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Mitigation of surface impact loading effects on the underground structures with geofoam barrier: Centrifuge modeling

机译:用土工泡沫材料减轻地下结构对地下结构的影响:离心机模型

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Studying the effect of dynamic loads on underground structures and applying mitigation strategies to reduce these effects are important for the safe design of these structures. In this paper, the effect of dynamic loading on an underground structure and the performance of geofoam as a barrier were investigated using centrifuge tests. Impact loading, created by blasting, was used as an example of dynamic loads. Two sets of centrifuge experiments were performed to study different mitigation systems. The first set of the experiments included two tests, one without a barrier and the other with a vertical geofoam barrier installed between the impact source and the underground structure. The second set of the experiments included the following three tests: a test with no barrier between the impact source and the underground structure; a test where a horizontal geofoam barrier existed near the source of the impact load; and another test where a horizontal geofoam barrier existed near the underground structure. The results of the tests confirmed the effectiveness of the geofoam barrier against dynamic loading effects and indicated that the barrier effect was more prominent when it was installed near the structure. This study also provided a better understanding about the effect of impact loading on underground structures and mitigation effects.
机译:研究动态荷载对地下结构的影响并应用缓解策略来减少这些影响对于这些结构的安全设计非常重要。本文通过离心试验研究了动态荷载对地下结构的影响以及土工泡沫材料作为屏障的性能。通过爆破产生的冲击载荷被用作动态载荷的示例。进行了两组离心机实验以研究不同的缓解系统。第一组实验包括两项测试,一项没有障碍,另一项在冲击源和地下结构之间安装了垂直的土工泡沫屏障。第二组实验包括以下三个测试:冲击源与地下结构之间没有障碍物的测试;在冲击载荷源附近存在水平土工泡沫屏障的测试;另一项测试是在地下结构附近存在水平土工泡沫屏障。测试结果证实了土工泡沫屏障对动态荷载作用的有效性,并表明当将屏障泡沫安装在结构附近时,该屏障作用更加突出。这项研究还更好地了解了冲击载荷对地下结构的影响和缓解效果。

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