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Tuned viscous mass damper (TVMD) coupled wall system for enhancing seismic performance of high-rise buildings

机译:调谐粘性质量阻尼器(TVMD)耦合墙系统,用于提高高层建筑的地震性能

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This paper proposes an innovative coupled wall system, named the tuned viscous mass damper (TVMD) coupled wall system, for use in high-rise buildings. This novel wall system is expected to control both the lateral interstory drifts and the floor accelerations of high-rise buildings when subjected to strong ground motions, thus enhancing their seismic resilience. The TVMD consists of a component that provides stiffness connected in series with a ball screw device that can provide large inertial and damping forces, even when subjected to small deformations. In this system, TVMDs are arranged to connect adjacent wall piers in a zig-zag configuration. Such a strategic TVMD arrangement makes efficient use of the vertical relative displacements of the adjacent walls induced by their flexural deformation to generate the motions and forces of the TVMDs. Two methods are presented for the optimal design of this system, namely, a single-mode tuning method and a multi-mode tuning method. Dynamic response analysis is conducted on a representative 15-story TVMD coupled wall system. The results of the analysis indicate that the TVMDs designed by the single-mode tuning method not only suppress the dynamic responses of the tuning mode, but also provide additional damping for the lower-order modes of the primary structure. The multi-mode tuning method shows similar performance to the single-mode tuning method if the latter is used to tune the higher-order mode. Finally, real-time hybrid simulations were conducted to examine the seismic performance of the proposed system. The test results demonstrate the advantages of the TVMD coupled wall system and indicate that the detuning effect is slight for this system, even when subjected to strong ground motions.
机译:本文提出了一种创新的耦合墙系统,名为调谐粘性质量阻尼器(TVMD)耦合墙系统,用于高层建筑物。这种新颖的墙体系统预计在经受强大的地面运动时控制横向壁炉漂移和高层建筑的地板加速度,从而提高了抗震性弹性。 TVMD由一个组件组成,该组件提供刚性串联连接的滚珠螺杆装置,即使在受到小变形时也能提供大的惯性和阻尼力。在该系统中,TVMDS被安排在Zig-Zag配置中连接相邻的墙壁码头。这种战略TVMD布置可以有效地利用由其弯曲变形引起的相邻壁的垂直相对位移,以产生TVMDS的运动和力。提供了两种方法,用于该系统的最佳设计,即单模调谐方法和多模式调谐方法。动态响应分析是在代表性的15层TVMD耦合墙系统上进行的。分析结果表明,由单模调谐方法设计的TVMD不仅抑制了调谐模式的动态响应,还为主要结构的较低模式提供了额外的阻尼。如果后者用于调谐高阶模式,则多模式调谐方法显示与单模调谐方法类似的性能。最后,进行了实时混合模拟以检查所提出的系统的地震性能。测试结果表明了TVMD耦合墙系统的优点,并表明这种系统的静止效果显着,即使在受到强烈的地面运动时也是如此。

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