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Below-cloud rain scavenging of atmospheric aerosols for aerosol deposition models

机译:用于气溶胶沉积模型的大气气溶胶的云层以下降雨清除

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Below-cloud aerosol scavenging is generally estimated from field measurements using advanced instruments that measure changes in aerosol distributions with respect to rainfall. In this study, we discuss various scavenging mechanisms and scavenging coefficients from past laboratory and field measurements. Scavenging coefficients derived from field measurements (representing natural aerosols scavenging) are two orders higher than that of theoretical ones for smaller particles (D_p<2 μm). Measured size-resolved scavenging coefficients can be served as a better option to the default scavenging coefficient (e.g. a constant of 10~(-4) s~(-1) for all size of aerosols, as used in the CALPUFF model) for representing below-cloud aerosol scavenging. We propose scavenging correction parameter (C_r) as an exponential function of size-resolved scavenging coefficients, winds and width in the downwind of the source-receptor system. For a wind speed of 3 m s~(-1), C_R decrease with the width in the downwind for particles of diameters D_p<0.1 urn but C_R does not vary much for particles in the accumulation mode (0.1
机译:通常使用先进的仪器通过野外测量来估算低于云层的气溶胶清除量,这些先进的仪器可测量气溶胶分布相对于降雨的变化。在这项研究中,我们讨论了过去实验室和现场测量中的各种清除机理和清除系数。对于较小的颗粒(D_p <2μm),从现场测量得出的清除系数(代表天然气溶胶清除)比理论值高两个数量级。可以将测得的尺寸分辨清除系数作为默认清除系数的更好选择(例如,对于所有尺寸的气溶胶,常数为10〜(-4)s〜(-1),如CALPUFF模型中所使用)低于云层的气溶胶清除。我们提出清除校正参数(C_r)作为源-接收器系统顺风方向的尺寸分辨清除系数,风向和宽度的指数函数。对于3 m s〜(-1)的风速,对于直径为D_p <0.1 urn的粒子,C_R随顺风宽度的减小而减小,但在累积模式下(0.1

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