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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >An observational study of the relationship between cloud, aerosol and meteorology in broken low-level cloud conditions
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An observational study of the relationship between cloud, aerosol and meteorology in broken low-level cloud conditions

机译:一项观察性研究之间的关系云、气溶胶和气象学打破低层云条件

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摘要

Global satellite analyses showing strong correlations between aerosol optical depth and cloud cover have stirred much debate recently. While it is tempting to interpret the results as evidence of aerosol enhancement of cloud cover, other factors such as the influence of meteorology on both the aerosol and cloud distributions can also play a role, as both aerosols and clouds depend upon local meteorology. This study uses satellite observations to examine aerosol-cloud relationships for broken low-level cloud regions off the coast of Africa. The analysis approach minimizes the influence of large-scale meteorology by restricting the spatial and temporal domains in which the aerosol and cloud properties are compared. While distributions of several meteorological variables within 5° × 5° latitude-longitude regions are nearly identical under low and high aerosol optical depth, the corresponding distributions of single-layer low cloud properties and top-of-atmosphere radiative fluxes differ markedly, consistent with earlier studies showing increased cloud cover with aerosol optical depth. Furthermore, fine-mode fraction and Angstrom Exponent are also larger in conditions of higher aerosol optical depth, even though no evidence of systematic latitudinal or longitudinal gradients between the low and high aerosol optical depth populations are observed. When the analysis is repeated for all 5° × 5° latitude-longitude regions over the global oceans (after removing cases in which significant meteorological differences are found between the low and high aerosol populations), results are qualitatively similar to those off the coast of Africa.
机译:全球卫星分析显示强劲气溶胶的光学深度和之间的相关性云层最近引起了很多争论。虽然它很容易解释的结果气溶胶云层的增强的证据,等其他因素的影响气象学气溶胶和云分布也可以扮演一个角色,因为这两个气溶胶和云取决于当地气象学。观察研究气溶胶云破碎的低级云地区的关系非洲海岸。最大限度地减少大规模的影响空间和气象学通过限制时间域的气溶胶和云性能进行了比较。一些气象变量在5°×5°经度地区几乎是相同的在低和高气溶胶光学深度下,相应的单层分布低云属性和top-of-atmosphere辐射通量明显不同,与之前一致研究表明增加云层气溶胶光学深度。分数和埃指数也更大更高的气溶胶光学厚度的条件下,甚至尽管没有证据表明系统的纬度和纵向梯度之间的低和高气溶胶光学深度的人群。当分析重复所有5°×5°经度地区对全球海洋(在删除情况下,意义重大气象之间的差异被发现低和高气溶胶数量),结果海岸的定性类似非洲。

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