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Sensitivity of the MM5 mesoscale model to physical parameterizations for regional climate studies: Annual cycle

机译:MM5中尺度模型对区域气候研究物理参数化的敏感性:年周期

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摘要

We present an analysis of the sensitivity to different physical parameterizations of a high-resolution simulation of the MM5 mesoscale model over the Iberian Peninsula. Several (16) 5-year runs of the MM5 model with varying parameterizations of microphysics, cumulus, planetary boundary layer and longwave radiation have been carried out. The results have been extensively compared with observational precipitation and surface temperature data. The parameterization uncertainty has also been compared with that related to the boundary conditions and the varying observational data sets. The annual cycles of precipitation and surface temperature are well reproduced. The summer season presents the largest deviations, with a 5 K cold bias in the southeast and noticeable precipitation errors over mountain areas. The cold bias seems to be related to the surface, probably because of the excessive moisture availability of the five-layer soil scheme used. No parameterization combination was found to perform best in simulating both precipitation and surface temperature in every season and subregion. The Kain-Fritsch cumulus scheme was found to produce unrealistically high summer precipitation. The longwave radiation parameterizations tested were found to have little impact on our target variables. Other factors, such as the choice of boundary conditions, have an impact on the results as large as the selection of parameterizations. The range of variability in the MM5 physics ensemble is of the same order of magnitude as the observational uncertainty, except in summer, when it is larger and probably related to the inaccuracy of the model to reproduce the summer precipitation over the area.
机译:我们目前对伊比利亚半岛MM5中尺度模型的高分辨率模拟的不同物理参数化的敏感性进行了分析。 MM5模型已经进行了数(16)个5年的运行,具有微观物理学,积云,行星边界层和长波辐射的不同参数化。该结果已与观测降水和地表温度数据进行了广泛比较。还已经将参数化不确定性与与边界条件和变化的观测数据集相关的不确定性进行了比较。降水和地表温度的年循环很好地再现了。夏季表现出最大的偏差,东南偏冷5 K,山区降水明显。冷偏差似乎与表面有关,可能是由于所用的五层土壤方案水分供应过多。在每个季节和每个子区域中,都没有参数化组合在模拟降水和地表温度方面表现最佳。发现Kain-Fritsch积云方案产生了不切实际的夏季高降水量。发现测试的长波辐射参数化对我们的目标变量影响很小。边界条件的选择等其他因素对结果的影响与参数化的选择一样大。 MM5物理系综的变异性范围与观测不确定性在数量级上,除了夏季,当它较大时,可能与该模型无法再现该地区的夏季降水有关。

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