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AbstractThe state of the art of computational wind engineering is reviewed. Firstly, the numerical method for simulating turbulent airflow in wind engineering is described briefly. The diagnostic system for assessing the results of numerical simulation is described and error estimation and mesh resolution are discussed. Next the time-dependent flowfield is predicted by 3D Large Eddy Simulation and the results are illustrated using the techniques of animated graphics. Lastly an example of practical application is described using the flowfield prediction around an actual building complex.
AbstractThe state of the art of computational wind engineering is reviewed. Firstly, the numerical method for simulating turbulent airflow in wind engineering is described briefly. The diagnostic system for assessing the results of numerical simulation is described and error estimation and mesh resolution are discussed. Next the time-dependent flowfield is predicted by 3D Large Eddy Simulation and the results are illustrated using the techniques of animated graphics. Lastly an example of practical application is described using the flowfield prediction around an actual building complex.
Computational wind engineering
Murakami, S. (author)
Journal of Wind Engineering and Industrial Aerodynamics ; 36 ; 517-538
1990-01-01
22 pages
Article (Journal)
Electronic Resource
English
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