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首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Regional hydrology heterogeneity and the response to climate and land surface changes in arid alpine basin, northwest China
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Regional hydrology heterogeneity and the response to climate and land surface changes in arid alpine basin, northwest China

机译:地区水文异质性和对中国西北部干旱阿尔卑斯盆地的气候和土地表面变化的反应

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摘要

Hydrology heterogeneity refers to the different water regimes or hydrological processes in response to heterogeneous in topography, landscapes, land cover, soil properties, geology and meteorology reflecting as the spatial variation of precipitation, evapotranspiration and water yield along with landscape, elevation, terrain and climate variation. However, the hydrology heterogeneity in the alpine region of inland river basin has remained unclear to date, which limits the understanding of the hydrology and landscape interaction mechanism and affects the rational utilization of regional water resources. In this study, we combined the soil and water assessment tool (SWAT) and water-energy coupling framework to detect the hydrology heterogeneity in the arid alpine region of Heihe River Basin (HRB). We applied SWAT model to present the hydrological processes and regimes at different landscapes and elevation bands by using field measured parameters, and investigate the hydrology heterogeneity as well as the response to the changes in recent climate and land surface in the perspective of water-energy coupling framework. The results indicate that SWAT is indeed a robust tool in representing the streamflow process in alpine region with accurate performance. The distribution of landscapes reflect the comprehensive effect of regional water-energy coupling, which highly rely on the altitudinal gradient. The hydrology heterogeneity in high-altitude area is sensitive to energy and in low-altitude area is sensitive to water limitation (drought stress). Climate change is the dominate factor that driving the hydrology heterogeneity shifts in alpine region of HRB, while, the effect of land surface change is gradually strengthening over the past 50 years, reflecting with the contribution of land surface change on hydrology shifts is gradually increasing.
机译:水文异质性是指不同的水分或水文过程,响应于异质,景观,陆地覆盖,土壤性质,地质和气象,作为沉淀,蒸散和水收益的空间变化以及景观,海拔,地形和气候的空间变化变化。然而,内陆河流域高山地区的水文异质性迄今仍未清楚,这限制了对水文和景观相互作用机制的理解,并影响区域水资源的合理利用。在这项研究中,我们将土壤和水分评估工具(SWAT)和水 - 能耦合框架组合以检测黑河流域干旱地区的水文异质性(HRB)。我们应用SWAT模型通过使用现场测量参数呈现不同景观和升高带的水文过程和制度,并研究水能异质性,以及在水 - 能耦合的角度下响应最近的气候和陆地表面的变化框架。结果表明,SWAT确实是在高性能的高山区域中代表流出过程的鲁棒工具。景观的分布反映了区域水能耦合的综合效果,从而高度依赖于高度梯度。高空区域中的水文异质性对能量和低空区域敏感,对水限制敏感(干旱胁迫)。气候变化是推动HRB的高山地区水文异质性转变的主导因素,而土地表面变化的影响在过去50年中逐渐加强,反映了土地表面变化对水文移位的贡献逐渐增加。

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