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季调节水库的优化调度探讨与研究
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作者 姜洪友 《科技风》 2021年第22期195-196,共2页
水库调水属于合理分配水资源,优化调度是基于水库能承受的水电任务,利用自身的调蓄能力,确保大坝与下游防洪安全的基础上,对水库的水量进行合理分配的一种技术。长潭水库属于不完全季调节水库,具有一定的调节性能,顾长潭发电公司开始内... 水库调水属于合理分配水资源,优化调度是基于水库能承受的水电任务,利用自身的调蓄能力,确保大坝与下游防洪安全的基础上,对水库的水量进行合理分配的一种技术。长潭水库属于不完全季调节水库,具有一定的调节性能,顾长潭发电公司开始内部挖潜,积极开展水库、机组优化运行工作。在实现水库防洪安全的前提下,充分利用洪水资源,采取合规、合理的技术手段,充分利用洪水增加发电量。 展开更多
关键词 长潭水库 季调节水库 优化调度 研究
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黄龙滩水电厂水情测报和防洪调度自动化系统
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作者 徐林之 屠明德 田秋生 《华中电力》 1990年第1期1-6,共6页
黄龙滩水电厂水情测报和防洪调度自动化系统于1987年建成投入试运行,1988年12月初通过了能源部科技司组织的鉴定,下面就系统总的情况作一介绍。 一、概述 黄龙滩水电厂位于湖北省汉江支流堵河的下游,是季调节水库,库容为10.125亿m^3,控... 黄龙滩水电厂水情测报和防洪调度自动化系统于1987年建成投入试运行,1988年12月初通过了能源部科技司组织的鉴定,下面就系统总的情况作一介绍。 一、概述 黄龙滩水电厂位于湖北省汉江支流堵河的下游,是季调节水库,库容为10.125亿m^3,控制流域面积为11140km^2,占堵河流域总面积的95%。堵河西、南两源在竹山附近汇合后向东北方向流入黄龙滩水库区。 展开更多
关键词 调度自动化系统 龙滩 水情测报 调度站 遥测站 季调节水库 无线电信道 东北方向 流域总面积 堵河
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Effects of seasonal water-level fluctuation on soil pore structure in the Three Gorges Reservoir,China 被引量:9
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作者 ZHANG Shu-juan TANG Qiang +5 位作者 BAO Yu-hai HE Xiu-bin TIAN Feng-xia LüFa-you WANG Ming-feng Raheel ANJUM 《Journal of Mountain Science》 SCIE CSCD 2018年第10期2192-2206,共15页
Inundation of the Three Gorges Reservoir has created a 30-m water-level fluctuation zone with seasonal hydrological alternations of submergence and exposure, which may greatly affect soil properties and bank stability... Inundation of the Three Gorges Reservoir has created a 30-m water-level fluctuation zone with seasonal hydrological alternations of submergence and exposure, which may greatly affect soil properties and bank stability. The aim of this study was to investigate the response of soil pore structure to seasonal water-level fluctuation in the reservoir, and particularly, the hydrological change of wetting and drying cycles. Soil pore structure was visualized with industrial X-ray computed tomography and digital image analysis techniques. The results showed that soil total porosity(? 100 ?m), total pore number, total throat number, and mean throat surface area increased significantly under wetting and drying cycles. Soil porosity, pore number and throat numberwithin each size class increased in the course of wetting and drying cycles. The coordination number, degree of anisotropy and fractal dimension were indicating an increase. In contrast, the mean shape factor, pore-throat ratio, and Euler-Poincaré number decreased due to wetting and drying cycles. These illustrated that the wetting and drying cycles made soil pore structure become more porous, continuous, heterogeneous and complex. It can thus be deduced that the water-level fluctuation would modify soil porosity, pore size distribution, and pore morphology in the Three Gorges Reservoir, which may have profound implications for soil processes, soil functions, and bank stability. 展开更多
关键词 Soil pore structure X-ray computed tomography Image analysis Wetting and drying cycles Water-level fluctuation Three Gorges
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