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Pore water pressure model for sands reinforced with randomly distributed fibers based on cyclic triaxial tests

机译:基于循环三轴试验的随机分布式纤维加固砂岩孔水压模型

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摘要

In this study, the pore water pressure accumulation laws in sand reinforced with randomly distributed fibers was investigated through cyclic triaxial compression tests. The effects of relative density, cyclic stress ratio, fiber content, and fiber length were examined. The test results showed that reinforcing the sand with randomly distributed fibers effectively delayed the pore water pressure accumulation and significantly increased liquefaction resistance. When the test conditions remained unchanged, the pore water pressure accumulation rate of the fiber-reinforced sand decreased as the fiber length and fiber content increased, and reached the lowest when fiber content reached 0.6% and fiber length attained 12 mm. Whereas, the accumulation rate of fiber-reinforced sand increased as the cyclic stress ratio increased, and reached the highest when relative density reached 30%, followed by 50% and 70%. Based on the test results, a three-parameter pore water pressure model that accounts for the effects of fiber content, fiber length, relative density, cyclic stress ratio, and sand particle diameter was established, and a method for estimating the parameters a and b was recommended. The predictions agreed relatively well with the test results, suggesting that the model is applicable to analysis the pore water pressure development laws in fiber-reinforced sands.
机译:在这项研究中,通过循环三轴压缩试验研究了随机分布式纤维增强的孔水压累积法。检查了相对密度,环状应力比,纤维含量和纤维长度的影响。试验结果表明,随机分布纤维加强砂孔延迟孔隙水压积累,显着提高了液化抗性。当试验条件保持不变时,纤维长度和纤维含量增加的纤维增强砂的孔隙水压累积速率增加,并且当纤维含量达到0.6%而达到12mm的纤维长度达到最低。然而,随着循环应力比增加,纤维增强砂的累积速率增加,当相对密度达到30%时,最高达到最高,其次为50%和70%。基于测试结果,建立了一种三参数孔隙水压力模型,其占纤维含量,纤维长度,相对密度,循环应力比和砂粒径和砂粒径的影响,以及用于估计参数A和B的方法建议。预测与测试结果相比商定了相对较好,这表明该模型适用于分析纤维增强砂中的孔隙水压力开发规律。

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