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Buried flexible pipes behaviour in unreinforced and reinforced soils under cyclic loading

机译:循环荷载作用下非加筋土和加筋土中的埋入式挠性管性能

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In this research, large-scale fully instrumented laboratory tests were conducted to investigate the behaviour of flexible high-density polyethylene (HDPE) pipes, in unreinforced and geogrid-reinforced sand, subjected to incrementally increasing cyclic loading; for example, due to different vehicle capacities or load increase with passing time. Results illustrated that the deformation rate in the pipe and footing, the strain generation rate in the pipe and reinforcing layers are rapidly increased in the initial loading cycles, in particular during the first 300 cycles, and then the rate of change decreases significantly as more cycles are applied. In the unreinforced case, increasing the pipe burial depth significantly reduced the generated deformation and strain in the pipe; however, it has a situational effect on the footing settlement, where it increased after pipe burial depth to its diameter ratio (H/D) of 2.5. In reinforced cases, deformation and strain significantly reduced with the increase in pipe burial depth and number of reinforcing layers. Measurement of strain illustrated that strain generated in the lower reinforcing layer is always higher than that recorded in the upper one, regardless of pipe burial depth and value of applied load.
机译:在这项研究中,进行了大规模的仪器齐全的实验室测试,以研究柔性高密度聚乙烯(HDPE)管在未增强和土工格栅增强的沙子中承受递增循环载荷的行为。例如,由于车辆容量不同或负载随时间增加而增加。结果表明,在初始加载循环中,尤其是在最初的300个循环中,管和基础的变形率,管和增强层中的应变产生率迅速增加,然后随着循环次数的增加,变化率显着下降。被应用。在无钢筋的情况下,增加管埋深度可以显着减少管中产生的变形和应变。但是,它对立足点沉降有一定的影响,在管道埋入深度达到2.5的直径比(H / D)后,它会增加。在加固情况下,随着管道埋深和加固层数量的增加,变形和应变显着降低。应变的测量表明,在下加强层中产生的应变始终高于在上加强层中记录的应变,而与管道埋深和施加的载荷值无关。

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