A study of some cloud microphysical parameters over Iraq using satellite data

Murtadha A. Fadhil, kais J. Al-Jumaily
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引用次数: 1

Abstract

Studying clouds is a top priority among many atmospheric scientists because clouds are one of the greatest unknown factors in predicting changes in the Earth’s climate. Clouds play an important role in maintaining the energy balance because they can reflect, absorb, and radiate energy. The aim of this research is to investigate the properties of clouds over Iraq using data acquired by the Moderate Resolution Imaging Spectroradiometer (MODIS)on board Aqua Satellite for water and ice clouds. The results showed that daily mean cloud top pressure patterns during spring months are higher than other months and cloud top temperature patterns reached their highest values during summer months. The results also indicated that the ice cloud effective particle radius is relatively large during summer while cloud optical thickness assume its largest values in winter months. It was found that the highest values of precipitation rate over Iraq occurred during March to mid-April. Correlation aanalysis between optical thickness and liquid water path over Iraq that these two parameters are positively correlated and the correlation for water cloud was better that that for ice clouds. Case studies of heavy precipitation events over Iraq showed that the maximum values of the most cloud properties variables were located ahead of the storm center. 
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利用卫星资料对伊拉克上空一些云微物理参数的研究
研究云是许多大气科学家的首要任务,因为云是预测地球气候变化的最大未知因素之一。云在维持能量平衡方面起着重要的作用,因为它们可以反射、吸收和辐射能量。这项研究的目的是利用Aqua卫星上的中分辨率成像光谱仪(MODIS)获得的水和冰云数据,调查伊拉克上空云的性质。结果表明:春季月平均云顶压型高于其他月份,夏季月平均云顶温度型最高;冰云有效粒子半径在夏季较大,云光学厚度在冬季最大。结果表明,伊拉克降水率的最大值出现在3月至4月中旬。光学厚度与伊拉克上空液态水路径的相关分析表明,这两个参数呈正相关,且水云的相关性好于冰云。
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