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首页> 外文期刊>Journal of Turbulence >Sensitivity of CONUS Summer Rainfall to the Selection of Cumulus Parameterization Schemes in NU-WRF Seasonal Simulations
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Sensitivity of CONUS Summer Rainfall to the Selection of Cumulus Parameterization Schemes in NU-WRF Seasonal Simulations

机译:康斯夏季降雨对Nu-WRF季节性模拟中积云参数化方案的敏感性

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摘要

This study investigates the sensitivity of daily rainfall rates in regional seasonal simulations over the contiguous United States (CONUS) to different cumulus parameterization schemes. Daily rainfall fields were simulated at 24-km resolution using the NASA-Unified Weather Research and Forecasting (NU-WRF) Model for June-August 2000. Four cumulus parameterization schemes and two options for shallow cumulus components in a specific scheme were tested. The spread in the domain-mean rainfall rates across the parameterization schemes was generally consistent between the entire CONUS and most subregions. The selection of the shallow cumulus component in a specific scheme had more impact than that of the four cumulus parameterization schemes. Regional variability in the performance of each scheme was assessed by calculating optimally weighted ensembles that minimize full root-mean-square errors against reference datasets. The spatial pattern of the seasonally averaged rainfall was insensitive to the selection of cumulus parameterization over mountainous regions because of the topographical pattern constraint, so that the simulation errors were mostly attributed to the overall bias there. In contrast, the spatial patterns over the Great Plains regions as well as the temporal variation over most parts of the CONUS were relatively sensitive to cumulus parameterization selection. Overall, adopting a single simulation result was preferable to generating a better ensemble for the seasonally averaged daily rainfall simulation, as long as their overall biases had the same positive or negative sign. However, an ensemble of multiple simulation results was more effective in reducing errors in the case of also considering temporal variation.
机译:本研究调查了在不同的美国(Conus)上区域季节性模拟中的日常降雨率对不同的积云参数化方案的敏感性。每日降雨场在24公里的分辨率下,使用NASA统一的天气研究和预测(NU-WRF)模型为2000年6月至8月。测试了四种积云参数化方案和特定方案中的浅层模块的两个选项。参数化方案的域平均降雨率的传播通常在整个锥体和大多数子区域之间一致。在特定方案中选择浅层积分分量的影响比四个积云参数化方案的影响更多。通过计算最佳加权集合来评估每个方案性能的区域变异,从而最大限度地减少对参考数据集的完整根均方误差。由于地形图案约束,季节性平均降雨的空间模式对山区的积云参数化的选择不敏感,因此模拟错误主要归因于那里的整体偏见。相反,大平原区域上的空间图案以及在锥形大部分部分上的时间变化对积云参数化选择相对敏感。总的来说,采用单一仿真结果优选为季节性平均日降雨模拟产生更好的集合,只要它们的整体偏差具有相同的正或负符号即可。然而,在考虑时间变化的情况下,多种仿真结果的集合在减少误差方面更有效。

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