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巴基斯坦卡洛特水电站取水防沙试验研究OA北大核心CSTPCD

Experimental study on water intake and sand control at Karot hydropower station in Pakistan

中文摘要英文摘要

多沙河流上水电站取水发电,泥沙问题是需要解决的关键问题.本文通过物理模型试验,研究了巴基斯坦卡洛特水电站泥沙淤积发展规律.结果表明:通过"分级相机拉沙"排沙优化调度运行方式和"双重弯道分沙取水"枢纽布局,卡洛特水电站的淤积平衡年限延长至 20 年,坝上游 8.15 km河段泥沙累积淤积量为 4782.3 万m3,平均淤厚27.4 m,最大淤厚51.7 m,兴利库容保留率78.56%;蓄水期,过机水流含沙量降低92.1%,汛前和汛后过机水流含沙量降低33.7%,全年通过电厂机组的水流含沙量不超过1.2 kg/m3,过机泥沙粒径原型值最大为0.02 mm,基本无粗沙过机问题.卡洛特水电站排沙调度方式和枢纽布局为解决高原地区多沙河流水电站泥沙问题提供了解决思路.

Sediment control is a key issue that needs to be addressed when a hydropower station takes water from a sandy river and generates electricity.This article presents an experimental study on sediment deposition,its developing trend,and sediment control for operating the Karot hydropower station in Pakistan through physical model tests.The results show that for this station,its sedimentation balance period will be extended up to 20 years if it adopts an optimized operation mode of grading selection timing for sand removal and a layout of dual bend sand diversion and water taking.Sediment accumulation in the river section 8.15 km upstream of the dam is 47.8 million m3,with an average deposit layer of 27.4 m thick and a maximum thickness of 51.7 m;The retention rate of the utilizable capacity is 78.6%.During water storage,sediment concentration in the flow through the turbines is decreased by 92.1%,while it is decreased by 33.7%before and after the flood season.Throughout a year,sediment concentration in the flow through the power plant unit will not exceed 1.2 kg/m3,and the largest prototype particle size passing through the turbine is 0.02 mm.Therefore,this station will not encounter the problem of coarse sediment passing through the turbine.The sediment discharge scheduling method and hub layout of the Karot hydropower station provide a solution to the sediment control of the sediment-rich river hydropower stations in plateau regions.

刘玉娇;金中武;周银军;刘小斌;李志晶

长江科学院 河流研究所,武汉 430010||长江科学院 水利部长江中下游河湖治理与防洪重点实验室,武汉 430010

水利科学

多沙河流枢纽布局取水防沙弯道水库泥沙淤积

sandy rivershydropower station layoutwater intake and sand preventionbendsedimentation in reservoir

《水力发电学报》 2024 (003)

35-42 / 8

国家自然科学基金重点项目(52239007);国家自然科学基金联合基金项目(U2240226);中央级公益性科研院所基本科研业务费项目(CKSF2021743)

10.11660/slfdxb.20240304

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