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Estimating minimum ecological water required of the western route first stage project of China's south-to-north water transfer scheme for water exporting rivers
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作者 MEN Bao-hui 《Journal of Environmental Science and Engineering》 2007年第1期19-24,共6页
It is well known that there is abundant water resources in basin of the Yangtze River, the first largest river in China, which is mainly located in Southern China. However, water resources is very scarce in the basin ... It is well known that there is abundant water resources in basin of the Yangtze River, the first largest river in China, which is mainly located in Southern China. However, water resources is very scarce in the basin of the Yellow River, which is mainly located in Northern China. So the western route project of south-north water transfer scheme (WRP-SNWTS) aims to transfer water from the Yangtze River to the Yellow River. The area of WRP-SNWT, located in the upper reaches of the Yangtze River and the main areas of Sichuan and the marginal areas of the Qinghai-Tibet Plateau, has sufficient water resources but fragile ecology and environment. Therefore, it is necessary for WRP-SNWT to analyze the ecology water required. Based on the planning principles of from low elevation to high elevation, from small to large, from short to long and from easy to difficulty, the WRP-SNWT will be constructed through three stage projects. The western route first stage project of the south-north water transfer scheme (WRFST-SNWTS) is planned to transfer 4×10^9m^3/a from six tributaries of the Yalong river and from Dadu river to Jiaqu of Yellow River.. Daqu river and Niqu river are the branches of Xianshui river. Sequ river, Duke river, Make river and Ake river are the branches of Dadu river, which account for 65-70% of the total river run-off. It need more research and the rest run-off can satisfy channel ecology water required. According to analysis ecological water required which mainly satisfy for aquicolous biology in water-exporting region, such as low air temperature. Fish and aquicolous biology main living from May to August, and rivers are iced up from December to March of next year, ecology water required mainly for fish and aquicolous biology. The flow criterion of Tennant method is modified. The ecology water required of WRFSP-SNWTS is estimated by the flow data of Zhuwo gauging station, Zhuba gauging station, Chuosijia gauging station and Zumuzu gauging station. The result show that the ecology water required calculated by modified Tennant less 1 l percent than that of Tennant. This estimating result can supply more water resources for transferring to Yellow River. Meanwhile, this can supply gist for research transferring water of WRFSP-SNWTS. 展开更多
关键词 Yangtze river Yellow river western route first stage project of the south-north water transfer scheme minimum ecological water required Tennant method
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水体化学元素N/P比对云中河藻类生长的影响 被引量:3
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作者 陈晓江 李兴 +1 位作者 王雅倩 张靖璇 《广东化工》 CAS 2021年第8期66-68,共3页
工农业生产富含氮磷营养盐废水的排放,使河流水体富营养化程度升高,流速较缓的河流发生水华现象,导致河流流域生态环境的恶化。为了研究水华暴发的机制,以忻州云中河为研究对象,于春季采取云中河水样,在实验室内设置了2︰1、4︰1、8︰1... 工农业生产富含氮磷营养盐废水的排放,使河流水体富营养化程度升高,流速较缓的河流发生水华现象,导致河流流域生态环境的恶化。为了研究水华暴发的机制,以忻州云中河为研究对象,于春季采取云中河水样,在实验室内设置了2︰1、4︰1、8︰1、16︰1、20︰1、35︰1共6个氮磷比梯度进行为期7天的培养。研究结果表明,绿藻门和蓝藻门在N/P为16︰1的实验组中生长最优,密度最大值分别为,硅藻门藻类密度最大为4727.27×10^(4) cells/L;在氮磷比为35︰1的培养组中,藻类密度最低;N/P为16︰1是藻类生长的最适比值,但不同的藻类这个比值会有所变化。 展开更多
关键词 水化学元素 N/P 藻类 水华 云中河
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生态文明视角下的干旱地区河流生态修复研究——以忻州市云中河生态修复为例 被引量:12
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作者 劳炳丽 曹方 《中国园林》 北大核心 2019年第11期41-46,共6页
针对干旱、半干旱地区河流生态环境退化、水土流失严重的现实问题,以忻州云中河生态修复项目为例,探索在水资源稀缺地区特殊的生态环境条件下,从宏观流域尺度到中微观河流尺度,通过流域生态、水文平衡、在地适应性等因地制宜的生态修复... 针对干旱、半干旱地区河流生态环境退化、水土流失严重的现实问题,以忻州云中河生态修复项目为例,探索在水资源稀缺地区特殊的生态环境条件下,从宏观流域尺度到中微观河流尺度,通过流域生态、水文平衡、在地适应性等因地制宜的生态修复方法,整治干旱地区日趋恶化的水生态环境,修复和重建受损的生态环境系统,以期更好地维系干旱地区河流的生态平衡和健康的水文系统。 展开更多
关键词 风景园林 干旱、半干旱地区 河流生态修复 忻州云中河
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南北云中河分洪闸除险加固工程简述 被引量:1
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作者 李顺平 《山西水利科技》 2017年第1期42-44,共3页
通过介绍南北云中河分洪闸工程基本情况和存在的问题,对除险加固工程建设内容、工程设计、工程布置进行了阐述。工程除险加固后,能消除工程诸多安全隐患,保证工程安全运行,大大改善区域工农业生产条件,为区域经济社会的可持续发展提供... 通过介绍南北云中河分洪闸工程基本情况和存在的问题,对除险加固工程建设内容、工程设计、工程布置进行了阐述。工程除险加固后,能消除工程诸多安全隐患,保证工程安全运行,大大改善区域工农业生产条件,为区域经济社会的可持续发展提供有力的推动作用,具有显著的经济效益和社会效益。 展开更多
关键词 分洪闸 除险加固 南北云中河 灌区
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Study on integrated calculation of ecological water demand for basin system 被引量:4
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作者 JIN Xin YAN DengHua +4 位作者 WANG Hao ZHANG Cheng TANG Yun YANG GuiYu WANG LingHe 《Science China(Technological Sciences)》 SCIE EI CAS 2011年第10期2638-2648,共11页
The operation of reservoir(s) has a certain impact on the downstream hydrologic regime,and even endangers the ecological water safety of river corridor and ecosystems which interact with river system.Therefore,ecologi... The operation of reservoir(s) has a certain impact on the downstream hydrologic regime,and even endangers the ecological water safety of river corridor and ecosystems which interact with river system.Therefore,ecological operation needs to be carried out in order to ensure ecological water use of downstream zone.The key technological support is the estimation and integrated calculation of ecological water demand.The connotation of the integrated calculation on ecological water demand lies on that the ecological water demand of different ecosystems is integrated to meet the requirements of water allocation and operation on watershed scale in terms of hydrological cycle.Considering the practical requirement of ecological operation of reservoir(s),this study proposed an integrated calculation approach of ecological water demand according to the ecological water demand in various ecosystems as well as the hydraulic connection among them;it established an integrated calculation model of regional ecological water demand by means of the distributed hydrological model,and studied the integrated calculation in Yalong River basin which is the source area of the west route of South-North Water Transfer Project as an example.The results indicated that the integrated calculation model more effectively combined the ecological water demand and hydraulic connection of ecosystems in time and space,compared with the lumped water balance analysis,since the former conquered the defect of insufficient ecological water source and supplement on multiple spatial and temporal scales,and met the demand of ecological operation of reservoir(s). 展开更多
关键词 ecological operation of reservoir ecological water demand integrated calculation distributed hydrological model west route of south-north Water Transfer Project in Yalong river source area
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