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阿克苏河流域气候变化对潜在蒸散量影响评价(英文)
引用本文:张守红,刘苏峡,莫兴国,舒畅,孙杨,张春.阿克苏河流域气候变化对潜在蒸散量影响评价(英文)[J].地理学报(英文版),2011,21(4):609-620.
作者姓名:张守红  刘苏峡  莫兴国  舒畅  孙杨  张春
作者单位:Key Laboratory of Water Cycle & Related Land Surface Processes, Institute of Geographic Sciences and Natural Resources Research, CAS;Graduate University of Chinese Academy of Sciences
基金项目:National Key Basic Research Development Program of China No.2009CB421307; No.2010CB428404; National Natural Science Foundation of China No.41071024
摘    要:Evapotranspiration is one of the key components of hydrological processes. Assessing the impact of climate factors on evapotranspiration is helpful in understanding the impact of climate change on hydrological processes. In this paper, based on the daily meteorological data from 1960 to 2007 within and around the Aksu River Basin, reference evapotranspiration (RET) was estimated with the FAO Penman-Monteith method. The temporal and spatial variations of RET were analyzed by using ARCGIS and Mann-Kendall method. Multiple Regression Analysis was employed to attribute the effects of the variations of air temperature, solar radiation, relative humidity, vapour pressure and wind speed on RET. The results showed that average annual RET in the eastern plain area of the Aksu River Basin was about 1100 mm, which was nearly twice as much as that in the western mountainous area. The trend of annual RET had significant spatial variability. Annual RET was reduced significantly in the southeastern oasis area and southwestern plain area and increased slightly in the mountain areas. The amplitude of the change of RET reached the highest in summer, contributing most of the annual change of RET. Except in some high elevation areas where relative humidity predominated the change of the RET, the variations of wind velocity predominated the changes of RET almost throughout the basin. Taking Kuqa and Ulugqat stations as an example, the variations of wind velocity accounted for more than 50% of the changes of RET.

关 键 词:climate  change  reference  evapotranspiration  Penman-Monteith  method  Aksu  River  Basin
收稿时间:22 November 2008

Assessing the impact of climate change on potential evapotranspiration in Aksu River Basin
Shouhong?Zhang,Suxia?Liu,Xingguo?Mo,Chang?Shu,Yang?Sun,Chun?Zhang.Assessing the impact of climate change on potential evapotranspiration in Aksu River Basin[J].Journal of Geographical Sciences,2011,21(4):609-620.
Authors:Shouhong Zhang  Suxia Liu  Xingguo Mo  Chang Shu  Yang Sun  Chun Zhang
Affiliation:1,2 1. Key Laboratory of Water Cycle & Related Land Surface Processes, Institute of Geographic Sciences and Natural Resources Research, CAS, Beijing 100101, China; 2. Graduate University of Chinese Academy of Sciences, Beijing 100049, China
Abstract:Evapotranspiration is one of the key components of hydrological processes. Assessing the impact of climate factors on evapotranspiration is helpful in understanding the impact of climate change on hydrological processes. In this paper, based on the daily meteorological data from 1960 to 2007 within and around the Aksu River Basin, reference evapotranspiration (RET) was estimated with the FAO Penman-Monteith method. The temporal and spatial variations of RET were analyzed by using ARCGIS and Mann-Kendall method. Multiple Regression Analysis was employed to attribute the effects of the variations of air temperature, solar radiation, relative humidity, vapour pressure and wind speed on RET. The results showed that average annual RET in the eastern plain area of the Aksu River Basin was about 1100 mm, which was nearly twice as much as that in the western mountainous area. The trend of annual RET had significant spatial variability. Annual RET was reduced significantly in the southeastern oasis area and southwestern plain area and increased slightly in the mountain areas. The amplitude of the change of RET reached the highest in summer, contributing most of the annual change of RET. Except in some high elevation areas where relative humidity predominated the change of the RET, the variations of wind velocity predominated the changes of RET almost throughout the basin. Taking Kuqa and Ulugqat stations as an example, the variations of wind velocity accounted for more than 50% of the changes of RET.
Keywords:climate change  reference evapotranspiration  Penman-Monteith method  Aksu River Basin
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