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首页> 外文期刊>Advances in Meteorology >The Performance of a Scale-Aware Nonlocal PBL Scheme for the Subkilometer Simulation of a Deep CBL over the Taklimakan Desert
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The Performance of a Scale-Aware Nonlocal PBL Scheme for the Subkilometer Simulation of a Deep CBL over the Taklimakan Desert

机译:塔克拉玛干沙漠深层CBL亚公里模拟的尺度感知非局部PBL方案的性能

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Although realistic representation of the convective boundary layer (CBL) in the desert region in Northwest China is important for weather forecasts and climate simulations, evaluations of the performance of various planetary boundary layer (PBL) schemes in simulating the CBL in the region are rare. In this study, the performance of a scale-aware PBL scheme newly implemented into the Weather Research and Forecasting (WRF) model in simulating the CBL in the Taklimakan desert is evaluated based on a comparison with both the WRF-LES simulations and observations, with the focus on scale dependencies of the simulations compared to the conventional PBL scheme. A series of simulations are performed with a scale-aware PBL scheme (Shin-Hong) and the conventional PBL scheme (YSU) for a deep CBL observed at Tazhong station in the central Taklimakan on 1 July 2016. The CBL was over 5000 m deep with wider and deeper rolls than in a shallow boundary layer. The results showed that the vertical structure simulated with the Shin-Hong scheme was closer to that in both the WRF-LES (large-eddy-simulation) and observations than that simulated with the YSU. The simulation with the scale-aware scheme reproduced cellular rolls similar to those in the WRF-LES, while the conventional PBL scheme struggled to trigger intense convective cells rather than cellular rolls. The results strongly suggest that the scale-aware nonlocal PBL scheme can be used to adequately reproduce the scale and evolution of the observed rolls in the deep CBL in Taklimakan desert at subkilometer resolutions.
机译:尽管对中国西北沙漠地区的对流边界层(CBL)的真实表示对于天气预报和气候模拟很重要,但很少有评估各种行星边界层(PBL)方案模拟该地区CBL性能的性能。在这项研究中,基于与WRF-LES模拟和观测值的比较,评估了在塔克拉玛干沙漠中模拟CBL的天气研究和预报(WRF)模型中新实施的规模感知PBL方案的性能。与传统的PBL方案相比,重点在于仿真的比例依赖性。 2016年7月1日,在塔克拉玛干中部塔中站观测到的深部CBL用规模感知PBL方案(Shin-Hong)和常规PBL方案(YSU)进行了一系列模拟。CBL深度超过5000BLm与较浅的边界层相比,具有更宽更深的轧辊。结果表明,用Shin-Hong方案模拟的垂直结构比使用YSU模拟的更接近于WRF-LES(大涡模拟)和观测值。使用规模感知方案进行的模拟再现了类似于WRF-LES中的细胞滚动,而传统的PBL方案努力触发强烈的对流细胞而不是细胞滚动。结果强烈表明,可将尺度感知的非本地PBL方案用于以亚千米分辨率充分再现塔克拉玛干沙漠深部CBL中观测到的皮辊的尺度和演化。

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