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Evaluation of models and methods to simulate thermal radiation in indoor spaces

机译:评估模拟室内空间热辐射的模型和方法

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摘要

The theoretical models of Surface-to-Surface (S2S) thermal radiation, including the Monte Carlo model, Discrete Transfer model, Modest model and Heat-Flux-Split approach, are evaluated in terms of the predictive accuracy and CFD computational cost when simulating indoor thermal flows. It is demonstrated that the inclusion of thermal radiation in the CFD model is vital as the air temperature in the lower levels can be underpredicted while the heater surface temperature can be significantly overpredicted if the radiative effects are ignored. In addition, the predicted temperature distribution on the heat-receiving solid surfaces is highly sensitive to the selected radiation model. The comparisons demonstrate that the Monte Carlo model and Discrete Transfer model have comparable predictive capabilities while the latter requires less CPU time and is more computationally efficient. The appropriate number of the representative photons and rays are also recommended for the Monte Carlo model and Discrete Transfer model, respectively.
机译:在模拟室内时,根据预测精度和CFD计算成本,评估了表面到表面(S2S)热辐射的理论模型,包括蒙特卡洛模型,离散传递模型,适度模型和热通量拆分方法。热流。结果表明,在CFD模型中包含热辐射至关重要,因为如果忽略辐射效应,则较低水平的空气温度可能会被低估,而加热器表面温度可能会被严重高估。另外,在热接收固体表面上的预测温度分布对所选辐射模型高度敏感。比较表明,蒙特卡洛模型和离散传递模型具有可比较的预测能力,而后者需要更少的CPU时间并且计算效率更高。还建议分别为蒙特卡洛模型和离散传递模型推荐适当数量的代表性光子和射线。

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