Experimental validation of CFD simulations of bioaerosol movement in a mechanically ventilated airspace

Q4 Engineering
A. La, Qiang Zhang
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引用次数: 5

Abstract

A CFD (computational fluid dynamics) model was developed to simulate the movement of bioaerosols in mechanically-ventilated chambers and the results were validated with experiments. Liquid aerosols containing Porcine Reproductive and Respiratory Syndrome Virus (PRRSV) were artificially generated in the chambers. Bioaerosol concentration was monitored with an optical particle counter until steady-state conditions were achieved (aerosols containing viruses are referred to as bioaerosols in this paper). Four treatments with two ventilation rates and two bioaerosol generation rates were tested. The standard k-ɛ turbulence model and a discrete phase model with unsteady tracking was used in an ANSYS Fluent CFD model to simulate the airflow and bioaerosol movement until steady-state was reached. A mesh refinement test was performed to select an optimal mesh size for simulations. The CFD simulations showed good agreement with the measured bioaerosol concentrations at steady-state with differences of 2% to 8%, normalized mean square error of 0.01 to 0.19, and fractional bias of 0.02 to 0.08. Simulations and validation during the transient phase could not be verified because of limited measurement locations.
机械通风空气中生物气溶胶运动CFD模拟的实验验证
开发了一个CFD(计算流体动力学)模型来模拟生物气溶胶在机械通风室中的运动,并通过实验验证了结果。在室内人工产生含有猪繁殖和呼吸综合征病毒(PRRSV)的液体气溶胶。用光学粒子计数器监测生物气溶胶浓度,直到达到稳态条件(本文将含有病毒的气溶胶称为生物气溶胶)。测试了四种具有两种通气率和两种生物气溶胶产生率的处理。在ANSYS Fluent CFD模型中,使用标准的k-湍流模型和具有非稳态跟踪的离散相模型来模拟气流和生物气溶胶的运动,直到达到稳态。进行网格细化测试以选择用于模拟的最佳网格尺寸。CFD模拟显示与稳态下测量的生物气溶胶浓度非常一致,差异为2%至8%,归一化均方误差为0.01至0.19,分数偏差为0.02至0.08。由于测量位置有限,无法验证瞬态阶段的模拟和验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
0.30
自引率
0.00%
发文量
12
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