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Physical models of rock avalanche spreading behaviour with dynamic fragmentation

机译:具有动态破碎作用的岩石雪崩扩散行为的物理模型

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The dynamic fragmentation of rock during avalanche motion has been postulated as a mechanism explaining the long runout of large rock avalanches or Sturzstr?me. This paper investigates whether test conditions that produce dynamic fragmentation can lead to greater runout or spreading of physical model rock avalanches. Model avalanche experiments were carried out under enhanced acceleration to generate breakage in coal, a fragmentable, brittle solid. Coal blocks were released from a stationary position on a slope to run out on a plane. The motion of the ensuing fragmenting debris was captured using a high-speed camera placed above the horizontal plane. The average position of the front was tracked and the degree of fragmentation of the model avalanches was quantified. The paper presents results of the frontal velocity of the avalanches, corrected for centrifuge Coriolis effects. Comparison is made between the peak and impulsive front velocities, the final runout, and the degree of fragmentation of the model avalanches. Strong relationships are found between runout normalized by the cube root of volume, impulse velocity, and Hardin's relative breakage parameter, BR. Results are discussed in light of the mechanics involved and are compared with field-scale events.
机译:假定雪崩运动过程中岩石的动态破碎是解释大型岩石雪崩或Sturzstr?me长跳动的一种机制。本文研究了产生动态碎片的测试条件是否会导致更大的跳动或物理模型岩石雪崩的扩散。模型雪崩实验是在增强的加速度下进行的,以在煤中产生破碎,煤是易碎的,易碎的固体。煤块从斜坡上的固定位置释放,然后在飞机上跑动。随后的碎片碎片的运动是使用放置在水平面上方的高速摄像机捕获的。跟踪前部的平均位置,并量化模型雪崩的破碎程度。本文介绍了雪崩的额叶速度的结果,并针对离心机的科里奥利效应进行了校正。比较峰值和脉冲前沿速度,最终跳动和模型雪崩的破碎程度。在通过体积的立方根归一化的跳动,脉冲速度和哈丁的相对破损参数BR之间发现强关系。根据所涉及的机制讨论了结果,并将结果与​​现场规模的事件进行了比较。

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