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Model Tests of Earth Pressure on Buried Rigid Pipes and Flexible Pipes underneath Expanded Polystyrene (EPS)

机译:埋藏刚性管的地球压力模型试验和膨胀聚苯乙烯下的柔性管(EPS)

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To obtain the optimal load-reduction scheme and calculation method of earth pressure on the crown of the pipe, the load-reduction efficiency of rigid pipe and flexible pipe with different thicknesses and layers of expanded polystyrene (EPS) is investigated by model tests, and the law of load reduction is obtained by analyzing the earth pressure and the displacements of the filling around the pipe. The test results show that the earth pressure is obviously reduced with EPS laying on the crown of pipe, and the load-reduction efficiency is increased to be constant with increasing of EPS thickness. In the case that the summation thickness of EPS is constant, the load-reduction efficiency of EPS with two layers spread on the pipe is higher than that of one layer only. Compared with the rigid pipe, the load-reducing effect of flexible pipe is more significant. Based on the data obtained from the model tests, the nonlinear earth pressure calculation formula obtained from regression analysis is adopted, and the results from it are compared with the existing formula consequences of the earth pressure on the buried pipe. The results show that the earth pressure calculated by nonlinear earth pressure theory is on the brink of that tested in the field. The research results can provide references for selection of load-reduction measures and calculation of earth pressure on the crown of the pipe.
机译:为了获得管冠的最佳负载减速方案和地球压力的计算方法,通过模型试验研究了刚性管和具有不同厚度和膨胀聚苯乙烯层(EPS)的柔性管的负载降低效率,通过分析管道周围的填充物的容量来获得负载率。试验结果表明,随着铺设在管道上的EPS,接地压力明显减少,随着EPS厚度的增加,负载降低效率增加为恒定。在EPS的求和厚度是恒定的情况下,具有两层在管道上铺展的EPS的负载降低效率高于一层。与刚性管相比,柔性管的负荷降低效果更为显着。基于从模型试验获得的数据,采用从回归分析获得的非线性地球压力计算公式,并将其与埋地管上的土压的现有后果进行比较。结果表明,由非线性地球压力理论计算的地球压力是在该领域测试的边缘。研究结果可以提供对管道冠部的负载减少措施和地球压力计算的参考。

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