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首页> 外文期刊>The structural design of tall buildings >Hybrid simulation of a tall building with a double-decker tuned sloshing damper system under wind loads
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Hybrid simulation of a tall building with a double-decker tuned sloshing damper system under wind loads

机译:高层建筑用双层调谐晃动阻尼器系统的混合仿真

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摘要

This study presents an advanced experimental system, hardware-in-the-loop (HIL), recently referred to as hybrid testing, to validate the effectiveness of a double-decker tuned sloshing damper (TSD) system with screens applied to a recently constructed tall building. The HIL simulation facilitates a performance analysis of a combined structure-damper system in which the nonlinear behavior of liquid motion in a TSD is physically modeled, whereas a building system under wind loads that behaves linearly is embedded virtually utilizing a computer model. The scaled model of the TSD is composed of a computer-controlled system with a shaking table, sensors, and a real-time communication link. The virtual building system on the computer communicates in real time with the hardware, that is, the physical model of TSD to evaluate on-the-fly the performance of a combined building-TSD system. External excitation including random loading characteristics of winds, waves, or earthquakes can be implemented in HIL to observe the dynamics of the building-damper system under a host of loading scenarios. An example of a recently completed tall reinforced concrete building with multiple TSDs placed side by side in double-decker configuration under a suite of external loads and the proposed damping estimation procedure to evaluate the amount of auxiliary damping with TSD for ensuring the TSD design is presented. It examines the habitability of the building in winds and evaluates the effectiveness of the TSD system as well as the efficacy of the first HIL simulation for an actual tall building-TSD system equipped with screens inside.
机译:本研究介绍了一个先进的实验系统,最近被称为混合动力测试的循环(HIL),以验证双层调谐晃动阻尼器(TSD)系统的有效性,其中屏幕应用于最近构建的高层建造。 HIL模拟有助于对组合结构 - 阻尼系统的性能分析,其中TSD中的液体运动的非线性行为在物理上建模,而在风负载下的建筑系统实际上利用计算机模型嵌入。 TSD的缩放模型由具有振动台,传感器和实时通信链路的计算机控制系统组成。计算机上的虚拟构建系统实时与硬件进行通信,即TSD的物理模型,用于评估组合构建-TSD系统的性能。在HIL中可以实现包括风,波或地震的随机加载特性的外部励磁,以在一系列加载方案下观察建筑物阻尼系统的动态。最近完成的高钢筋混凝土建筑的一个例子,其具有在外部载荷套件下以双层配置并排放置的多个TSD,以及所提出的阻尼估计过程,以评估用TSD进行TSD的辅助阻尼量,以确保TSD设计。它探讨了大楼的居住性,并评估了TSD系统的有效性以及第一次HIL仿真的效果,用于内部配备有屏幕的实际高层建筑-TSD系统。

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