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Wind tunnel study and numerical simulation of dust particle resuspension from indoor surfaces in turbulent flows

机译:湍流室内表面尘埃颗粒悬浮的风洞研究与数值模拟

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摘要

Particle resuspension from flooring is an important source of air pollution in the indoor environment. In this work, resuspension of monolayer, polydisperse, irregularly shaped dust particles from various types of floorings was studied via a series of wind tunnel experiments. The range of free-stream velocity needed for resuspension of dust particles was evaluated as a function of particle size and material of particles and surfaces. In addition, a Monte Carlo simulation for predicting the resuspension of dust particles was developed. The resuspension model took into account the effects of particle irregularity, particle surface roughness, and flow characteristics. The dust particle resuspension from different floorings for several particle sizes was evaluated. The model predictions for resuspension fractions were compared with the experimental data and good agreement was observed. The study provided information on the role of airflow velocity on irregular dust particle resuspension from common floorings.
机译:地板上的颗粒物悬浮是室内环境中空气污染的重要来源。在这项工作中,通过一系列风洞实验研究了来自各种类型地板的单层,多分散,形状不规则的灰尘颗粒的悬浮。尘埃颗粒再悬浮所需的自由流速度范围作为颗粒大小以及颗粒和表面材料的函数进行评估。另外,开发了用于预测尘埃颗粒再悬浮的蒙特卡洛模拟。重悬模型考虑了颗粒不规则性,颗粒表面粗糙度和流动特性的影响。评估了来自不同地板的多种粒径的粉尘悬浮物。将重悬馏分的模型预测与实验数据进行比较,并观察到良好的一致性。该研究提供了有关气流速度对普通地板上不规则灰尘颗粒重新悬浮的作用的信息。

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