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首页> 外文期刊>Journal of Aerosol Science >Refinement and testing of the drift-flux model for indoor aerosol dispersion and deposition modelling
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Refinement and testing of the drift-flux model for indoor aerosol dispersion and deposition modelling

机译:细化和测试用于室内气溶胶扩散和沉积模型的漂移通量模型

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摘要

The drift-flux approach for predicting aerosol deposition within enclosed spaces has been refined and implemented within a commercial computational fluid dynamics (CFD) solver. The drift-flux model is tested against a previously reported study of aerosol deposition within a ventilated chamber to illustrate the performance of the approach for unsteady particle concentrations. The model has been made more general by accounting for deposition to surfaces at any angle to the gravitational vector. The algorithms for the calculation of the deposition velocity have been revised to offer improved precision. The model shows good performance when compared with the measured particle concentration decay rates. Comparison with well-mixed models shows obvious differences from the measured and drift-flux CFD approach. The dependence of point concentration measurements of decay rates on sampling time is explored and the limitations for estimating steady-state deposition behaviour are highlighted. An important aspect of aerosol ventilation of incompletely mixed enclosed spaces is illustrated. The drift-flux approach is shown to perform very well at reproducing the unsteady particle concentration decay observed.
机译:用于预测密闭空间内气溶胶沉积的漂移通量方法已在商业计算流体动力学(CFD)求解器中得到完善和实施。针对先前报道的对通风室内气溶胶沉积的研究,对漂移通量模型进行了测试,以说明该方法对不稳定颗粒浓度的性能。通过考虑与重力矢量成任何角度的表面沉积,使模型变得更通用。用于沉积速度计算的算法已被修改以提供更高的精度。与测得的颗粒浓度衰减率相比,该模型显示出良好的性能。与充分混合的模型进行比较显示,与实测和漂移通量CFD方法存在明显差异。探索了衰减速率的点浓度测量值对采样时间的依赖性,并突出了估计稳态沉积行为的局限性。说明了不完全混合的封闭空间的气雾通风的重要方面。漂移通量方法在再现观察到的不稳定颗粒浓度衰减方面表现出色。

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