy simulation in compressible flow
会议论文
21st AIAA International Space Planes and Hypersonics Technologies Conference, Hypersonics 2017, Xiamen, China, March 6, 2017 - March 9, 2017
作者:
Lee YC
;
Yao W(姚卫)
;
Fan XJ(范学军)
Adobe PDF(1377Kb)
  |  
收藏
  |  
浏览/下载:476/90
  |  
提交时间:2018/11/08
Computational Fluid Dynamics
Digital Storage
Kinetic Energy
Kinetics
Open Source Software
Open Systems
Ramjet Engines
Runge Kutta Methods
Shock Tubes
Turbulence
Two Phase Flow
Bench
Mark Problems
Central
Upwind Scheme
Computational Fluid Dynamics Software
Skew
Symmetric Forms
Temporal Discretization
Turbulence Structures
Unstructured Meshes
Wall Bounded Turbulence
Comparison of drag prediction using RANS models and DDES for the DLR-F6 configuration using high order schemes
会议论文
54th AIAA Aerospace Sciences Meeting, 2016, San Diego, CA, United states, January 4, 2016 - January 8, 2016
作者:
Gan JY
;
Shen YQ(申义庆)
;
Zha GC
Adobe PDF(555Kb)
  |  
收藏
  |  
浏览/下载:276/90
  |  
提交时间:2017/05/05
Central Differencing
Drag Prediction
Finite Difference Scheme
High
Order Scheme
Line Relaxation
Mesh Refinement
Trailing Edges
Turbulent Models
Role of wall temperature on shock train in a rectangular isolator
会议论文
52nd AIAA/SAE/ASEE Joint Propulsion Conference, 2016, Salt Lake City, UT, United states, July 25, 2016 - July 27, 2016
作者:
Lu HB
;
Wang D
;
Chen X
;
Yue LJ(岳连捷)
;
Ji, Feng (yuelj@imech.ac.cn)
Adobe PDF(560Kb)
  |  
收藏
  |  
浏览/下载:252/87
  |  
提交时间:2017/05/05
Aero
Heating
Dual Mechanisms
On Flow
Shock Train
Specific Heat Ratio
Total Pressure
Total Temperatures
Wall Temperatures