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Modeling indoor coarse particle deposition onto smooth and rough vertical surfaces

机译:模拟室内粗糙颗粒在光滑和粗糙的垂直表面上的沉积

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Accurate modeling of indoor aerosol deposition is an important step for exposure assessment. Indoor particles normally have a very small diffusion coefficient; hence, a surface that behaves as though it were smooth for heat or momentum transfer might be considered as "rough" for deposition. However, particle deposition from an indoor environment is frequently modeled by assuming that indoor surfaces are smooth. Many indoor surfaces have random roughness protrusion scales up to several millimeters, which may significantly affect the deposition loss rate. A new semi-empirical model derived from an electrical analogy was developed and Brownian and turbulent diffusion, gravitational settling onto roughness elements and inertial transport deposition mechanism were taken into account. The model was used to predict deposition onto one smooth and four sandpapers with different roughness scales. The inertia-incorporated model prediction matches well with the experimental results onto the smooth glass surface for coarse particles from 0.9 to 9 mu m. Predictions for deposition onto sandpapers are less satisfactory and plausible mechanisms considered are further discussed. (c) 2005 Elsevier Ltd. All rights reserved.
机译:室内气溶胶沉积的精确模型是暴露评估的重要步骤。室内颗粒通常具有非常小的扩散系数。因此,对于热或动量传递而言,表现得光滑的表面可能被认为是“粗糙”的沉积。但是,通常通过假设室内表面光滑来模拟来自室内环境的颗粒沉积。许多室内表面的随机粗糙度突起比例可达几毫米,这可能会严重影响沉积损失率。建立了一个新的基于电模拟的半经验模型,并考虑了布朗和湍流扩散,重力沉降到粗糙单元上以及惯性迁移沉积机理。该模型用于预测在粗糙度不同的一张平滑砂纸和四张砂纸上的沉积。结合了惯性的模型预测与光滑表面上0.9到9微米的粗颗粒的实验结果非常吻合。沉积在砂纸上的预测不太令人满意,对可能的机理进行了进一步讨论。 (c)2005 Elsevier Ltd.保留所有权利。

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