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Exploring the feasibility of predicting contaminant transport using a stand-alone Markov chain solver based on measured airflow in enclosed environments

机译:基于封闭环境中测量的气流的独立马尔可夫链求解器预测污染物运输的可行性

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Correctly predicting contaminant transport in enclosed environments is crucial for improving interior layouts to reduce infection risks. Using the measured airflow field as input to predict the contaminant transport may overcome the challenges of measuring complex boundary conditions and inaccurate turbulence modeling in the existing methods. Therefore, this study numerically explored the feasibility of predicting contaminant transport from the measured airflow field. A stand-alone Markov chain solver was developed so that the calculations need not rely on commercial software. Airflow information from CFD simulation results, including the threedimensional velocity components and turbulence kinetic energy, was used as surrogate for experimental measurement based on the spatial resolution of ultrasonic anemometers. Three cases were used to assess the feasibility of the proposed method, and the calculation results were compared with the benchmark calculated by the commercial CFD software. The results show that, when the airflow was simple, such as that in an isothermal ventilated chamber, the stand-alone Markov chain solver based on the measured airflow field predicted the trend of contaminant transport and peak concentrations reasonably well. However, for complex airflow, such as that in non-isothermal chambers with heat sources or occupants, the solver can reasonably predict only the general trend of contaminant transport.
机译:正确预测封闭环境中的污染物运输对于改善内部布局以降低感染风险至关重要。使用测量的气流场作为输入以预测污染物传输可以克服在现有方法中测量复杂边界条件和不准确的湍流建模的挑战。因此,该研究在数值上探索了预测测量气流场的污染物运输的可行性。开发了一个独立的马尔可夫链求解器,​​以便计算不需要依赖商业软件。来自CFD仿真结果的气流信息,包括三维速度分量和湍流动能,基于超声波风管的空间分辨率作为实验测量的代理。使用三种情况来评估所提出的方法的可行性,并将计算结果与商业CFD软件计算的基准进行比较。结果表明,当气流简单时,例如在等温通风室中,基于测量的气流场的独立马尔可夫链求解器预测了污染物运输和峰值浓度的趋势。然而,对于复杂的气流,例如在具有热源或乘员的非等温腔室中,求解器可以合理地预测污染物运输的一般趋势。

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