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Prediction of Jacking Forces and Pipe Drive Lengths in Rock: Design and Constructability Aspects

机译:岩石中顶进力和管道驱动长度的预测:设计和可施工性方面

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Jacking forces required to advance pipe string in rocks are primarily controlled by the self-weight of the pipe, cutting resistance at the face, rock load induced friction around the pipe circumference and resistance to machine advance from a loosened rock wedge at the front face of the advancing pipe bore. This paper discusses application of analytical and finite element approaches to predict jacking forces in rock strata, which varied from medium strong to strong jointed blocky rock mass for a 3.8 km long gravity sewer in Brisbane, Australia. In stronger and distinctly jointed rock mass, the number of joint sets, their spacing and orientation with respect to the pipe alignment were found to be key factors influencing the rock loads on the pipe. Detailed interpretation of site investigation and testing data was undertaken to estimate strength, hardness and spatial properties of the rock mass and discontinuities. Combined effect of pipe self-weight friction, and resistance at the face and around the pipe were assessed to determine safe and economic length of jacking drives.
机译:使岩石中的管柱前进所需的顶压力主要由管子的自重,工作面的切削阻力,岩石载荷引起的管周周围的摩擦力以及从机床前表面处松动的岩石楔形物引起的机器前进阻力来控制。前进的管孔。本文讨论了解析和有限元方法在预测岩层顶进力中的应用,在澳大利亚布里斯班,一条3.8 km长的重力下水道的岩心从中等强到强节理块状岩体不等。在更坚固且明显节理的岩体中,发现节理组的数量,节距和相对于管道的方向是影响管道上岩石载荷的关键因素。进行了现场调查和测试数据的详细解释,以估算岩体和不连续性的强度,硬度和空间特性。评估了管道自重摩擦以及管道表面和管道周围阻力的综合影响,以确定顶升驱动器的安全和经济长度。

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