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Use of tire-derived aggregate for seismic mitigation of buried pipelines under strike-slip faults

机译:轮胎衍生骨料在走滑断层下减缓地下管道的地震作用

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摘要

Compressible materials can be backfilled in the trench to reduce the soil restraints on buried pipelines at fault crossings. The potential of using tire-derived aggregate (TDA) as a backfill material for seismic mitigation of pipelines is investigated herein. A continuum-based three-dimensional finite element model for pipelines with trench mitigation is calibrated against experimental measurements. A comparative study is then performed to assess the impact of trench configurations and soil/pipe properties on TDA mitigation. Results indicate that TDA mitigation can generally increase the critical fault offset that a pipe can withstand by at least 20%, which is more effective than other conventional techniques, such as replacing native soils with loosely compacted soils, upgrading the pipe class, increasing the pipe wall thickness, and reducing the burial depth. Design implications of enlarging the trench and aligning the pipe at a fault-pipe crossing angle of 90° are recommended for improving the mitigation efficiency.
机译:可压缩材料可以回填到沟渠中,以减少断层交叉口埋地管道上的土壤约束。本文研究了使用轮胎衍生的骨料(TDA)作为回填材料缓解管道地震的潜力。针对实验测量结果,对具有沟槽缓解效果的管道基于连续体的三维有限元模型进行了校准。然后进行了一项比较研究,以评估沟槽构型和土壤/管道特性对TDA缓解的影响。结果表明,TDA缓解通常可以使管道可以承受的关键故障偏移至少增加20%,这比其他常规技术(例如用松散压实的土壤代替原生土壤,升级管道等级,增加管道)更有效。壁厚,减少埋葬深度。为了提高缓解效率,建议采用扩大沟槽并以90°的断层管交叉角对齐管道的设计含义。

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