Interactions of Aerosol Optical Depth and Cloud Parameters with Rainfall and the Validation of Satellite Based Rainfall Observations

Monirul Islam, M. Mamun, Z. Islam, M. Keramat
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引用次数: 3

Abstract

Aerosol-cloud interactions influence the global precipitation patterns that influence significantly the Earth's climate system. Anthropogenic aerosols alter the clouds and their optical properties. The present study has investigated the Aerosol Optical Depth (AOD), cloud parameters and rainfall interactions for three different monsoon periods (2008-2010) and also compared the satellite rainfall with ground based observations, by using MODIS and TRMM datasets. The highest average of AOD was in the month of June and lowest was in July for both Rajshahi and Sylhet divisions. Comparing between Rajshahi and Sylhet, Rajshahi was in the peak of aerosol contamination than Sylhet. The cloud parameters, such as COD and CER, were positively correlated with rainfall except CER in Rajshahi during the 2010 monsoon season and in Sylhet during the 2008 monsoon season. The investigation has showed complex interaction among AOD, cloud parameters and rainfall in both regions during the study period. In addition TRMM satellite-derived rainfall has compared with ground-measured values. The result indicated that TRMM rainfall data were in good agreement with ground measurements with correlation coefficient of above 0.90 in Rajshahi.
气溶胶光学深度和云参数与降雨的相互作用及卫星降雨观测的验证
气溶胶与云的相互作用影响着对地球气候系统有重大影响的全球降水模式。人为气溶胶改变了云及其光学特性。本研究利用MODIS和TRMM数据集,研究了三个不同季风期(2008-2010)的气溶胶光学深度(AOD)、云参数和降雨相互作用,并将卫星降雨与地面观测进行了比较。拉杰沙希省和锡尔赫特省的平均AOD最高在6月,最低在7月。Rajshahi和Sylhet相比,Rajshahi比Sylhet处于气溶胶污染的高峰期。除2010年Rajshahi地区和2008年Sylhet地区的COD和CER外,其他云参数均与降水呈正相关。调查表明,在研究期间,两个地区的AOD、云参数和降雨量之间存在复杂的相互作用。此外,还将TRMM卫星导出的降雨量与地面测量值进行了比较。结果表明,Rajshahi地区TRMM降水资料与地面观测资料吻合较好,相关系数均在0.90以上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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