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Simulations of a Variable Friction Device for Multihazard Mitigation

机译:用于多灾种缓解的可变摩擦装置的仿真

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摘要

This paper investigates the performance of a novel semiactive damping device at mitigating nonsimultaneous multihazard loads. The device, termed modified friction device (MFD), has been previously proposed by the authors. It consists of a variable friction system based on automotive drum brake technology. The device has been demonstrated in a laboratory environment, and its dynamic behavior has been modeled. This model is used to conduct numerical simulations on two representative structures, one short building located in Japan and the other tall building located in Boston, MA. Simulated hazards include wind, blast, and seismic loads. Various control cases are considered, including semiactive control under five different sets of control weights, and passive viscous and passive friction to benchmark performance. Results show that the semiactive control cases outperforms all of the other cases for the vast majority of hazards and performance indices, provided that the right control weights are utilized.
机译:本文研究了新型半主动减震装置在减轻非同步多危险载荷下的性能。作者先前已经提出了一种称为改进摩擦装置(MFD)的装置。它由基于汽车鼓式制动技术的可变摩擦系统组成。该设备已在实验室环境中进行了演示,其动态行为已建模。该模型用于对两种代表性结构进行数值模拟,一种结构位于日本的短建筑物,另一种结构位于马萨诸塞州的波士顿。模拟的危害包括风,爆炸和地震负荷。考虑了各种控制情况,包括在五组不同的控制权重下的半主动控制,以及基准性能的被动粘性和被动摩擦。结果表明,如果使用正确的控制权重,那么对于绝大多数危害和性能指标而言,半主动控制案例要优于所有其他案例。

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