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干旱区大城市水资源利用变化过程及驱动效应分析——以乌鲁木齐为例
作者姓名:张豫芳  杨德刚  唐宏  刘雅轩
作者单位:1. 中国科学院新疆生态与地理研究所, 乌鲁木齐 830011;2. 四川农业大学 四川省农村 发展研究中心, 成都 611130;3. 新疆财经大学经济学院, 乌鲁木齐 830012
基金项目:中国科学院西部博士课题(XBBS201108)资助
摘    要:综合考虑经济发展水平、人口规模、产业用水效率及水资源开发利用程度等因素,建立全要素分解模型和运用LMDI分解方法对1995—2012年乌鲁木齐市用水过程的驱动因素进行分解分析.结果表明: 经济发展水平与用水强度是乌鲁木齐市用水总量变化的决定因素;产业用水结构、经济发展水平、用水强度是影响乌鲁木齐市用水效益变动的决定性因素.产业结构调整和产业技术升级对用水总量增加有一定抑制作用,但作用不强.人均供水量的增长在一定程度上对资源利用效率变化起到抑制作用.

关 键 词:LMDI分解法  用水效率  用水总量  乌鲁木齐市  
收稿时间:2014-07-16
修稿时间:2015-02-28

Analysis of change process and influence factors of water resource utilization in megalopolis of arid area: a case study of Urumqi city
Authors:ZHANG Yufang  YANG Degang  TANG Hong  LIU Yaxuan
Institution:1. Xinjiang Institute of Ecology and Geography, Chinese Academy of Sciences, Urumqi 830011, China;2. Agricultural Development Research Center of Sichuan, Sichuan Agricultural University, Chengdu 611130, China;3. School of Economics, Xinjiang University of Finance and Economics, Urumqi 830012, China
Abstract:Urumqi was selected as the object for this study. Through constructing an all-factor decomposition model, Logarithmic mean Divisia index (LMDI) decomposition method was used to conduct decomposition analyses on the factors that caused the change process of water resource utilization in Urumqi from 1995 to 2012. The results indicated that economy development level and water use intensity, and the effects of industrial water use structures, economy level, and water use intensity were the determinant factors that influenced the water use consumption and efficiency, respectively. The adjustment of industrial structures and the upgrading of industrial technologies caused certain inhibitory effects on the total water consumption, but these effects were not strong. The amount of water supply per capital had inhibitory effects in certain extent on water resource utilization efficiency.
Keywords:LMDI decomposition method                                                                                                                        water use efficiency                                                                                                                        total water consumption                                                                                                                        Urumqi
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