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首页> 外文期刊>Geophysical Research Letters >Impact of aerosols and atmospheric thermodynamics on cloud properties within the climate system - art. no. L06109
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Impact of aerosols and atmospheric thermodynamics on cloud properties within the climate system - art. no. L06109

机译:气溶胶和大气热力学对气候系统内云特性的影响-艺术。没有。 L06109

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1] A combination of cloud-top and columnar droplet sizes derived from the multi Tropical Rainfall Measurement Mission (TRMM) sensors reveals the sensitivity of the aerosols effect on cloud-precipitation processes due to environmental vertical thermodynamic structure. First, the magnitude of aerosol indirect effect could be larger with the analysis of columnar droplet sizes than that derived from the cloud-top droplet sizes since column-droplet size can account for the broader droplet spectra in the cloud layers. Second, a combination of cloud-top and columnar droplet sizes reveals that the warm rain process is prevented regardless of the aerosols concentration under high static stability such as when a strong temperature inversion exists, while a high aerosol concentration suppresses the warm rain formulation under low static stability. [References: 15
机译:1]来自多个热带降雨测量任务(TRMM)传感器的云顶和柱状液滴尺寸的组合揭示了由于环境垂直热力学结构,气溶胶效应对云降水过程的敏感性。首先,通过分析柱状液滴尺寸,气溶胶间接效应的强度可能大于从云顶液滴尺寸得出的值,因为柱状液滴尺寸可以解释云层中较宽的液滴光谱。其次,云顶和柱状液滴尺寸的组合表明,无论在高静态稳定性下(例如存在强烈的温度反转时),无论气溶胶浓度如何,都可以防止暖雨过程,而高气溶胶浓度则在较低温度下抑制暖雨配方静态稳定性。 [参考:15

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