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Seismic ground amplification by unlined tunnels subjected to vertically propagating SV and P waves using BEM

机译:使用BEM在垂直传播SV和P波的无衬砌隧道中进行地震地面放大

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Recent researches have revealed that the seismic ground response above tunnels can be different from the free-field motion during earthquakes. Nevertheless, to the best of the authors' knowledge, neither building codes nor seismic microzonation guidelines have yet considered this matter. In the present study, the seismic response of a linear elastic medium including a buried unlined tunnel subjected to vertically propagating incident SV and P waves are addressed. For analysis purposes, a numerical time-domain analysis is performed by utilizing a robust numerical algorithm working based on the boundary element method. It is observed that the amplification of the ground surface underlain by a tunnel is increased in long periods. The variation of the amplification factor and characteristic period of the medium versus the buried depth of the tunnel are depicted as the major results of this study. Some simple and useful relations are proposed for estimating the seismic microzonation of the areas underlain by tunnels. These relations can also be used for the preliminary seismic design of structures located on underground structures. (C) 2015 Elsevier Ltd. All rights reserved.
机译:最近的研究表明,隧道上方的地震地面响应可能不同于地震期间的自由场运动。然而,据作者所知,建筑法规和地震微区划准则都尚未考虑这一问题。在本研究中,解决了线性弹性介质的地震响应,该线性弹性介质包括承受垂直传播的SV波和P波的地下无衬砌隧道。出于分析目的,通过使用基于边界元方法的鲁棒数值算法来执行数值时域分析。可以观察到,隧道在地下的地表的放大作用会长期增加。介质的放大系数和特征周期随隧道埋深的变化是本研究的主要结果。提出了一些简单有用的关系来估算隧道下面的区域的地震微带。这些关系也可以用于地下结构上的结构的初步地震设计。 (C)2015 Elsevier Ltd.保留所有权利。

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