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On the Role of Geogrid Reinforcement in Reducing Earth Pressure on Buried Pipes: Experimental and Numerical Investigations

机译:土工格栅在降低地下管道中土压力中的作用:实验和数值研究

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摘要

Understanding the distribution of earth pressure on buried structures is essential for the analysis and design of pipes, tunnels and vertical shafts. This paper presents the results of an experimental investigation that has been conducted to measure the distribution of contact pressure on rigid pipes using tactile sensing technology. The method allows for a continuous pressure profile to be measured around the pipes using flexible sheets that can follow the cylindrical shape of the pipes. The physical model involves a buried pipe installed in granular material subjected to strip surface loading. The effect of introducing a geogrid reinforcetnent layer above the pipe on the distribution of contact pressure is also examined. To further study the distribution of pressure on the buried structure and the soil-geogrid interaction, numerical analyses are performed using a multi-scale finite-discrete element framework that allows for both the explicit modeling of soil particles using discrete elements and the modeling of the embedded structure using finite elements. The numerical framework is first validated using the experimental results and then used to investigate the detailed behavior of the soil-pipe system. (C) 2015 The Japanese Geotechnical Society. Production and hosting by Elsevier B.V. All rights reserved
机译:了解地下结构上土压力的分布对于管道,隧道和竖井的分析和设计至关重要。本文介绍了一项实验研究的结果,该研究已经进行了测量,以使用触觉传感技术测量刚性管上的接触压力分布。该方法允许使用可遵循管的圆柱形形状的柔性板来测量管周围的连续压力分布。物理模型涉及安装在承受条形表面载荷的粒状材料中的地下管道。还研究了在管道上方引入土工格栅增强层对接触压力分布的影响。为了进一步研究埋藏结构上的压力分布和土-土-格里格里德相互作用,使用多尺度有限离散元框架进行了数值分析,该框架既可以使用离散元对土壤颗粒进行显式建模,又可以对土壤颗粒进行建模。使用有限元的嵌入式结构。首先使用实验结果验证了数值框架,然后用于研究土壤-管道系统的详细行为。 (C)2015年日本岩土学会。 Elsevier B.V.的制作和托管保留所有权利

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