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Evaluation of Three Planetary Boundary Layer Schemes in the WRF Model

机译:WRF模型中三个行星边界层方案的评估

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摘要

Accurate depiction of meteorological conditions, especially within the planetary boundary layer (PBL), is important for air pollution modeling, and PBL parameterization schemes play a critical role in simulating the boundary layer. This study examinesthe sensitivity of the performance of the Weather Research and Forecast (WRF) model to the use of three different PBL schemes [Mellor-Yamada-Janjic (MYJ), Yonsei University (YSU), and the asymmetric convective model, version 2 (ACM2)]. Comparison of surface and boundary layer observations with 92 sets of daily, 36-h high-resolution WRF simulations with different schemes over Texas in July-September 2005 shows that the simulations with the YSU and ACM2 schemes give much less bias than with the MYJ scheme. Simulations with the MYJ scheme, the only local closure scheme of the three, produced the coldest and moistest biases in the PBL. The differences among the schemes are found to be due predominantly to differences in vertical mixing strength and entrainment of air from above the PBL. A sensitivity experiment with the ACM2 scheme confirms this diagnosis.
机译:准确描述气象条件,尤其是在行星边界层(PBL)内,对于空气污染建模很重要,PBL参数化方案在模拟边界层中起着至关重要的作用。这项研究研究了天气研究和预报(WRF)模型的性能对使用三种不同的PBL方案[延世大学(YSU)的Melor-Yamada-Janjic(MYJ)和非对称对流模型,版本2( ACM2)]。 2005年7月至9月在德克萨斯州使用不同方案对92个每日进行的36小时高分辨率WRF模拟与表面和边界层观测值的比较表明,使用YSU和ACM2方案进行的模拟比使用MYJ方案所产生的偏差要小得多。 MYJ方案(这是三个方案中唯一的局部闭合方案)的模拟在PBL中产生了最冷和最潮湿的偏差。发现方案之间的差异主要是由于垂直混合强度的差异以及来自PBL上方的空气夹带的差异。 ACM2方案的敏感性实验证实了这一诊断。

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