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南水北调中线工程不同调水规模对汉江中下游影响分析
引用本文:沈大军.南水北调中线工程不同调水规模对汉江中下游影响分析[J].地理学报,1998,53(4):341-348.
作者姓名:沈大军
作者单位:中国水利水电科学研究院(沈大军),中国科学院水问题联合研究中心(刘昌明)
基金项目:中国科学院“九·五”重大项目资助
摘    要:南水北调中线工程是解决我国北方地区水资源紧缺的重大战略措施。但调水将给汉江中下游的水文情势及用水带来一定的影响。文章分析了丹江口水库不同调水方案对汉江中下游水位、流量及灌溉和航运的影响,并提出补偿工程措施。调水60×108m3对汉江中下游的影响较小,可基本不予补偿;调水150×108m3的影响稍重,但对航运和灌溉用水的影响不大,适当补偿可以解决;调水230×108m3对汉江中下游水位流量及用水的影响十分严重,必须全部渠化并修建江汉运河。

关 键 词:南水北调  中线工程  调水影响  汉江中下游

EFFECTS OF DIFFERENT SCALES OF MR SNWTP ONTHE DOWN STREAM OF THE DANJIANGKOU RESERVOIR
Shen Dajun.EFFECTS OF DIFFERENT SCALES OF MR SNWTP ONTHE DOWN STREAM OF THE DANJIANGKOU RESERVOIR[J].Acta Geographica Sinica,1998,53(4):341-348.
Authors:Shen Dajun
Abstract:The Middle Route of China's South to North Water Transfer Project (MR SNWTP) is one of the key engineerings to alleviate water resources crisis in the North China Plain. But water transfer from the Hanjiang River would result in changes in hydrological regimes and water use in the basin. The paper deals with the effects of different water transfer scales on the down stream of the Danjiangkou Reservoir water source of MR SNWTP. The advantages and disadvantages of three water transfer scales: 6 billion m 3, 15 billion m 3, and 23 billion m 3 (in annual average water transfer quantity in 2020), were discussed. The effects of three scales on water tables, streamflows, navigation and irrigation were analyzed. The results demonstrated that, the scales of 1 5 billion m 3 and 6 billion m 3 would have small effects on the down stream of the reservoir and little change in navigation and irrigation water use, and do not need to build compensation engineerings; the scales of 15 billion m 3 would have moderate effects on water tables, streamflows, navigation and irrigation, and need to build compensation engineerings for irrigation at the lower stream of the river; while the scale of 23 billion m 3 would have great effects on water tables and streamflows and on irrigation and navigation, and need to compensate completely for water table decline and water quantity decrease for both irrigation and navigation.
Keywords:the Middle Route of China's South  to  North Water Transfer Project  water transfer effect  compensation engineering  
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