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首页> 外文期刊>Quarterly Journal of Engineering Geology & Hydrogeology >Rapid block glides: slide-surface fragmentation in New Zealand's Waikaremoana landslide
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Rapid block glides: slide-surface fragmentation in New Zealand's Waikaremoana landslide

机译:快速滑行:新西兰怀卡雷摩亚纳滑坡的滑坡面破碎

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摘要

Physical modelling of part of prehistoric Waikaremoana landslide shows that the blockslide must have hit the valley wall at c. 40 m/s, after sliding 2 km on a 5.5–8° slope, in order to form the 150-m high mound of debris known as Raekahu. Both the blockslide and a distal rock avalanche were in simultaneous motion when the impact occurred. Finely ground rock on the slide plane suggests that a mechanism of dynamic rock fragmentation may explain the low friction necessary for acceleration to 40 m/s. When a rock particle fractures in a confined space, an isotropic dispersive pressure equal to the rock's Hugoniot elastic limit (in the GPa range) at the ambient pressure and strain rate may be exerted on its surroundings. Beneath the 275-m thick block, about one particle in 15–30 or so fragmenting at any instant (with lower density for higher rock strength at higher strain rate), could completely support the weight of the block by fragmentation pressure; but then there would be no frictional resistance (and hence no further fragmentation). Self-regulation of the process may explain the apparent coefficient of friction of c. 0.1 in the blockslide. Low friction through dynamic fragmentation may apply widely to blockslides with a basal layer of comminuted rock.
机译:史前怀卡雷摩亚纳滑坡 的一部分的物理模型显示,该块滑坡在5.5–8°滑动了2 km后,必须已经以c。 40 m / s的速度撞击谷壁。斜坡,以 形成150米高的碎石堆,称为Raekahu。发生冲击时, 块状滑坡和远端岩石雪崩同时运动。在s 平面上细磨的岩石表明,动态岩石破碎的机制 可以解释加速至40 m / s所需的低摩擦。当岩石颗粒在有限的空间中破裂时,在环境压力和应变下, 各向同性分散压力等于岩石的Hugoniot弹性 极限(在GPa范围内)。 速率可能会施加在其周围。在275m厚的 块下面,任何瞬间在15-30左右的一个粒子大约在 处破碎(对于 更高的应变率),可以通过碎裂压力完全支撑 块的重量;但随后将没有 摩擦阻力(因此不会进一步破碎)。 过程的自我调节可以解释摩擦的表观系数 的c。在方块中为0.1。通过 动态破碎产生的低摩擦可能广泛应用于具有 碎石基层的块状滑坡。

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