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A novel tuned liquid wall damper for multi-hazard mitigation

机译:一种用于多种危害缓解的新型调谐式液体壁阻尼器

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摘要

A structural system consists of gravity and lateral load resisting components. Structural walls in the gravity system are typically designed to resist vertical loads only, and are assumed to be inactive to mitigate lateral loads. In this paper, we propose a novel multifunctional wall system, which is embedded with multiple-capillaries containing free-flowing fluids and can act as both a load carrying member and a Tuned Liquid Wall Damper (TLWD). Functioning similarly to a Tuned Liquid Column Damper (TLCD), the damping force of the proposed wall system is provided by the head loss of the fluid between each capillary. An analytical model is derived first to describe the dynamic behavior of the TLWD. The accuracy of the analytical model is verified using Computational Fluid Dynamics (CFD) simulations. The model is further used to compute the reduced response of an assumed primary structure attached with a TLWD to demonstrate the damping capability. Results show that TLWDs can effectively dissipate energy while occupying much less space in buildings compared to TLCDs.
机译:结构系统由重力和横向载荷抵抗组件组成。重力系统中的结构墙通常设计为仅承受垂直载荷,并且被假定为不活动以减轻侧向载荷。在本文中,我们提出了一种新颖的多功能壁系统,该系统嵌入了包含自由流动流体的多个毛细管,并且既可以充当承载构件,又可以充当可调节液体壁阻尼器(TLWD)。与调节液柱阻尼器(TLCD)的功能相似,建议的壁系统的阻尼力由每个毛细管之间的流体压头损失提供。首先导出一个分析模型来描述TLWD的动态行为。分析模型的准确性已使用计算流体动力学(CFD)仿真进行了验证。该模型还用于计算假定的主结构与TLWD相连时的减小的响应,以证明其阻尼能力。结果表明,与TLCD相比,TLWD可有效消散能量,同时在建筑物中占用的空间小得多。

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