Lu Peng-Yuan, Yang Xing-Guo, Xu Fu-Gang, Hou Tian-Xing, Zhou Jia-Wen
State Key Laboratory of Hydraulics and Mountain River Engineering, Sichuan University, Chengdu, 610065 People's Republic of China.
College of Water Resource and Hydropower, Sichuan University, Chengdu, 610065 People's Republic of China.
Springerplus. 2016 Sep 20;5(1):1621. doi: 10.1186/s40064-016-3272-4. eCollection 2016.
Substrate entrainment can greatly influence the mass movement process of a debris avalanche because it can enlarge the landslide volume and change the motion characteristics of the sliding masses. To study the interaction between debris avalanches and erodible substrate, physical modeling experiments varying in the mass of granular flow and substrate thickness were performed. The experimental results show that both the entrained materials and the maximum erosion depth are increased with increasing mass of the debris avalanche and decreasing substrate thickness. During the experiment, several tests were recorded using a high-speed digital camera with a frequency of 500 frames per second, so that the process of entrainment could be clearly observed. Combined with the experiment result and results of previous studies from predecessors, the entrainment mechanism during debris avalanches are analyzed and discussed. The entrainment effect of the sliding masses on the loose bed materials include basal abrasion and impact erosion of the avalanche front, the latter of which can contribute to the former by failing or yielding the erodible bed.
底床裹挟作用会极大地影响碎屑流的大规模运动过程,因为它会扩大滑坡体的体积并改变滑动体的运动特征。为了研究碎屑流与易侵蚀底床之间的相互作用,开展了颗粒流质量和底床厚度不同的物理模拟实验。实验结果表明,随着碎屑流质量的增加和底床厚度的减小,被裹挟的物质和最大侵蚀深度均会增加。在实验过程中,使用每秒500帧的高速数码相机记录了几次测试,以便能够清晰地观察到裹挟过程。结合实验结果和前人的研究成果,对碎屑流过程中的裹挟机制进行了分析和讨论。滑动体对松散底床物质的裹挟作用包括雪崩前沿的底部磨蚀和冲击侵蚀,后者可通过使易侵蚀底床破坏或屈服而促进前者。