Evaluation of sediment management strategies for Tarbela Reservoir

Q4 Earth and Planetary Sciences
M. U. Rashid, Haris Miqdad, Muhammad Saad ul Hassan, Abdul Haseeb, Muhammad Asad
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引用次数: 1

Abstract

Multipurpose large dams play a significant role in the development of world by providing water for irrigation, flood control and hydropower. This study aims to evaluate different strategies for the evacuation of deposited sediments and reducing sediment inflows to Tarbela Reservoir by using HEC-RAS. Sediment flushing from existing power tunnels was found unfeasible due to the downstream constraints and the loss of 7848 MW of hydropower. New sediment bypass tunnels on the right bank of the dam to overcome the constraints were analysed. The sediment balance ratio, long-term capacity ratio and economic analysis were computed along with sediment modelling for different scenarios. The most technically viable scenario was 90 days flushing at 390 m drawdown level with a discharge 5000 m3/s. This scenario was not economically feasible as NPV was negative, IRR was 3-4 %, and the benefit cost ratio was less than one. The Diamer Basha Dam under construction upstream of Tarbela Reservoir was also evaluated. The results suggested a large volume of sediment would be trapped in the upstream reservoir which would ultimately lead to a significant reduction in the inflow of sediment and the delta movement in Tarbela Reservoir. This option was recommended due to its multiple benefits and potential capacity to enhance Tarbela Reservoir's life.
塔尔贝拉水库泥沙治理策略评价
多用途大坝为灌溉、防洪和水力发电提供水源,在世界发展中发挥着重要作用。本研究旨在使用HEC-RAS评估沉积物疏散和减少流入Tarbela水库的沉积物的不同策略。由于下游限制和7848MW水电的损失,现有发电隧道的泥沙冲洗被认为是不可行的。分析了大坝右岸为克服这些限制而新建的绕沙隧道。计算了不同情景下的泥沙平衡比、长期容量比和经济分析,以及泥沙建模。技术上最可行的方案是在390 m水位下降时进行90天的冲洗,流量为5000 m3/s。这种方案在经济上不可行,因为净现值为负,内部收益率为3-4%,效益成本比小于1。对塔贝拉水库上游正在施工的Diamer Basha大坝也进行了评估。结果表明,大量沉积物将被截留在上游水库中,这将最终导致Tarbela水库的沉积物流入和三角洲运动显著减少。推荐该方案是因为其具有多种优点和潜在的能力,可以延长Tarbela水库的使用寿命。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Dams and Reservoirs
Dams and Reservoirs Earth and Planetary Sciences-Geotechnical Engineering and Engineering Geology
CiteScore
0.50
自引率
0.00%
发文量
30
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