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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Impact of Lateral TerrestrialWater Flow on Land-Atmosphere Interactions in the Heihe River Basin in China: Fully Coupled Modeling and Precipitation Recycling Analysis
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Impact of Lateral TerrestrialWater Flow on Land-Atmosphere Interactions in the Heihe River Basin in China: Fully Coupled Modeling and Precipitation Recycling Analysis

机译:中国黑河流域土地气流互动的影响:全面耦合建模与降水回收分析

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摘要

Lateral terrestrial water flow is usually not considered in regional climate modeling. This study focuses on the impact of increased hydrological model complexity for the description of the land-atmosphere interactions in a complex terrain region. For this purpose, we apply theWeather Research and Forecasting (WRF) model with its hydrological modeling extension package WRF-Hydro for the case of the Heihe River Basin in convection permitting atmospheric resolution (3 km). The Heihe River Basin (143,200 km2) is an arid-semiarid inland river basin in Northwestern China. By comparing model simulations results with and without coupling for the period 2008-2010, the effect of lateral terrestrial water flow on land-atmosphere interactions is evaluated with a joint atmospheric-terrestrial water budget analysis, a regional precipitation recycling analysis and a fully three-dimensional atmospheric moisture tracing method (evaporation tagging). The coupled modeling system WRF-Hydro simulates near-surface temperature and precipitation variability similar to the WRF model and demonstrates, in addition, its ability to reproduce daily streamflow. In the fully coupled mode, as a consequence of lateral terrestrial water flow description, the redistribution of infiltration excess in the mountainous area produces higher soil moisture content in the root zone, increases the terrestrial water storage and evapotranspiration, and decreases the total runoff. The resulting wetting and cooling in the near surface affects the regional climate by changing the regional water vapor transports and water vapor content, while, in turn, inducing precipitation differences. Overall, the fully coupled modeling increases the recycling rate, indicating that lateral terrestrial water flow influences regional climate in our study area.
机译:横向地面水流通常不是在区域气候模拟考虑。本研究着重于提高水文模型的复杂性,为陆 - 气相互作用的复杂地形区域的说明的影响。为此,我们应用theWeather研究其水文模型扩展包WRF-水电黑河流域的对流允许大气分辨率(3公里)的情况下预测(WRF)模型。黑河流域(143200平方公里)是中国西北干旱,半干旱内陆河流域。通过模型模拟的结果具有和不具有2008-2010年期间耦合的比较,在陆地上气相互作用侧向地面水流的效果与一个关节大气陆地水预算分析,区域沉淀回收分析和完全三评价维大气水分追踪方法(蒸发标记)。耦合建模系统WRF-水电会模拟类似于WRF模式和近表面温度和降水变演示,此外,其能力再现日流量。在完全连接模式,如侧向地面水流描述的结果,渗透过量的在山区再分配产生在根区土壤更高的水分含量,增大了地面储水和蒸散,并降低了总径流。将所得的润湿性和在近表面冷却影响,通过改变区域的水蒸汽传输和水蒸汽含量的区域气候,同时,反过来,诱导沉淀的差异。总体而言,完全耦合模型增加了回收速度,这说明在我们的研究领域是横向地面水流影响区域气候。

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  • 作者单位

    Institute of Meteorology and Climate Research (IMK-IFU) Karlsruhe Institute of Technology Campus Alpin Garmisch-Partenkirchen Germany;

    Institute of Meteorology and Climate Research (IMK-IFU) Karlsruhe Institute of Technology Campus Alpin Garmisch-Partenkirchen Germany;

    Fraunhofer Institute for Industrial Engineering IAO Stuttgart Germany;

    Institute of Meteorology and Climate Research (IMK-IFU) Karlsruhe Institute of Technology Campus Alpin Garmisch-Partenkirchen Germany;

    Institute of Meteorology and Climate Research (IMK-IFU) Karlsruhe Institute of Technology Campus Alpin Garmisch-Partenkirchen Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

    usually; regional climate; impact;

    机译:通常;区域气候;影响;

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