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Response of buried pipelines to repeated shaking in liquefiable soils through model tests

机译:通过模型试验对诸如液化土反复摇晃的埋地管响应

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摘要

Liquefaction hazard induced by seismic events might affect the stability of buried pipelines, with permanent displacements of the embedded structure as a consequence. In this context, the pipe uplift is of main concern, as already widely discussed in the literature. In this paper, further insights to assess the phenomenon and the related effects on pipelines are provided based on the results of shaking table tests on pipes of different apparent unit weight. A multiple shaking sequence is adopted on each model. Among others, data here reported confirms that, with liquefaction occurrence, upward displacement is expected for a pipe with an apparent unit weight smaller or equal to the unit weight of the sand deposit; the opposite for larger apparent unit weight. The pipe vertical displacement is initiated with the first earthquake that in sequence induces liquefaction extensively in the soil deposit. The uplift rate is higher for this shaking, and then it reduces for the next earthquakes even for bigger shaking amplitude. The onset of uplift varies for successive earthquakes depending on the magnitude of the input motion, the relative density and the weight of the structure. A transient horizontal movement of the transversal cross section of the pipe, due to the earthquake loading inducing liquefaction in the soil deposit, can be significant and induce pipe damages.
机译:地震事件诱导的液化危害可能影响埋地管道的稳定性,因此嵌入式结构的永久性位移。在这种情况下,管道隆起是主要关注的,如在文献中广泛讨论的那样。在本文中,提供了评估现象和管道上的相关效果的进一步见解是基于摇动台测试的不同表观单位重量的结果。在每个模型上采用多种摇动序列。其中,这里的数据报告说,在液化发生的情况下,预期向上的位移,表观单位重量小或等于砂矿床的单位重量;对于更大的表观单位重量相反。用第一地震开始管道垂直位移,即序列在土壤沉积物中广泛诱导液化。这种摇动升高速率较高,然后即使对于更大的摇动幅度,它即使对于下一个地震而降低。隆起的发作根据输入运动的大小,相对密度和结构的重量而变化。管道横向横截面的瞬态水平运动,由于地震载荷在土壤沉积物中诱导液化,可能是显着的并且诱导管道损坏。

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