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首页> 外文期刊>Asia-Pacific journal of atmospheric sciences >Impact of Turbulent Mixing in the Stratocumulus-Topped Boundary Layer on Numerical Weather Prediction
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Impact of Turbulent Mixing in the Stratocumulus-Topped Boundary Layer on Numerical Weather Prediction

机译:层积顶边界层湍流混合对数值天气预报的影响

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摘要

The impact of enhanced turbulent mixing induced by radiative cooling at the top of the stratocumulus-topped boundary layer (STBL) on numerical weather prediction is examined. An additional term involving top-down turbulent mixing via in-cloud radiative cooling is applied to the Yonsei University (YSU) planetary boundary layer (PBL) parameterization scheme using a top-down diffusivity profile and cloud-top entrainment. The modified scheme is evaluated in an advection fog case over the Yellow Sea of Korea using the Weather Research and Forecasting (WRF) model and in global medium-range forecasts using the Global/Regional Integrated Model system (GRIMs). In the fog case simulation, consideration of the additional top-down mixing parameterization in the YSU PBL simulates less formation and more rapid dispersion of the fog. As a result, the modified scheme simulates a drier and warmer boundary layer and a moister and cooler layer above the PBL. The modified algorithm also improves surface temperature prediction over the Yellow Sea accompanying early dissipation of the fog. In the global medium-range forecast experiment, the modified scheme simulates overall enhanced PBL mixing over the STBL in the tropics and subtropical ocean, showing drier and warmer regions near the surface and moister and cooler regions above the PBL, resulting in prediction of reduced low level cloud amount and increased downward shortwave radiation at the surface. The modified scheme appears to improve systematic bias in temperature and humidity in the lower troposphere compared to the control simulation.
机译:研究了层积顶边界层(STBL)顶部辐射冷却引起的湍流混合增强对数值天气预报的影响。通过自上而下的扩散率分布和云顶夹带,将涉及通过云中辐射冷却进行自上而下的湍流混合的附加术语应用于延世大学(YSU)行星边界层(PBL)参数化方案。在韩国黄海的平流雾案中,使用天气研究和预报(WRF)模型对修改后的方案进行评估,并使用全球/区域综合模型系统(GRIMs)在全球中程天气预报中对修改后的方案进行评估。在雾情况模拟中,YSU PBL中附加的自上而下混合参数设置的考虑可模拟雾的形成较少和分散更快。结果,修改后的方案模拟了PBL上方的较干燥和较热的边界层以及较潮湿和较冷的层。改进的算法还改善了黄雾早期散发的黄海表面温度的预测。在全球中程预报实验中,修改后的方案模拟了热带和亚热带海洋中STBL整体上增强的PBL混合,显示出PBL上方地表附近较干燥和较暖的区域,以及PBL上方较湿和较凉的区域,从而预测了低气压的降低水平云量并增加了表面向下的短波辐射。与控制仿真相比,改进后的方案似乎可以改善对流层下部温度和湿度的系统偏差。

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