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Differing regional responses to a perturbation in solar cloud absorption in the SKYHI general circulation model

机译:不同区域的扰动的反应太阳能云吸收SKYHI将军循环模型

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In this study we perform an idealized experiment to investigate the effect of solar absorption in clouds on climate using a general circulation model with prescribed sea surface temperatures, focusing on the manner of regional changes during the northern summer season. The response arising from this type of perturbation is akin to “semidirect” effects of absorbing aerosols, namely, dissipation of clouds owing to a high aerosol absorption in the cloud layers. In the experiment, we apply a similar perturbation to all low-cloud layers, reducing their single-scattering albedo to a value of 0.99, which enables us to isolate the effect of such solar absorption from other aerosol related influences. We find that in both midlatitude and equatorial regions, the reduction in low-cloud single-scattering albedo causes a reduction in low-cloud amount and a warming of the surface. However, the dynamical response of the system varies from one continental region to another. In the midlatitude regions of the United States and Europe/east Asia, the diabatic heating perturbation leads to the dissipation of low clouds, an increase in shortwave flux to the surface, an increase in horizontal heat advection, and an increase in atmospheric stability. In the tropical region of North Africa, the diabatic heating perturbation translates into an increase in convection, a decrease in stability, an increase in middle- and high-level clouds, and a reduction in shortwave flux to the surface. In agreement with previous studies, these results demonstrate the distinctive response of the tropical versus midlatitude regions to a similar solar perturbation.
机译:在这项研究中我们执行一个理想化的实验研究太阳能吸收的影响云在气候环流模型与规定的海洋表面温度,关注区域变化的方式北方夏季。从这种类型的扰动是类似的“半直接吸收气溶胶的影响,即耗散云由于高在云中气溶胶吸收层。实验中,我们应用类似的扰动所有低云层层,减少了他们单散射反照率值为0.99,这使我们孤立的影响太阳能吸收来自其他相关的气溶胶的影响。赤道地区,减少低云层单散射反照率降低的原因低矮的云层数量和表面的变暖。然而,系统的动态响应变化从一个区域到另一个大陆。美国和中间纬度地区欧洲和东亚,非绝热加热扰动导致的损耗低云,在短波通量增加表面上看,水平的增加热量平流,大气的增加稳定。非洲、非绝热加热微扰转化为对流,增加稳定下降,中产阶级和增加高层次的云,短波的减少通量。研究,这些结果证明独特的热带和响应中间纬度地区类似的太阳能微扰。

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