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Half-scale experimental study of rockfall impacts on sandy slopes

机译:落石对砂质边坡影响的半尺度试验研究

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In the framework of rockfall trajectory modelling, the bouncing phenomenon occurring when a rock block impacts with the slope surface is the most difficult to predict, owing to its complexity and its very limited understanding. To date, the rebound is commonly quantified by means of two coefficients of restitution estimated from a rough description of the ground material. To acquire a better knowledge of the bouncing phenomenon and to investigate the influence of various impact parameters, a comprehensive experimental study was undertaken at the LMR-EPFL (Rock Mechanics Laboratory - Swiss Federal Institute of Technology Lausanne). After a summary of the main conclusions drawn from a small-scale study, the paper focuses on half-scale experiments, describing first the testing device and the data processing and analysing then the influence of several impact parameters. It is observed that the rebound and the commonly-used coefficients of restitution expressed for the mass centre of the block depend not only on slope material characteristics, but also on factors related to the kinematics (slope inclination and impact velocity) and to the block (weight, size and shape). As many trajectory computer codes consider constant coefficients of restitution only function of the outcropping material, the trajectory results should be interpreted with caution and always checked against field observations.
机译:在落石轨迹建模的框架中,由于岩石块的复杂性和非常有限的理解,最难以预测当岩石块撞击坡面时发生的弹跳现象。迄今为止,通常通过对地面材料的粗略估算得出的两个恢复系数来量化回弹。为了更好地了解弹跳现象并研究各种冲击参数的影响,LMR-EPFL(洛桑联邦理工学院岩石力学实验室)进行了全面的实验研究。在总结了一项小型研究的主要结论之后,本文将重点放在半规模实验上,首先描述测试设备和数据处理,然后分析几个冲击参数的影响。可以看到,针对块体质心的回弹和常用恢复系数不仅取决于边坡材料特性,还取决于与运动学(边坡倾角和冲击速度)以及与块体有关的因素(重量,大小和形状)。由于许多轨迹计算机代码认为恒定的恢复系数仅是露头材料的功能,因此应谨慎解释轨迹结果,并始终对照实地观察进行检查。

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