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首页> 外文期刊>Latin American Journal of Solids and Structures >Numerical Study of the Circumferential Fuses Used in Steel Repairable Buildings with Seesaw Motion
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Numerical Study of the Circumferential Fuses Used in Steel Repairable Buildings with Seesaw Motion

机译:跷跷板钢质可修复建筑周向保险丝的数值研究

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Abstract Structural fuses and rocking system are used in order to reduce the building response to earthquakes and damage guidance. In the proposed seesaw motion system, which is similar to the rocking system, the building columns, in top of the foundation, have been removed and a central support and structural fuses are used around the building instead of them. The main purpose of creating this system is that the structural components remain elastic during the earthquake and nonlinear deformations occur in circumferential structural fuses it means that, it is possible to replace damaged fuses after the earthquake and exploit the building in a short time and at a lower cost than the construction cost of the whole building. In this research, the specification of a kind of structural fuse have been investigated and its application in the building with a seesaw system is studied under the influence of the near-field earthquake. After reviewing the fuses, it was observed that, the maximum absolute acceleration of roof and the base shear are significantly reduced in this system; however, the relative drift of floors in some buildings has increased but is lower than the permitted limit.
机译:摘要为了减少建筑物对地震的反应和破坏指导,使用了结构性的保险丝和摇摆系统。在拟议的跷跷板运动系统中,该系统类似于摇摆系统,已移除了位于基础顶部的建筑物柱,并在建筑物周围使用了中央支撑和结构性保险丝来代替它们。创建该系统的主要目的是使结构组件在地震期间保持弹性,并且周向结构熔断器发生非线性变形,这意味着可以在地震后更换损坏的熔断器并在短时间内和短时间内利用建筑物。比整个建筑物的建造成本低。在这项研究中,研究了一种结构熔断器的规格,并研究了在近场地震的影响下该结构熔断器在带有跷跷板系统的建筑物中的应用。在检查了保险丝之后,观察到,在该系统中,车顶的最大绝对加速度和基础剪力显着降低。但是,某些建筑物中地板的相对漂移有所增加,但低于允许的极限。

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