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张露澄, 钟启明, 杨蒙, 彭铭, 刘嘉欣. 堰塞坝漫顶溃决离心模型试验研究[J]. 岩土工程学报, 2023, 45(S1): 197-200. DOI: 10.11779/CJGE2023S10029
引用本文: 张露澄, 钟启明, 杨蒙, 彭铭, 刘嘉欣. 堰塞坝漫顶溃决离心模型试验研究[J]. 岩土工程学报, 2023, 45(S1): 197-200. DOI: 10.11779/CJGE2023S10029
ZHANG Lucheng, ZHONG Qiming, YANG Meng, PENG Ming, LIU Jiaxin. Centrifugal model tests on overtopping-induced breaching of landslide dams[J]. Chinese Journal of Geotechnical Engineering, 2023, 45(S1): 197-200. DOI: 10.11779/CJGE2023S10029
Citation: ZHANG Lucheng, ZHONG Qiming, YANG Meng, PENG Ming, LIU Jiaxin. Centrifugal model tests on overtopping-induced breaching of landslide dams[J]. Chinese Journal of Geotechnical Engineering, 2023, 45(S1): 197-200. DOI: 10.11779/CJGE2023S10029

堰塞坝漫顶溃决离心模型试验研究

Centrifugal model tests on overtopping-induced breaching of landslide dams

  • 摘要: 基于南京水利科学研究院400g·t溃坝离心模型试验系统,利用其高速旋转产生的超重力场的“时空放大”效应,开展离心模型试验研究了堰塞坝漫顶溃决时的溃口演化规律和溃决机理。首次通过离心模型试验研究了坝高、下游坡比、坝料级配对堰塞坝漫顶溃坝过程的影响。试验结果表明:堰塞坝漫顶溃坝过程可划分为表层冲刷、溯源冲蚀、沿程侵蚀和溃口稳定4个阶段;溃口峰值流量对坝高最为敏感,平均粒径次之;达峰时间主要受下游坡比影响,溃坝后相对残余坝高主要受平均粒径影响。

     

    Abstract: Based on the 400 g·t centrifugal model test system for dam breaching of Nanjing Hydraulic Research Institute, the centrifugal model tests are carried out to study the breach evolution law and breach mechanism of overtopping-induced breaching of landslide dams by using the "time-space amplification" effect of supergravity field generated by high-speed rotation. The effects of dam height, downstream slope ratio and dam material gradation on the overtopping failure process of landslide dams are investigated by the centrifugal model tests for the first time. The test results show that the breach process of a landslide dam can be divided into four stages, which are surface erosion, retrogressive erosion, erosion along the breach channel, and breach stabilization. Moreover, the peak breach flow is most sensitive to the dam height, followed by the mean particle size. The time to the peak is mainly affected by the downstream slope ratio, and the relative residual dam height after breaching is primarily susceptible to the mean particle size.

     

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