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Optimisation of reservoir operation mode to improve sediment transport capacity of silt-laden rivers

机译:储层运行模式优化提高淤泥河流河流泥沙输送能力

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摘要

The inverse relationship between water and sediment is hindering the regulation of sediment in silt-laden rivers. Under natural conditions and insufficient water flow, sediment deposits along river channels, resulting in the accumulation of suspended river sediments above the ground level on both sides of the river. Then, during flooding, dam collapse and overflow can easily occur, threatening the life of residents in floodplain. The operation of upstream reservoirs to maximise the sediment transport capacity of downstream rivers into the sea is deemed the best strategy for the management of silt-laden rivers. However, as incoming water and sediment form a dynamic system, optimising the operation mode of reservoirs has become the most severe challenge in the field. This study proposes a method to remodel the water-sediment relationship of natural rivers by optimising the reservoir operation. First, data were collected and analysed to investigate sediment transport in the downstream river channel and the response relationship between erosion-deposition. Then, an empirical equation for calculating the desired incoming sediment was derived, and the threshold for sedimentary transport balance in the lower reach of silt-laden rivers was determined through mathematical modelling. Finally, the reservoir operation mode was optimised within the threshold range to study the discharge process of the reservoir with the highest sediment transport efficiency downstream. The Yellow River in China exhibits the highest sediment concentration worldwide and was used as a case study to verify the practicability of the proposed method. The critical threshold for sediment transport balance in the lower Yellow River was determined to be 250 million tons. The results demonstrate that the proposed method improved the sediment transport capacity of the lower reaches of the Yellow River. Moreover, it reduced the siltation of the XiaoLangDi Reservoir and the lower reaches of the Yellow River. The XiaoLangDi Reservoir can be jointly operated with the Guxian Reservoir, which is under construction and is expected to maintain the bankfull discharge of the lower reaches of the Yellow River at 4000 m(3) for a long time. The optimisation process described in this study can be used to improve the management of silt-laden rivers.
机译:水沙之间的反比关系阻碍了多泥沙河流的泥沙调节。在自然条件和水量不足的情况下,泥沙沿河道沉积,导致河流两侧地面以上的悬浮河流泥沙堆积。在洪水期间,容易发生溃坝和溢流,威胁漫滩居民的生命。上游水库的运行,以最大限度地提高下游河流入海的泥沙输送能力,被认为是管理含沙河流的最佳策略。然而,随着来水和泥沙形成一个动态系统,优化水库运行模式已成为该领域最严峻的挑战。本研究提出了一种通过优化水库运行来重塑天然河流水沙关系的方法。首先,收集和分析数据,以调查下游河道中的泥沙输移和侵蚀-沉积之间的响应关系。然后,推导了计算预期来沙量的经验公式,并通过数学建模确定了含沙河流下游的泥沙输移平衡阈值。最后,在阈值范围内优化水库运行模式,以研究下游输沙效率最高的水库的排放过程。中国的黄河是世界上含沙量最高的河流,并被用作案例研究,以验证所提出方法的实用性。黄河下游输沙平衡的临界阈值确定为2.5亿吨。结果表明,该方法提高了黄河下游的输沙能力。此外,它还减少了小浪底水库和黄河下游的淤积。小浪底水库可与古县水库联合运行,古县水库正在建设中,预计将长期保持黄河下游4000 m(3)的满岸流量。本研究中描述的优化过程可用于改善含沙河流的管理。

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