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首页> 外文期刊>Journal of hydrometeorology >A Numerical Sensitivity Analysis of Soil Moisture Feedback on Convective Precipitation
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A Numerical Sensitivity Analysis of Soil Moisture Feedback on Convective Precipitation

机译:对流沉淀土壤湿度反馈的数值敏感性分析

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摘要

Of the boundary conditions that affect the simulation of convective precipitation, soil moisture is one of the most important. In this study, we explore the impact of the soil moisture on convective precipitation, and factors affecting it, through an extensive numerical experiment based on four convective precipitation events that caused moderate to severe flooding in the Gard region of southern France. High-spatial-resolution (1 km) weather simulations were performed using the integrated atmospheric model Regional Atmospheric Modeling System/Integrated Community Limited Area Modeling System (RAMS/ICLAMS). The experimental framework included comparative analysis of five simulation scenarios for each event, in which we varied the magnitude and spatial distribution of the initial volumetric water content using realistic soil moisture fields with different spatial resolution. We used precipitation and surface soil moisture from radar and satellite sensors as references for the comparison of the sensitivity tests. Our results elucidate the complexity of the relationship between soil moisture and convective precipitation, showing that the control of soil water content on partitioning land surface heat fluxes has significant impacts on convective precipitation. Additionally, it is shown how different soil moisture conditions affect the modeled microphysical structure of the clouds, which translates into further changes in the magnitude and distribution of precipitation.
机译:影响对流沉淀模拟的边界条件,土壤水分是最重要的一种。在这项研究中,通过基于四个对流降水事件的广泛数值实验,探讨了土壤水分对对流降沉淀的影响,以及影响它的因素。使用集成的大气模型区域大气建模系统/集成社区有限区域建模系统(RAMS / ICLMS)进行高空间分辨率(1 km)天气模拟。实验框架包括对每个事件的五种模拟情景的比较分析,其中我们使用具有不同空间分辨率的现实土壤水分田来改变初始体积含水量的幅度和空间分布。我们使用雷达和卫星传感器的沉淀和表面土壤水分作为对敏感性测试的比较的参考。我们的研究结果阐明了土壤水分和对流降沉淀之间的关系的复杂性,表明分区土地水含量的控制对对流沉淀有显着影响。另外,示出了不同的土壤湿度条件如何影响云的模型微神经结构,这转化为沉淀的幅度和分布的进一步变化。

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