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Seismic Risk Mitigation of Historical Minarets Using SMA Wire Dampers

机译:使用SMA线阻尼器的历史尖塔的地震风险缓解

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This paper presents the results of a research program sponsored by the European Commission through project WIND-CHIME (Wide Range Non-INtrusive Devices toward Conservation of HIstorical Monuments in the MEditerranean Area), in which the possibility of using advanced seismic protection technologies to preserve historical monuments in the Mediterranean area is investigated. In the current research, two outstanding Egyptian Mamluk-Style minarets, are investigated. The first is the southern minaret of Al-Sultaniya (1340 A.D, 739 Hijri Date (H.D.)), the second is the minaret of Qusun minaret (1337 A.D, 736 H.D.), both located within the city of Cairo. Based on previous studies on the minarets by the authors, a seismic retrofit technique is proposed. The technique utilizes shape memory alloy (SMA) wires as dampers for the upper, more flexible, parts of the minarets in addition to vertical pre-stressing of the lower parts found to be prone to tensile cracking under ground excitation. The effectiveness of the proposed technique is numerically evaluated via nonlinear transient dynamic analyses. The results indicate the effectiveness of the technique in mitigating the seismic hazard, demonstrated by the effective reduction in stresses and in dynamic response.
机译:本文介绍了由欧洲委员会通过项目风铃(广泛的非侵入式设备在地中海地区历史古迹保护)赞助的研究计划的结果,其中使用先进地震保护技术以保护历史的可能性调查了地中海地区的纪念碑。在目前的研究中,调查了两个优秀的埃及Mamluk式尖塔。第一是Al-Sultaniya的南部尖塔(1340 A.D,739 Hijri约会(H.D.)),第二是Qusun Minaret的尖塔(1337 A.D,736 H.D.),位于开罗市内。根据先前的作者对尖塔的研究,提出了一种地震改造技术。除了在接地激发下易于拉伸裂解的垂直预应力之外,该技术可以利用形状记忆合金(SMA)导线作为上部,更柔韧,尖塔的尖端内部的耳廓,除了垂直的下部。通过非线性瞬态动态分析进行了数控评估所提出的技术的有效性。结果表明该技术在减轻地震危害方面的有效性,通过有效降低应力和动态响应来证明。

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