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Experimental study on seismic response of underground tunnel-soil-surface structure interaction system

机译:地下隧道-土-地表结构相互作用系统地震响应的试验研究

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摘要

More and more projects of underground structures undercrossing adjacent surface structures have emerged in recent years. The existence of underground structure influences the propagation of seismic wave, and the inertia effect of the surface structure affects both the seismic response of surrounding site and that of underground structures. Thus, the underground structure and near surface structure can be deem as an interaction system. In this paper, in order to investigate the law of seismic response of underground structure-soil-surface structure interaction system, a shaking table model test was designed and implemented. Based on the experimental results, the law of seismic response of such complex system was analyzed. Note that to overcome the limitation of the bearing capacity of shaking table and eliminate the distortion of soil-structure rigidity ratio, the sawdust soil was chosen to model the surrounding site soil. Test results showed that using sawdust soil as a model soil is feasible. Regarding the law of seismic response of interaction system, it was found that the existence of the tunnel structure has weakened the rigidity of the whole model, and therefore, the seismic response of surrounding soil was amplified. However, it was observed that the existence of the tunnel impeded the propagation of seismic wave to some extent and thus reduced the seismic response of the surface structure, especially for lower and medium floors. The existence of surface structure suppressed the seismic response of soil and underground structures. By comparing the test results under different earthquake excitations, it was shown that the seismic response of the system was affected by the type of seismic wave significantly.
机译:近年来,越来越多的地下结构穿越相邻地表结构的项目。地下结构的存在会影响地震波的传播,地表结构的惯性效应会影响周围场地和地下结构的地震响应。因此,地下结构和近地表结构可以被认为是一种相互作用系统。为了研究地下结构-土-地表结构相互作用系统的地震反应规律,设计并实现了振动台模型试验。根据实验结果,分析了这种复杂系统的地震响应规律。注意,为克服振动台承载力的限制并消除土-结构刚度比的变形,选择了锯末土来模拟周围的场地土。试验结果表明,以锯末土壤为模型土壤是可行的。关于相互作用系统的地震反应规律,发现隧道结构的存在削弱了整个模型的刚度,因此,放大了周围土体的地震反应。然而,据观察,隧道的存在在一定程度上阻碍了地震波的传播,从而降低了地表结构的地震响应,特别是对于中低层的地面。表面结构的存在抑制了土壤和地下结构的地震响应。通过比较不同地震激励下的测试结果,表明系统的地震响应受到地震波类型的显着影响。

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