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Numerical Investigation and Design of Reinforced Concrete Shear Wall Equipped with Tuned Liquid Multiple Columns Dampers

机译:钢筋混凝土剪力墙配备调谐液体多柱阻尼器的数值调查与设计

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摘要

The tuned liquid multiple column damper (TLMCD) is a variation of the tuned liquid column damper (TLCD) that includes multiple vertical columns. A new damping system that embeds TLMCDs within reinforced concrete shear wall systems, termed tuned liquid wall damper (TLWD), is proposed, augmenting the traditional structural component with energy dissipation capabilities. The objective of this study is to assess energy mitigation and strength trade-offs in designing TLWDs and demonstrating the promise of TLWD systems in tall buildings through vertically distributed applications. This is done by investigating the performance of the proposed TLWD through the finite element model (FEM) of a simplified representation of a 42-story building equipped with the multifunctional component. A strength model for the TLWD is developed to empower faster performance evaluation on more complex models. Results from the FEM are used to validate the strength model and show that the model could be used conservatively in assessing strength performance. Design considerations are discussed based on the simplified representation. In particular, to improve mitigation performance while maintaining strength, it is found that a single-layer arrangement of the vertical columns is preferred, while distributing the inertia among a higher number of smaller columns. The proposed TLWD is numerically evaluated on a more realistic system consisting of a multi-degrees-of-freedom representation of the 42-story building under stochastic wind excitation. Simulation results demonstrate that the TLWD, used in a vertically distributed configuration through the building, could be used to mitigate vibrations, outperforming a traditional TLCD system with geometric constraints under 20 design wind realization. Results from the numerical simulations also confirmed the design considerations established through the simplified representation.
机译:调谐液体多列阻尼器(TLMCD)是调谐液柱阻尼器(TLCD)的变型,包括多个垂直列。提出了一种新的阻尼系统,将TLMCD嵌入钢筋混凝土剪力系统中,被称为调谐液体阻尼器(TLWD),增强了传统的结构部件,具有能量耗散能力。本研究的目的是评估设计TLWDS的能量缓解和强度权衡,并通过垂直分布的应用来展示高层建筑中TLWD系统的承诺。这是通过配备有所述多官能组分的42层建筑物的简化表示的有限元模型(FEM)调查提出TLWD的性能来完成。 TLWD的强度模型是开发的,以赋予更复杂的模型更快的性能评估。 FEM的结果用于验证强度模型,并表明该模型可以保守用于评估强度性能。基于简化的表示讨论了设计考虑因素。特别地,为了提高缓解性能而保持强度,结果发现垂直柱的单层布置是优选的,同时在较高数量的较小柱之间分配惯性。所提出的TLWD在数量上评估了一个更现实的系统,包括在随机风励磁下的42层建筑的多程度自由度。仿真结果表明,在通过建筑物的垂直分布配置中使用的TLWD可用于减轻振动,优于20多物质的传统TLCD系统,在20个设计风中实现。数值模拟的结果还确认了通过简化代表建立的设计考虑因素。

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