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Introduction of the convex friction system (CFS) for seismic isolation

机译:推出用于地震隔离的凸摩擦系统(CFS)

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This work introduces an innovative seismic isolation system named the convex friction system (CFS). This newly introduced isolation system has a sliding concavity with a circular cone-type surface, and exhibits some distinct features compared to conventional isolation techniques, such as increased uplift stability, improved self-centring capacity, and resonance dodge when subjected to near-fault earthquakes. A series of comprehensive analytical and numerical investigations are performed to verify these features of the CFS. First, the force-displacement relation of the CFS is established to describe the underlying philosophy of the system. The analytical model is then incorporated into numerical simulations to evaluate the seismic isolation performance of the CFS. Various ground accelerations, such as near-fault shakings, are included in these numerical calculations. Furthermore, the numerical results are rigorously investigated to illustrate the feasibility of the CFS. Finally, the limitations of the CFS study are discussed, and conclusions are drawn. The analytical and numerical results show that the CFS performs well in seismic isolation applications. The structural response can be reduced by approximately 30% with the CFS when compared to that with the Curved Surface Slider (CSS) with a spherical-surface concavity for some near-fault earthquakes, which verifies the aforementioned advantages of the CFS. Copyright (C) 2016 John Wiley & Sons, Ltd.
机译:这项工作介绍了一种创新的隔震系统,称为凸摩擦系统(CFS)。这种新推出的隔离系统具有带有圆锥形表面的滑动凹面,并且与传统的隔离技术相比具有一些独特的功能,例如,在发生近断层地震时,具有更高的提升稳定性,更强的自动定心能力和回避共振能力。进行了一系列全面的分析和数值研究,以验证CFS的这些功能。首先,建立CFS的力-位移关系来描述系统的基本原理。然后将分析模型合并到数值模拟中,以评估CFS的隔震性能。这些数值计算中包括各种地面加速度,例如近断层振动。此外,对数值结果进行了严格的研究,以说明CFS的可行性。最后,讨论了CFS研究的局限性并得出结论。分析和数值结果表明,CFS在隔震应用中表现良好。与具有球形凹面的曲面滑动器(CSS)相比,对于某些近断层地震,CFS的结构响应可以减少大约30%,这证明了CFS的上述优势。版权所有(C)2016 John Wiley&Sons,Ltd.

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