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Aseismic Roof Isolation System Built with Steel Oval Elements: Exploratory Study

机译:钢制椭圆形构件制成的抗震屋顶隔离系统:探索性研究

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Presented herein are the details of and results from an experimental study conducted to assess the feasibility and effectiveness of a proposed roof isolation system whose purpose is to reduce earthquake damage in buildings. The proposed isolation system entails the detachment of a building's roof from the rest of the building through the insertion of sliding bearings and the attachment of oval-shaped steel elements between the building's roof and the structure below. The objective is to form a simple resonant oscillator with a building's roof and these oval elements, with the roof providing the mass of the oscillator and the oval elements its spring and damper. An additional intention is to make the steel oval elements undergo a large number of inelastic deformation cycles and dissipate, as a result, a large portion of the energy transmitted to a building during an earthquake. The study involves the testing of a small steel frame on a shaking table alternatively with and without the proposed roof isolation system and a comparison of the story drifts and floor accelerations attained in each case. In the conducted tests, the suggested isolation technique effectively reduces the seismic response of the frame. It is concluded, thus, that the proposed roof isolation system has the potential for the development of an inexpensive and effective way to reduce earthquake damage in some buildings and merits further study.
机译:本文介绍的是为评估拟议的屋顶隔离系统的可行性和有效性而进行的实验研究的细节和结果,该系统的目的是减少建筑物的地震破坏。提议的隔离系统需要通过插入滑动轴承以及在建筑物的屋顶和下面的结构之间安装椭圆形的钢元件,将建筑物的屋顶与建筑物的其余部分分离。目的是形成具有建筑物的屋顶和这些椭圆形元件的简单谐振振荡器,其中屋顶提供了振荡器的质量,而椭圆形元件提供了弹簧和阻尼器。另一个目的是使椭圆形钢制元件经历大量的非弹性变形循环并消散在地震过程中传递到建筑物的大部分能量。这项研究包括在有或没有建议的屋顶隔离系统的情况下,在振动台上测试小型钢架,并比较每种情况下的楼层漂移和地面加速度。在进行的测试中,建议的隔离技术有效地降低了框架的地震响应。因此,可以得出结论,所提出的屋顶隔离系统具有开发一种廉价而有效的方式来减少某些建筑物中地震破坏的潜力,值得进一步研究。

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