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Maple在气溶胶云下清除数值模拟中的应用; Application of Maple to numerical simulation of below-cloud scavenging of aerosols
方志华 ; 刘兆荣 ; 白郁华 ; 李金龙
刊名计算机与应用化学
2009
关键词Maple Maple aerosol below-cloud scavenging collision efficiency 气溶胶 云下清除 捕获系数
DOI10.3969/j.issn.1001-4160.2009.06.020
英文摘要云下清除是大气气溶胶粒子一个重要的清除机制,清除效果与粒径大小及雨强等气象条件密切相关,一般采用质量平均清除系数和雨强的参数化关系来定量描述.本文采用数值计算方法模拟气溶胶粒子的云下清除过程,综合考虑布朗扩散、拦截作用和惯性碰撞等机制的贡献,结合不同模态气溶胶粒子的化学成分,在Maple平台上,通过对M-P雨滴谱、雨滴终速经验公式、气溶胶粒子对数正态分布谱、雨滴对气溶胶粒子捕获系数等,基于雨滴或气溶胶粒径的多个函数进行统一符号处理和数值计算,得到CaCO3、(NH4):SO4两种典型的大气气溶胶粒子质量平均清除系数和雨强的参数化关系:CaCO3粒子为 (h-1)=0.83·P00.74,(NH4)2SO4粒子为 (h-1)=1.8×10-3·P00.64.分析r降雨过程中大气气溶胶质量浓度和雨水中Ca2+,NH4+,SO42-离子浓度的变化趋势.; Below-cloud scavenging is an important deposition mechanism for airborne aerosol particles. The scavenging coefficient de-pends on the aerosol size and meteorological conditions, Especially the precipitation rate significantly. The traditional bulk parameter-ization represents the mean wet scavenging coefficient for the whole aerosol size range. This parameterization overestimates the scaven-ging of aerosol mass and ion concentration of rainwater during a heavy or medium precipitation. In this study, the scavenging of aerosol particles in the below-cloud scavenging process was simulated, considering the contribution of collection mechanisms due to Brownian diffusion, directional interception and inertial impaction and the chemical composition of different mode aerosols. With the application of Maple software, multi functions based on either rain drop diameter or aerosol diameter were mathematically simulated and symbol processed. Those included the Marshall-Palmer raindrop size distribution, the raindrop terminal velocity, the log-normal size distribu-tion of aerosols of selected chemical composition and the collision efficiency between a single rain droplet and particles. The reLation-ship between the weighted mean scavenging coefficients of typical coarse and fine aerosol particles and the rainfall intensity were param-eterized. The new parameterization for CaCO3 and (NH4)2SO4 were determined as (h-1) =0. 83 · P00.74 and (h-1) = 1.8 × 10 -3 · P00.64 respectively. The predicted aerosols mass concentration in the air and the concentration variation trend of Ca2+ , NH4+ and SO42- in the rainwater were analyzed based on the above simulation.; 国家高技术研究发展计划(863计划); 国家重点基础研究发展规划(973计划); 中文核心期刊要目总览(PKU); 中国科技核心期刊(ISTIC); 中国科学引文数据库(CSCD); 0; 6; 783-788; 26
语种中文
内容类型期刊论文
源URL[http://ir.pku.edu.cn/handle/20.500.11897/4245]  
专题环境科学与工程学院
推荐引用方式
GB/T 7714
方志华,刘兆荣,白郁华,等. Maple在气溶胶云下清除数值模拟中的应用, Application of Maple to numerical simulation of below-cloud scavenging of aerosols[J]. 计算机与应用化学,2009.
APA 方志华,刘兆荣,白郁华,&李金龙.(2009).Maple在气溶胶云下清除数值模拟中的应用.计算机与应用化学.
MLA 方志华,et al."Maple在气溶胶云下清除数值模拟中的应用".计算机与应用化学 (2009).
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