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Ice regime variation impacted by reservoir operation in the Ning-Meng reach of the Yellow River

机译:黄河宁蒙河段水库运行对冰情变化的影响

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The Ning-Meng reach of the Yellow River in China is located in a high-latitude area, and river freezes up and breaks up every year, leading to ice flood and disaster. Since the 1990s, due to the rising winter temperatures, river channel shrinkage and impacts of reservoir operation, the river ice regime of the Ning-Meng reach has changed. This paper investigated reservoir operation effect on river ice regime by eliminating the impact of climatic conditions, and the test method could be applied to other rivers, where similar anthropogenic impacts can be suspected to affect the river ice regime. The results show that compared to the statistics when there were no reservoirs, the duration of ice freezing days reduced 8-33 days, and the ice cover thickness was 16-25 cm thinner than that without reservoirs. The average number of ice flood incidents per year decreased from 11.61 to 3.25, and the number of disasters reduced from 1.69 to 1.41. Moreover, the changes induced by reservoirs joint operation may vastly exceed that by single reservoir operation. The smaller is the distance to the upstream reservoir, the more obvious is the impact from the reservoir.
机译:中国黄河的宁蒙河段位于高纬度地区,河流每年结冰和破裂,导致冰洪灾和灾害。自1990年代以来,由于冬季温度升高,河道收缩和水库运行的影响,宁蒙河段的河冰状况发生了变化。本文通过消除气候条件的影响来研究水库运行对河冰状况的影响,并且该测试方法可以应用于其他可能怀疑类似人为因素影响河冰状况的河流。结果表明,与没有储层的统计数据相比,冰冻期的持续时间减少了8-33天,冰盖的厚度比没有储层的厚度薄了16-25 cm。每年的平均冰灾事件数量从11.61减少到3.25,灾难数量从1.69减少到1.41。而且,由储层联合作业引起的变化可能大大超过单储层作业引起的变化。到上游水库的距离越小,水库的影响就越明显。

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