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Post-failure fracture angle of brittle pipes subjected to differential ground movements

机译:地面运动不同时的脆性管道破坏后断裂角度

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Centrifuge testing of four glass pipe models has been used to measure the kinematics associated with cast iron pipe fracture and the relative rotation of the pipeline on either side of the fracture when fracture is induced by a normal ground fault. The model pipelines were fabricated at 1/30th scale using solid glass rod of semi-circular cross-section. After placing each model against the transparent sidewall of a test box, the pipe was buried and the tested at 30g. Movements of the soil and the model pipe were monitored using particle image velocimetry, and analysis was used to examine both the curvature distributions before fracture, the fracture pattern (i.e. the fracture locations) expected for cast iron pipes passing across a normal ground fault, and the post-test rotations across the fractures. The depth of soil cover was observed not to make a significant difference to the amount of initial fracture angle for the range of covers investigated in this study (1.125-2.25 m in prototype scale). The fracture angle was shown to be well represented by the slope of the pipe displacements at the inflection point. The use of normalized peak curvature to estimate the fracture angle (rotation across the fracture) was demonstrated. The estimated magnitude of rotation after the pipe breaks can then be used to estimate the local stresses and strains that would develop in a polymer liner inserted within the cast iron pipeline before fracture initiates and which is therefore subjected to longitudinal bending stresses after the cast iron pipe fractures, values of 'demand' that can then be evaluated against measurements of liner strength (i.e. its stress and/or strain limits). The initiatangle of rotation directly across the fractures after they form is approximately the same regardless of when the pipe initially breaks, and regardless of the soil cover depth and soil density. However, the magnitude of the vertical ground displacement across the normal fault needed to induce fracture varies considerably for the different burial conditions that were considered, and the rotation angle increases steadily after fracture if the amount of vertical ground displacement continues to grow. (C) 2015 Elsevier Ltd. All rights reserved.
机译:四个玻璃管模型的离心测试已用于测量与铸铁管断裂相关的运动学,以及当断裂是由正常地面故障引起时,在断裂两侧的管道的相对旋转。使用半圆形横截面的实心玻璃棒以1/30的比例制造模型管道。将每个模型靠在测试箱的透明侧壁上后,将管埋入并以30g的重量进行测试。使用粒子图像测速仪监测土壤和模型管的运动,并进行分析以检查断裂前的曲率分布,穿过正常地面断层的铸铁管预期的断裂模式(即断裂位置),以及测试后旋转穿过骨折。在本研究调查的覆盖范围内(原型规模为1.125-2.25 m),观察到土壤覆盖深度与初始断裂角的量没有显着差异。拐角处的管位移的斜率很好地表示了断裂角。演示了使用归一化的峰值曲率来估计断裂角度(穿过断裂的旋转)。管破裂后的估计旋转量随后可用于估计在断裂开始前插入铸铁管道内的聚合物衬里中会产生的局部应力和应变,因此在铸铁管之后会承受纵向弯曲应力。断裂,然后可以根据衬里强度(即其应力和/或应变极限)的测量值评估“需求”值。裂缝形成后,直接穿过裂缝的旋转初始角度大致相同,无论管道何时开始破裂,也不管土壤覆盖深度和土壤密度如何。但是,考虑到不同的埋藏条件,导致断裂所需的跨越正常断层的垂直地面位移的大小会发生很大变化,并且如果垂直地面位移的量继续增加,则断裂后旋转角度会稳定增加。 (C)2015 Elsevier Ltd.保留所有权利。

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