DOMAIN DECOMPOSITION HYBRID METHOD FOR NUMERICAL SIMULATION OF BLUFF BODY FLOWS——THEORETICAL MODEL AND APPLICATION

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作者
凌国灿
凌国平
王运平
机构
[1] Institute of Mechanics
[2] Academia Sinica
[3] Beijing
[4] PRC
[5] Deportment of Mechanics
[6] Huazhong University of Science and Technology
[7] Wuhan
[8] Beijing
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摘要
<正> The discrete vortex method is not capable of precisely predicting the bluff body flow separation and the fine structure of flow field in the vicinity of the body surface. In order to make a theoretical improvement over the method and to reduce the difficulty in finite-difference solution of N-S equations at high Reynolds number, in the present paper, we suggest a new numerical simulation model and a theoretical method for domain decomposition hybrid combination of finite-difference method and vortex method. Specifically, the full flow field is decomposed into two domains. In the region of O(R) near the body surface (R is the characteristic dimension of body), we use the finite-difference method to solve the N-S equations and in the exterior domain, we take the Lagrange-Euler vortex method. The connection and coupling conditions for flow in the two domains are established. The specific numerical scheme of this theoretical model is given. As a preliminary application, some numerical simulations for flows
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页码:977 / 990
页数:14
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