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Thrust Restraint of Buried Continuous Pressure Pipe Considering Pipe-Soil Interaction

机译:考虑管土相互作用的埋地连续压力管的推力限制

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Design and analysis of thrust restraint for a buried continuous pressure pipe is essentially a pipe-soil interaction (PSI) problem regardless of pipe materials and restraint methods. In practice, thrust block and restrained joints are the most commonly used restraint methods, and dual restraint systems using both methods can be found in many pipeline projects even though they are treated independently. However, no analytical procedure is available to analyze the performance of such dual restraint systems. Therefore, a closed-form linear-elastic solution considering PSI is proposed to analyze pipes restrained with both thrust blocks and restrained joints or continuous pipes restrained with thrust blocks. The solution also considers the contribution of friction resistance due to increased normal pressure at the pipe-soil interface, as the pipe moves laterally into and longitudinally through soils simultaneously. The solution can be easily implemented by hand-calculation or a spreadsheet for various pipe material, geometry, and soil stiffness. The example provided demonstrates that the current guideline procedure overestimates the restraint length and underestimates the axial force slightly because the frictional resistance from lateral pipe movement is neglected. A comprehensive parametric study has been conducted to illustrate the effects of different design parameters on the internal forces, displacements, and restraint length of pipes. It is found that soil stiffness is the most critical parameter in resisting thrust force.
机译:埋地压力管的推力限制的设计和分析基本上是一种管道 - 土壤相互作用(PSI)问题,无论管道材料和约束方法如何。在实践中,推力块和受限制的关节是最常用的克制方法,即使它们被独立治疗,可以在许多管道项目中找到使用两种方法的双约束系统。但是,没有分析程序可以分析这种双克制系统的性能。因此,提出了考虑PSI的闭合线性弹性溶液,分析用止推块和限制带有推力块抑制的接头或连续管道的管道。该解决方案还认为由于管道界面上的常规压力增加,摩擦阻的贡献,因为管道同时通过土壤横向和纵向地移动。可以通过手动计算或用于各种管材,几何形状和土壤刚度的电子表格来容易地实现解决方案。所提供的示例表明,当前指南程序高估限制长度并略微低估轴向力,因为横向管道运动的摩擦阻力被忽略。已经进行了综合的参数研究,以说明不同设计参数对管道的内部力,位移和横幅长度的影响。发现土壤刚度是抵抗推力的最关键参数。

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