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Study of the interface friction between mesh and rock surface in drapery systems for rock fall hazard control

机译:帷幕坠落危害控制帷幕系统中网格与岩石表面的界面摩擦研究

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Although drapery systems are commonly used to control rock fall hazard on steep slopes, some elements of their design such as the interface friction between the mesh and ground surface are still difficult to quantify in practice. This technical note presents a new test procedure designed to study the mechanism of rock-mesh interaction in the laboratory. A series of tilt tests and tests with increasing loads were performed to study the effects that number and type of rock-mesh contacts, slope angle, and mesh characteristics had on mesh-rock interaction. The obtained data indicated that the process of interlocking between the mesh and rocks could increase the mesh's resistance to failure as well as decrease the force acting on the anchors during accumulation of rock debris or snow. Some changes to the current guidelines regarding the selection of interface friction angle are also suggested. (C) 2015 Elsevier B.V. All rights reserved.
机译:尽管帷幕系统通常用于控制陡坡上的岩崩危险,但在实践中仍难以量化其设计的某些要素,例如网格与地面之间的界面摩擦。本技术说明提出了一种新的测试程序,旨在研究实验室中的岩网相互作用机理。进行了一系列的倾斜试验和增加载荷的试验,以研究岩石-网格接触的数量和类型,倾斜角度和网格特征对网格-岩石相互作用的影响。获得的数据表明,网格和岩石之间的互锁过程可以增加网格的抗破坏能力,并减少岩石碎屑或积雪过程中作用在锚上的力。还建议对有关界面摩擦角选择的当前准则进行一些更改。 (C)2015 Elsevier B.V.保留所有权利。

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