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Numerical simulation of structure response outfitted with a tuned liquid damper

机译:装有可调液体阻尼器的结构响应的数值模拟

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An integrated fluid-structure numerical model has been developed to simulate the response of a single degree of freedom (SDOF) structure outfitted with a Tuned Liquid Damper (TLD). The structure is exposed to random external excitations. A non-linear, two-dimensional, flow model has been developed using the finite-difference method. Unlike most existing flow models, the present model does not include any linearization assumptions; it rather solves the entire nonlinear, moving boundary, flow problem under conditions leading to large interfacial deformations. The free surface has been reconstructed using the volume of fluid method and the donor-acceptor algorithm. The Duhamel integral method has been used to determine the response of the structure. The effectiveness and accuracy of the flow model has been validated using a set of benchmark problems and experimental data. The numerical results of this model have been compared with results of an equivalent TMD model. The present fluid-structure model can be used as a valuable tool for performance evaluation and design of more effective tuned liquid dampers.
机译:已经开发出集成的流体结构数值模型来模拟配备了可调液体阻尼器(TLD)的单自由度(SDOF)结构的响应。该结构暴露于随机外部激发。已使用有限差分法开发了非线性二维流动模型。与大多数现有的流量模型不同,本模型不包含任何线性化假设。相反,它解决了导致较大界面变形的条件下的整个非线性,运动边界,流动问题。使用流体体积方法和施主-受主算法重建了自由表面。 Duhamel积分法已用于确定结构的响应。流动模型的有效性和准确性已使用一组基准问题和实验数据进行了验证。该模型的数值结果已与等效TMD模型的结果进行了比较。本流体结构模型可以用作有价值的工具,用于性能评估和设计更有效的调谐液体阻尼器。

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