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Wenwen Zhao (赵文文)
Wenwen Zhao (赵文文)
其他姓名W. Zhao, W. W. Zhao
Associate Professor, Zhejiang University
在 zju.edu.cn 的电子邮件经过验证 - 首页
标题
引用次数
引用次数
年份
Formulation of a new set of simplified conventional Burnett equations for computation of rarefied hypersonic flows
W Zhao, W Chen, RK Agarwal
Aerospace Science and Technology 38, 64-75, 2014
462014
Computation of shock wave structure using a simpler set of generalized hydrodynamic equations based on nonlinear coupled constitutive relations
Z Jiang, W Zhao, W Chen, RK Agarwal
Shock Waves 29 (8), 1227-1239, 2019
412019
Computation of hypersonic flows over flying configurations using a nonlinear constitutive model
Z Jiang, W Zhao, Z Yuan, W Chen, RS Myong
AIAA Journal 57 (12), 5252-5268, 2019
392019
Numerical simulation of hypersonic reaction flows with nonlinear coupled constitutive relations
Z Yuan, W Zhao, Z Jiang, W Chen
Aerospace Science and Technology 112, 106591, 2021
342021
An undecomposed hybrid algorithm for nonlinear coupled constitutive relations of rarefied gas dynamics
Z Jiang, W Zhao, W Chen, RK Agarwal
Communications in Computational Physics 26 (3), 880-912, 2019
332019
Numerical analysis of the micro-Couette flow using a non-Newton–Fourier model with enhanced wall boundary conditions
Z Jiang, W Chen, W Zhao
Microfluidics and Nanofluidics 22, 1-20, 2018
312018
Numerical simulation of hypersonic thermochemical nonequilibrium flows using nonlinear coupled constitutive relations
Z Shuhua, Y Zhenyu, Z Wenwen, C Weifang
Chinese Journal of Aeronautics 36 (3), 63-79, 2023
212023
Modified nonlinear coupled constitutive relations model for hypersonic nonequilibrium flows
Z Yuan, W Zhao, Z Jiang, W Chen, RK Agarwal
Journal of Thermophysics and Heat Transfer 34 (4), 848-859, 2020
212020
Multiple temperature model of nonlinear coupled constitutive relations for hypersonic diatomic gas flows
Z Yuan, Z Jiang, W Zhao, W Chen
AIP Advances 10 (5), 2020
202020
Eu's generalized hydrodynamics with its derived constitutive model: Comparison to Grad's method and linear stability analysis
Z Jiang, W Zhao, W Chen, Z Yuan
Physics of Fluids 33 (12), 2021
152021
Improved automatic kernel construction for Gaussian process regression in small sample learning for predicting lift body aerodynamic performance
Y Yang, W Zhao, Y Xue, H Yang, C Wu
Physics of Fluids 35 (6), 2023
142023
Computation of 1-D shock structure in a gas in rotational non-equilibrium using a new set of simplified Burnett equations
W Zhao, W Chen, H Liu, RK Agarwal
Vacuum 109, 319-325, 2014
142014
A computational strategy for nonlinear coupled constitutive relations of rarefied nonequilibrium flows on unstructured grids
S Zeng, Z He, W Zhao, W Chen
Aerospace Science and Technology 141, 108477, 2023
132023
Computation of rarefied hypersonic flows using modified form of conventional Burnett equations
W Zhao, W Chen, RK Agarwal
Journal of Spacecraft and Rockets 52 (3), 789-803, 2015
132015
A second-order slip/jump boundary condition modified by nonlinear Rayleigh–Onsager dissipation factor
S Zeng, W Zhao, Z Jiang, W Chen
Physics of Fluids 35 (4), 2023
122023
A three-dimensional finite volume method for conservation laws in conjunction with modified solution for nonlinear coupled constitutive relations
Z Jiang, W Zhao, W Chen
AIP Conference Proceedings 1786 (1), 2016
122016
Fast flow field prediction of three-dimensional hypersonic vehicles using an improved Gaussian process regression algorithm
Y Yang, Y Xue, W Zhao, S Yao, C Li, C Wu
Physics of Fluids 36 (1), 2024
112024
Data-driven nonlinear constitutive relations for rarefied flow computations
W Zhao, L Jiang, S Yao, W Chen
Advances in Aerodynamics 3, 1-19, 2021
112021
Computation of 1-D shock structure using nonlinear coupled constitutive relations and generalized hydrodynamic equations
W Zhao, Z Jiang, W Chen
AIP Conference Proceedings 1786 (1), 2016
112016
Computational study of lateral jet interaction in hypersonic thermochemical non-equilibrium flows using nonlinear coupled constitutive relations
S Zeng, J Yang, W Zhao, Y Huang, Z Jiang, W Chen
Physics of Fluids 35 (11), 2023
102023
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