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首页> 外文期刊>Journal of Hydrology >Barrier lake bursting and flood routing in the Yarlung Tsangpo Grand Canyon in October 2018
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Barrier lake bursting and flood routing in the Yarlung Tsangpo Grand Canyon in October 2018

机译:2018年10月雅列隆曾荫权大峡谷的障碍湖爆破和洪水路线

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Ice-soil mixture landslide dams formed frequently in the Tibetan Plateau in response to global warming, which pose great threats to both upstream and downstream areas due to inundation and lake bursting. On 17 October 2018, a large landslide, induced by an ice-avalanche at the Sedongpu Basin of the Yarlung Tsangpo, blocked the main course of the river near Gyalha. The barrier lake level rose quickly and the dam was overtopped naturally at 13:30 on 19 October 2018, generating a dam-breaching flood with a peak flow rate of 32,000 m(3)/s. This paper presents a comprehensive study of the disaster chain of landslide-barrier lake-dam breaching-river flooding in the Yarlung Tsangpo Grand Canyon, detailed geological and hydrological characteristics of the study region, rapid prediction of the dam breaching hydrograph using an erosion-based numerical model, and analysis of the flood routing in a 460 km canyon reach along the Yarlung Tsangpo. The simulated peak discharge at the dam site is over 30,000 m(3)/s and the corresponding dam-breaching and flood routing hydrographs agree well with the observations. Two additional scenarios with larger inflow rates are also considered. Results show that with a larger inflow into the barrier lake, the erosion of the dam body becomes more rapid. When the inflow rate is increased by six times, the peak dam-breaching discharge can be doubled. The study serves as basis to manage the flood risks due to landslide dam bursting on the Yarlung Tsangpo or similar rivers.
机译:冰土混合物山体滑坡频繁在藏高高原中经常形成,以应对全球变暖,这对由于淹没和湖泊爆裂构成了对上游和下游地区的巨大威胁。 2018年10月17日,在雅隆曾经浦省塞松浦盆地的冰川盆地诱发的大型滑坡阻止了Gyalha附近的河流的主菜。障碍湖级迅速上涨,大坝于2018年10月19日13:30自然地拓展,产生了峰值流量为32,000米(3)/ s的峰值流量。本文综合研究了雅隆曾荫权大峡谷的山坡障碍湖灾区灾害河流灾害的综合研究,研究区的详细地质和水文特征,利用侵蚀的水坝突破水坝的快速预测460公里峡谷沿雅列隆龙坡洪水路线的数值模型。坝址的模拟峰值放电超过30,000米(3)/ s,相应的坝突破和洪水路由水文与观察结果很好。还考虑了两种具有较大流入率的其他方案。结果表明,随着进入屏障湖的较大流入,坝体的侵蚀变得更加快速。当流入速率增加六次时,峰值坝突发放电可以加倍。该研究是为了管理由于雅列隆遍久浦或类似河流的滑坡坝而导致洪水风险。

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