首页> 外文会议>ASME international mechanical engineering congress and exposition;IMECE2011 >INTEGRATION OF COMPUTATIONAL FLUIDS DYNAMICS AND VIRTUAL REALITY VISUALIZATION FOR CONSTRUCTING THE WIND FIELD
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INTEGRATION OF COMPUTATIONAL FLUIDS DYNAMICS AND VIRTUAL REALITY VISUALIZATION FOR CONSTRUCTING THE WIND FIELD

机译:构造风场的计算流体动力学和虚拟现实可视化的集成

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3-D wind field models were developed for constructing 3-D wind fields in an urban wind condition and over irregular terrain. The virtual environment is used to visualize the simulation results. Simulation results based on statistical input data were obtained for 3-D urban wind flow over the Classroom and Office (CLO) building at Purdue University Calumet (PUC). The objective for this project was to construct the 3D wind field around the roof of the CLO building in order to analyze the wind condition and identify a suitable installation area which would have relatively more wind power but less turbulence for the wind turbine. By using the virtual reality (VR) technique, the simulation results can be clearly and vividly shown in a virtual environment that would not be as limited as traditional two-dimensional views. Statistical analysis was based on the wind data that was recorded by a sensor located on the roof of the CLO building. Specific wind conditions, which were obtained from the statistical analysis, were applied to simulation cases for the wind flow around a 3-D geometry model of the CLO building. In addition, different wind directions were applied in the Fluent program. After the CFD simulation results were exported, the virtual reality technique was used to visualize the simulation results.
机译:开发了3-D风场模型,用于在城市风况和不规则地形上构建3-D风场。虚拟环境用于可视化仿真结果。基于统计输入数据的模拟结果是针对Purdue University Calumet(PUC)的教室和办公室(CLO)建筑物上的3-D城市风向获得的。该项目的目的是在CLO建筑物的屋顶周围构建3D风场,以便分析风况并确定合适的安装区域,该区域将具有相对较大的风力,但对风力涡轮机的湍流较小。通过使用虚拟现实(VR)技术,可以在不受传统二维视图限制的虚拟环境中清晰,生动地显示仿真结果。统计分析基于位于CLO建筑物屋顶上的传感器记录的风数据。从统计分析中获得的特定风况被应用于CLO建筑物3-D几何模型周围风流的模拟案例。另外,在Fluent程序中应用了不同的风向。导出CFD仿真结果后,使用虚拟现实技术对仿真结果进行可视化。

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