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Changes in large particle size distribution due to dry deposition processes

机译:干法沉积过程导致大粒径分布的变化

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A dry deposition model is described that can simulate variations in the size-resolved mass size distribution of large(> 1 mu m diameter)atmospheric particles due to dry deposition processes.The model is unique because it is based on both gravitational and inertial effects in turbulent flow and includes deposition and suspension velocities for large,airborne particles.The model allows the integration of a large number of variables,covering a wide range of conditions(height of particle injection,meteorological conditions,and removal time).Changes in the size distributions that result from model simulations of deposition show the expected decrease in concentration with size since the deposition is greater for the larger particles.However,the size distribution does not decrease with size in a uniform manner as would be suggested by Stokes settling velocity due to the effect of inertial forces acting on the particles.Application of the model reveals a number of patterns,including the development of two peaks in the large particle mass size distribution,a persistent peak in the 1-10 mu m size range,and a second peak in the 10-40 urn range that is strongly affected by meteorological conditions.
机译:描述了一种干沉降模型,该模型可以模拟由于干沉降过程导致的大直径(> 1μm)大气颗粒的尺寸分辨质量尺寸分布的变化,该模型的独特之处在于它基于重力和惯性效应湍流,包括大的空中颗粒的沉积和悬浮速度。该模型允许整合大量变量,涵盖各种条件(颗粒注入的高度,气象条件和去除时间)。尺寸变化沉积物模型模拟得出的分布表明,随着较大颗粒的沉积,其浓度随尺寸的减小而减小。但是,斯托克斯沉降速度表明,粒径分布并不会以均匀的方式随尺寸减小。惯性力作用于粒子上的影响。模型的应用揭示了许多模式,包括开发模式在大颗粒质量分布中出现两个峰值,一个在1-10微米范围内的持续峰值,另一个在10-40微米范围内的峰值,受到气象条件的强烈影响。

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