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Journal of Zhejiang University-SCIENCE A (Applied Physics & Engineering)  2011, Vol. 12 Issue (4): 278-290    DOI: 10.1631/jzus.A1000114
Mechanical & Civil Engineering     
Large eddy simulation for wind field analysis based on stabilized finite element method
Cheng Huang, Yan Bao, Dai Zhou, Jin-quan Xu
School of Naval Architecture, Ocean and Civil Engineering, Shanghai Jiao Tong University, Shanghai 200240, China
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Abstract  In this paper, a stabilized finite element technique, actualized by streamline upwind Petrov-Galerkin (SUPG) stabilized method and three-step finite element method (FEM), for large eddy simulation (LES) is developed to predict the wind flow with high Reynolds numbers. Weak form of LES motion equation is combined with the SUPG stabilized term for the spatial finite element discretization. An explicit three-step scheme is implemented for the temporal discretization. For the numerical example of 2D wind flow over a square rib at Re=4.2×105, the Smagorinsky’s subgrid-scale (SSGS) model, the DSGS model, and the DSGS model with Cabot near-wall model are applied, and their results are analyzed and compared with experimental results. Furthermore, numerical examples of 3D wind flow around a surface-mounted cube with different Reynolds numbers are performed using DSGS model with Cabot near-wall model based on the present stabilized method to study the wind field and compared with experimental and numerical results. Finally, vortex structures for wind flow around a surface-mounted cube are studied by present numerical method. Stable and satisfactory results are obtained, which are consistent with most of the measurements even under coarse mesh.

Key wordsLarge eddy simulation (LES)      Subgrid-scale model      Stabilized finite element method (FEM)      Unstructured grid      Wind flow     
Received: 26 March 2010      Published: 11 April 2011
CLC:  TU31  
Cite this article:

Cheng Huang, Yan Bao, Dai Zhou, Jin-quan Xu. Large eddy simulation for wind field analysis based on stabilized finite element method. Journal of Zhejiang University-SCIENCE A (Applied Physics & Engineering), 2011, 12(4): 278-290.

URL:

http://www.zjujournals.com/xueshu/zjus-a/10.1631/jzus.A1000114     OR     http://www.zjujournals.com/xueshu/zjus-a/Y2011/V12/I4/278

[1] ZOU Jian-feng, ZHENG Yao, LIU Ou-zi. Simulation of turbulent combustion in DLR Scramjet[J]. Journal of Zhejiang University-SCIENCE A (Applied Physics & Engineering), 2007, 8(7): 1053-1058.
[2] CHEN Shui-fu, SUN Bing-nan. PARALLEL IMPLEMENTATIONS OF NUMERICAL SIMULATION OF WIND FLOW AROUND BUILDINGS[J]. Journal of Zhejiang University-SCIENCE A (Applied Physics & Engineering), 2000, 1(3): 300-305.