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Modelling the effect of an occupant on displacement ventilation with computational fluid dynamics

机译:用计算流体动力学模拟乘员对置换通风的影响

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Displacement ventilation of a room with an occupant is modelled using computational fluid dynamics (CFD) and compared against experimental data. The geometry of the experimental manikin is accurately represented in the CFD model to minimise potential errors from using a simplified form. Modelling thermal radiation from the manikin is found to be important and calculations using a radiation model show good agreement with experimental data. The influence of turbulence modelling is considered and a comparative study is made between an unsteady Reynolds-averaged approach (URANS) and detached-eddy simulation (DES). The results show that the URANS and DES give similar predictions with the DES results in slightly better agreement with the experimental data. The realistic manikin geometry is required to give accurate heat transfer and contaminant exposure predictions; such geometries can be handled with relative ease using current grid generation tools and CFD solvers.
机译:使用计算流体动力学(CFD)对具有居住者房间的置换通风进行建模,并与实验数据进行比较。实验人体模型的几何形状可以在CFD模型中准确表示,以最大程度地减少使用简化形式的潜在误差。已发现对人体模型的热辐射进行建模很重要,并且使用辐射模型进行的计算与实验数据显示出良好的一致性。考虑了湍流建模的影响,并进行了非稳态雷诺平均方法(URANS)和分离涡模拟(DES)之间的比较研究。结果表明,URANS和DES与DES结果给出了相似的预测,与实验数据的一致性更好。需要真实的人体模型几何形状才能给出准确的传热和污染物暴露预测;使用当前的网格生成工具和CFD求解器,可以相对轻松地处理此类几何。

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