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我国现状能源与水纽带关系定量识别
引用本文:何国华,姜珊,赵勇,王建华,朱永楠,何凡,韩昕雪琦,李海红. 我国现状能源与水纽带关系定量识别[J]. 南水北调与水利科技(中英文), 2020, 18(4): 54-70
作者姓名:何国华  姜珊  赵勇  王建华  朱永楠  何凡  韩昕雪琦  李海红
作者单位:( 1. 中国水利水电科学研究院 流域水循环模拟与调控国家重点实验室, 北京 100038; 2. 西北农林科技大学 水利与建筑工程学院, 陕西 杨陵 712100)
基金项目:国家重点研发计划( 2016YFC0401407) ; 国家青年科学基金( 51809282)
摘    要:以省级行政区为研究对象,以2017年为研究时段,分析我国社会水循环过程耗能及电力生产耗水。结果显示:2017年我国社会水循环过程耗电总量为10 828.1亿kW·h,占当年我国全社会用电总量的17.2%,终端用水是最大的耗能环节;2017年我国电力生产过程耗水量为65.7亿m~3,占当年全社会耗水总量的2%;火电是我国最耗水的电源,其耗水量占全国电力开发耗水总量的78%。基于计算结果,提出了实现能源-水协同安全的相关建议。

关 键 词:关键词: 水资源   能源   纽带关系   协同安全   可持续发展

Quantitative identification of the relationship between water-energy nexus in China
HE Guohu,JIANG Shan,ZHAO Yong,WANG Jianhu,ZHU Yongnan,HE Fan,HAN Xinx ueqi,L I Haihong. Quantitative identification of the relationship between water-energy nexus in China[J]. South-to-North Water Transfers and Water Science & Technology, 2020, 18(4): 54-70
Authors:HE Guohu  JIANG Shan  ZHAO Yong  WANG Jianhu  ZHU Yongnan  HE Fan  HAN Xinx ueqi  L I Haihong
Affiliation:( 1. State Key Laboratory of Simulation and Regulation of Water Cycle in River Basin, China Institute of Water Resources and Hydropower Research, Beijing 100038, China; 2. College of Water Resources and Architectural Engineering, Northwest A&F University , Yang ling 712100, China)
Abstract:The energy consumption of China''s social water cycle process and the water consumption of power production is analyzed by taking provincial administ rative regions as the research o bject and year 2017 as the research period. The results show ed that : The total power consumption of Chinacs social water cycle process is 1 0821.81 billion kW· h, accounting for 171 2% of the total power consumption of China''s society in 2017; Terminal water consumption is the biggest energy consumption. In 2017, Chinacs electricity production is consumed 6.57 billion m3 of water, accounting for 2% of the total social water consumption; and Thermal power is the most water consuming power source in China, accounting for 78% of the total water consumption in the countrycs electric power development. Based on the calculated results, relevant suggestions are put forword for realizing energy water coordinated security
Keywords:water resource   energy   nexus   cooperative security    sustainable development
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