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Comparison of Different Subgrid-Scale Models of Large Eddy Simulation for Indoor Airflow Modeling

机译:室内气流建模的大涡模拟的不同子网格比例模型的比较

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摘要

The Smagorinsky subgrid-scale model, a dynamic subgrid-scale model, and a stimulated subgrid-scale model have been used in a large eddy simulation (LES) program to compute airflow in a room. A fast Fourier transformation (FFT) method and a conventional iteration method were used in solving the Poisson equation. The predicted distributions of indoor air velocity, temperature, and contaminant concentrations show that the three subgrid-scale models can produce acceptable results for indoor environment design. The dynamic and stimulated models performed slightly better than the Smagorinsky model. The use of FFT can significantly reduce the computing time. LES is a tool of the next generation of indoor air distribution design.
机译:Smagorinsky子网格规模模型,动态子网格规模模型和受激子网格规模模型已用于大型涡流仿真(LES)程序中,以计算房间中的气流。快速傅立叶变换(FFT)方法和常规迭代方法用于求解Poisson方程。室内空气速度,温度和污染物浓度的预测分布表明,三个亚网格规模模型可以为室内环境设计提供可接受的结果。动态模型和受激模型的性能略好于Smagorinsky模型。 FFT的使用可以大大减少计算时间。 LES是下一代室内空气分配设计的工具。

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