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A Cloud Top Radiative Cooling Model Coupled With CLUBB in the Community Atmosphere Model: Description and Simulation of Low Clouds

机译:在社区大气模型中结合CLUBB的云顶辐射冷却模型:低云的描述和模拟

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In this study, a higher‐order closure scheme known as Cloud Layers Unified By Binormals (CLUBB) is coupled with a cloud top radiative cooling scheme (RAD). The cloud top radiative cooling scheme treats the buoyancy flux generated near the top of the boundary layer which helps the CLUBB scheme to better represent the radiation‐turbulence interaction on the condition of coarse vertical resolution. CLUBB with RAD is found to improve subtropical low‐cloud simulations, and the improvement is particularly evident for nocturnal stratocumulus. The improvements are caused by the stronger and more symmetric vertical turbulent mixing in the boundary layer, as CLUBB with RAD increases the variance of vertical velocity and vertical turbulent transports and reduces the skewness of vertical velocity by enhancing the radiative cooling effects and buoyancy fluxes at the cloud layer. The pumping effect related to the stronger vertical turbulent transports further cools and dries the lower boundary layer, which increases the local surface heating fluxes and further improves the low‐cloud simulations.
机译:在这项研究中,一种称为“双态统一云层”(CLUBB)的高阶封闭方案与云顶辐射冷却方案(RAD)相结合。云顶辐射冷却方案处理边界层顶部附近产生的浮力通量,这有助于CLUBB方案在粗糙的垂直分辨率条件下更好地表示辐射-湍流相互作用。发现带有RAD的CLUBB可以改善亚热带低云模拟,对于夜间平流积云,这种改善尤为明显。改进是由于边界层中更强,更对称的垂直湍流混合引起的,因为CLUBB和RAD通过增强辐射冷却效果和浮力通量来增加垂直速度和垂直湍流传输的方差并降低垂直速度的偏度。云层。与更强的垂直湍流传输有关的泵吸作用进一步冷却并干燥了下边界层,这增加了局部表面热通量,并进一步改善了低云模拟。

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