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Experimental modeling of segmental shallow tunnels in alluvial affected by normal faults

机译:正断层影响冲积断面浅埋隧道的试验模型

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摘要

Faulting is one type of permanent ground displacement and tunnels are at the risk of damage from faulting because of their long lengths. There are few studies that examine the behavior of tunnels intersecting the fault zones although it is of continuing concern for design engineers. Determining the failure mechanism provides critical information for the design of a tunnel, including its segmental lining. The present study conducted a series of centrifuge model tests on segmental tunnels subjected to normal faulting. The results indicated the absence of sudden failure of segmental tunnels under normal faulting and improvement of function in response to an increase in the overburden of the tunnel. The angle of the fault affected tunnel behavior. Despite large displacement faulting, structural damage to the segments was very low because of the adequate geometric functioning Of the segments and their joints. The length of the zone affected by faulting in the tunnel decreased as the overburden increased, but the severity of damage increased in response to localization of fault displacement. Sinkhole formation upon the collapse of soil into the tunnel is likely at the ground surface. Special attention must be paid to the effect of sinkholes on at ground structures in the vicinity of the tunnel. (C) 2015 Elsevier Ltd. All rights reserved.
机译:断层是永久性地面位移的一种,由于隧道的长度较长,因此有遭受断层损坏的风险。尽管设计工程师一直在关注与断层相交的隧道的行为,但很少有研究来研究这种行为。确定故障机制可为隧道的设计提供关键信息,包括分段衬砌。本研究对遭受正常断层的分段隧道进行了一系列离心模型试验。结果表明,在正常断层的情况下,分段隧道没有突然失效,并且响应于隧道覆盖层的增加,功能得到了改善。断层角度影响隧道行为。尽管有大量的位移断层,但是由于节段及其节理的适当的几何功能,节段的结构损伤非常小。随着上覆层的增加,隧道中受断层影响的区域的长度减小,但是破坏的严重性随着断层位移的局部化而增加。在土壤塌陷到隧道中时,可能在地面上形成污水坑。必须特别注意坑洞对隧道附近地面结构的影响。 (C)2015 Elsevier Ltd.保留所有权利。

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