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Numerical study on the formation of pressure arch in bolted gravel plate

机译:螺栓砾石板压力拱形形成的数值研究

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Pressure arches form in and affect the stability of fractured rock reinforced by rockbolts; however, no direct indicator of pressure arch presently exists. A sophisticated model was developed using the 3D particle flow code (PFC3D) to perform gravel bolting tests that allow pressure arches visualization to investigate their formation and influencing factors. The results suggested that a pressure arch can be formed in bolted gravel through interlocking between gravel particles. The whole load of the gravel contained in the filling box is carried by the pressure arch. The formation conditions of a pressure arch are obtained. The rockbolt spacing should be less than 2.5 times the average gravel size. The thickness of the gravel pack should not be less than 2.5 times the rockbolt spacing. Besides, the thickness of the gravel pack should be similar to 0.6 times the side length of the gravel pack. The plate size should not be less than 0.6 times the rockbolt spacing. The formation of a pressure arch is insensitive to the rockbolt elastic modulus. The specific function of rockbolts in bolted gravel is to help form a pressure arch by exerting supporting and surface-retaining effects to stabilize the gravel particles below the pressure arch. Some suggestions were made for rockbolt support in extremely fractured rock in mining roadways.
机译:压力拱形形成并影响岩骨筋加固的裂缝岩石的稳定性;但是,目前没有压力拱的直接指示。使用3D粒子流量代码(PFC3D)开发了复杂的模型,以执行砾石螺栓测试,使压力拱门可视化以研究其形成和影响因素。结果表明,压力拱可以通过砾石颗粒之间的互锁在螺栓砾石中形成压力拱。填充盒中包含的砾石的整个负载由压力拱承载。获得压力弓的形成条件。突波间距应小于平均砾石尺寸的2.5倍。砾石包装的厚度不应小于岩波间距的2.5倍。此外,砾石包装的厚度应类似于砾石包装的侧面长度的0.6倍。板尺寸不应小于突波间距的0.6倍。压力拱的形成对突波弹性模量不敏感。螺栓在螺栓砾石中的特定功能是通过施加支撑和表面保持效果来帮助形成压力弓形,以稳定压力拱下方的砾石颗粒。在采矿道路中的极其骨折的岩石中,对岩波的支持进行了一些建议。

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