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Characterizing transport and deposition of particulate pollutants in a two-zone chamber using a Markov chain model combined with computational fluid dynamics

机译:马尔可夫链模型结合计算流体动力学特性表征两区室中颗粒污染物的运输和沉积

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Understanding the distribution and spread of indoor airborne contaminants between rooms in a multi-zone space is crucial for protecting human health and indoor environmental control. Predicting the transmission of suddenly released particulate pollutants from one room to another in a rapid and precise manner is important for reducing or even eliminating the risk of cross contamination between occupants. In this study, we developed a modified Markov chain model that considers the effect of gravity to predict the dispersion and deposition of aerosol particles in a two-zone chamber. To perform particle phase simulations, the proposed model couples the data obtained from a steady-state flow field using the computational fluid dynamics (CFD) software Fluent with some codes that we developed in the MATLAB environment. Two examples based on previously reported experimental data were used to validate the proposed model. The results indicate that the proposed model is suitable for modeling the dynamic processes where airborne particles are released from constant and pulsed contaminant sources in multi-zone spaces with reasonable accuracy and computational efficiency. After analyzing particle exposure in the two-zone chamber, we found that the accumulated exposure level in the zone with the constant contaminant source always had a higher rate of increase than the other zones. However, the accumulated exposure level for the pulsed (instantaneous) source was inversely proportional to the air exchange rate for all zones. Compared with traditional CFD models and multi-zone models, our proposed model can balance the accuracy and efficiency when predicting the spread of particulate contaminants in multi-zone spaces by choosing appropriate grid resolution (s) (C) 2019 Elsevier Inc. All rights reserved.
机译:了解室内空气污染物在多区域空间中各个房间之间的分布和扩散对于保护人类健康和室内环境控制至关重要。快速而准确地预测突然释放的颗粒污染物从一个房间到另一个房间的传播,对于减少甚至消除乘员之间交叉污染的风险非常重要。在这项研究中,我们开发了一种改进的马尔可夫链模型,该模型考虑了重力的影响来预测两区室内气溶胶颗粒的分散和沉积。为了执行粒子相仿真,提出的模型将使用计算流体力学(CFD)软件Fluent从稳态流场获得的数据与我们在MATLAB环境中开发的一些代码进行耦合。基于先前报告的实验数据的两个示例用于验证所提出的模型。结果表明,所提出的模型适合于以合理的精度和计算效率对动态过程进行建模,在该过程中,空气污染物从多区域空间中的恒定和脉冲污染物源中释放出来。在分析了两个区域的腔室中的颗粒暴露之后,我们发现在污染物源恒定的区域中,累积的暴露水平始终比其他区域具有更高的增长率。但是,脉冲(瞬时)源的累积暴露水平与所有区域的空气交换率成反比。与传统的CFD模型和多区域模型相比,我们建议的模型可以通过选择适当的网格分辨率来预测多区域空间中颗粒污染物的扩散时平衡精度和效率(C)2019 Elsevier Inc.保留所有权利。

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