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首页> 外文期刊>The Science of the Total Environment >Does recent climate warming drive spatiotemporal shifts in functioning of high-elevation hydrological systems?
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Does recent climate warming drive spatiotemporal shifts in functioning of high-elevation hydrological systems?

机译:最近的气候变暖是否会驱动高海拔水文系统功能的时空变化?

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摘要

Reference evapotranspiration (ETo) is the basic component of the hydrological cycle. This study systematically analyzed the spatiotemporal variations of ETo in the Three-River Headwaters Region (TRHR) by utilizing the FAO Penman-Monteith equation during the period of 1961-2016, and studied the impact of climatic variables on ETo fluctuation based on sensitivity analysis and contribution analysis. Over the past 56 years, ETo increased in most months and annually in most regions of the TRHR, and the spatial distribution for annual ETo varied apparently. Sensitivity analysis revealed that ETo responded more to changes in maximum temperature and sunshine duration than relative humidity, wind speed, and minimum temperature. The relative importance of climatic variables to ETo was influenced by the ETo sensitivity and the fluctuation of climatic variables. Contribution analysis indicated that the significant temperature increase was mainly responsible for the observed increase in ETo. Besides, spatially distributed analysis showed that the annual TRHR ETo tended to increase from east to west, north to south, and high to low elevation. The analysis also indicated a dominant altitudinal spatial gradient in the sensitivity of ETo to changes in different climatic variables. The physical mechanisms for ETo variations discussed in this study might provide a reference for water resources management and conservation of high-elevation areas.
机译:参考蒸散量(ETo)是水文循环的基本组成部分。本研究利用粮农组织Penman-Monteith方程系统分析了1961-2016年三河源区ETO的时空变化,并基于敏感性分析和气候变化研究了气候变量对ETo波动的影响。贡献分析。在过去的56年中,TRHR的大多数区域中的ETo在大多数月份和每年都在增加,并且年度ETo的空间分布显然有所不同。敏感性分析显示,ETo对最高温度和日照持续时间的变化的响应要多于相对湿度,风速和最低温度。气候变量对ETo的相对重要性受到ETo敏感性和气候变量波动的影响。贡献分析表明,温度的显着升高是造成ETo升高的主要原因。此外,空间分布分析表明,每年的TRHR ETo有从东到西,从北到南,从高到低的趋势。分析还表明,在ETo对不同气候变量变化的敏感性中,主要的垂直空间梯度。本研究中讨论的ETo变化的物理机制可能为水资源管理和高海拔地区的保护提供参考。

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