@inproceedings{4386cb0a91db40b3a2433d69f0dfda45,
title = "Hyperbolic navier-stokes systems for three-dimensional viscous flow in edge-based cell-vertex unstructured solver",
abstract = "This paper presents development of hyperbolic Navier-Stokes (HNS) systems for three-dimensional viscous flow in edge-based cell-vertex unstructured solver, i.e. Stanford University Unstructured (SU2) platform. Numeric scheme and operation for isothermal wall and symmetry boundary are proposed. For validating the new solver, low Mach flows over two-dimensional NACA0012 airfoil and three-dimensional DLR-F6 wing-body are simulated. The results demonstrate the superiority of HNS over conventional Navier-Stokes (CNS) systems in prediction accuracy of friction coefficient and efficiency. In general, HNS can handle the low-Mach high-Reynolds real flow effectively and efficiently.",
keywords = "Boundary conditions, High reynolds number, Hyperbolic navier-stokes systems, SU² platform",
author = "Shuai Lou and Wang, \{Zhao Wei\} and Yuan Zhao and Lin, \{Bo Xi\} and Chao Yan",
note = "Publisher Copyright: {\textcopyright} 2019 IEEE.; 10th IEEE International Conference on Mechanical and Aerospace Engineering, ICMAE 2019 ; Conference date: 22-07-2019 Through 25-07-2019",
year = "2019",
month = jul,
doi = "10.1109/ICMAE.2019.8880979",
language = "英语",
series = "2019 IEEE 10th International Conference on Mechanical and Aerospace Engineering, ICMAE 2019",
publisher = "Institute of Electrical and Electronics Engineers Inc.",
pages = "128--132",
booktitle = "2019 IEEE 10th International Conference on Mechanical and Aerospace Engineering, ICMAE 2019",
address = "美国",
}