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Laboratory simulation of a slow landslide mechanism

机译:慢速滑坡机理的实验室模拟

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Understanding how slow landslides accelerate and decelerate and under what circumstances they catastrophically reactivate are important for both hazard management and implementing appropriate landslide mitigation. Our study used novel laboratory testing of intact landslide materials in a Dynamic Back-Pressured Shearbox (DBPSB) to study how the speed of a slow landslide varies in response to pore water pressure changes at a landslide shear surface. The DBPSB is based on a direct shear device, modified to allow measurement and control of pore water pressure and the dynamic application of normal and shear stresses. It is capable of carrying out static direct shear testing on soils whilst controlling back pressure and measuring pore water pressure in the sample. We used the DBPSB to replicate loading conditions on a landslide shear plane using intact samples of the basal shear zone of the Utiku landslide complex, New Zealand. During each test we measured the deformation of the landslide shear surface to different patterns of pore water pressure increase and decrease. The results have been compared with high resolution slope movement, pore water pressure and rainfall records available for the landslide since 2008. Relating the laboratory measurements with movement pattern records from the site provides new ability to quantitatively examine landslide movement mechanisms, their causes and controls.
机译:了解慢速滑坡如何加速和减速,以及在什么情况下灾难性地重新激活,对于灾害管理和实施适当的滑坡缓解措施都非常重要。我们的研究使用了动态背压剪切箱(DBPSB)中完整滑坡材料的新颖实验室测试,以研究慢速滑坡的速度如何响应滑坡剪切面上的孔隙水压力变化而变化。 DBPSB基于直接剪切装置,经过修改可以测量和控制孔隙水压力以及动态施加法向应力和剪切应力。它能够在土壤上进行静态直接剪切测试,同时控制背压和测量样品中的孔隙水压力。我们使用DBPSB,使用新西兰Utiku滑坡综合体的基础剪切带的完整样本,在滑坡剪切面上复制荷载条件。在每个测试过程中,我们测量了滑坡剪切面在不同孔隙水压力增加和减少模式下的变形。将结果与自2008年以来可用于滑坡的高分辨率边坡运动,孔隙水压力和降雨记录进行了比较。将实验室测量值与现场的运动模式记录相关联,可以提供定量检查滑坡运动机制,其成因和控制措施的新功能。

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