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Implementation of non-local boundary layer schemes in the Regional Atmospheric Modeling System and its impact on simulated mesoscale circulations

机译:区域大气模拟系统中非局部边界层方案的实施及其对模拟中尺度环流的影响

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摘要

This paper proposes the implementation of different non-local Planetary Boundary Layer schemes within the Regional Atmospheric Modeling System (RAMS) model. The two selected PBL parameterizations are the Medium-Range Forecast (MRF) PBL and its updated version, known as the Yonsei University (YSU) PBL. YSU is a first-order scheme that uses non-local eddy diffusivity coefficients to compute turbulent fluxes. It is based on the MRF, and improves it with an explicit treatment of the entrainment. With the aim of evaluating the RAMS results for these PBL parameterizations, a series of numerical simulations have been performed and contrasted with the results obtained using the Mellor and Yamada (MY) scheme, also widely used, and the standard PBL scheme in the RAMS model. The numerical study carried out here is focused on mesoscale circulation events during the summer, as these meteorological situations dominate this season of the year in the Western Mediterranean coast. In addition, the sensitivity of these PBL parameterizations to the initial soil moisture content is also evaluated. The results show a warmer and moister PBL for the YSU scheme compared to both MRF and MY. The model presents as well a tendency to overestimate the observed temperature and to underestimate the observed humidity, considering all PBL schemes and a low initial soil moisture content. In addition, the bias between the model and the observations is significantly reduced moistening the initial soil moisture of the corresponding run. Thus, varying this parameter has a positive effect and improves the simulated results in relation to the observations. However, there is still a significant overestimation of the wind speed over flatter terrain, independently of the PBL scheme and the initial soil moisture used, even though a different degree of accuracy is reproduced by RAMS taking into account the different sensitivity tests.
机译:本文提出了在区域大气建模系统(RAMS)模型中实施不同的非局部行星边界层方案的方案。选择的两个PBL参数化是中程预报(MRF)PBL及其更新版本,称为延世大学(YSU)PBL。 YSU是一种使用非局部涡流扩散系数来计算湍流的一阶方案。它基于MRF,并通过对夹带的显式处理加以改进。为了评估这些PBL参数化的RAMS结果,已进行了一系列数值模拟,并与使用同样广泛使用的Mellor和Yamada(MY)方案以及RAMS模型中的标准PBL方案所获得的结果进行了对比。 。此处进行的数值研究重点是夏季的中尺度环流事件,因为这些气象情况在西地中海沿岸的一年中的这个季节都占主导地位。此外,还评估了这些PBL参数化对初始土壤水分含量的敏感性。结果显示,与MRF和MY相比,YSU方案的PBL温暖且潮湿。考虑到所有PBL方案和较低的初始土壤水分含量,该模型还存在高估观测温度和低估观测湿度的趋势。此外,模型和观测值之间的偏差显着降低,从而使相应运行的初始土壤湿度变湿。因此,改变该参数具有积极的作用,并且相对于观察结果改善了模拟结果。然而,尽管考虑到不同的灵敏度测试,RAMS再现的精度不同,但仍要对平坦地形上的风速进行高估,而与PBL方案和所使用的初始土壤湿度无关。

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