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Numerical and experimental investigations of the sloshing modal properties of sloped-bottom tuned liquid dampers for structural vibration control

机译:用于结构振动控制的斜底调谐液体阻尼器晃荡模态特性的数值和实验研究

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摘要

Tuned liquid dampers (TLDs) utilize the liquid sloshing to damp vibrations of civil and mechanical structures. Rectangular tank with flat-bottom has been widely used for passive structural control. A recent experimental study, on the other hand, indicates that a TLD with sloped bottom achieves better performance than its flatbottom counterpart, considering the improved vibration mitigation and reduced liquid mass. This work investigates the sloshing modal properties (sloshing frequencies and sloshing mode shapes) of sloped-bottom TLD using finite difference method, which is validated by full-scale tests. It is observed that the sloshing mode shapes are quite different comparing the shallow-water sloped-bottom TLD with the deep-water one. To further reveal the influence of damper geometries on the sloshing modal properties of the sloped-bottom TLD, three different geometrical parameters have been considered for parametric study, e.g. the mean water level of the liquid, the slope angle, and the ratio between the horizontal projection length of the slope and the total bottom length. It is found that the sloshing eigenfrequencies increase as the mean water level increases, as the slope angle decreases and as the length ratio increases. The eigenfrequencies vary with damper geometries in a nonlinear manner, and the results from flat-bottom TLD always act as upper limit of those from sloped-bottom TLD. The developed numerical model in the present study can be used for tuning and preliminary design of structural-mounted sloped-bottom TLDs.
机译:调谐液体阻尼器(TLD)利用液体晃动来阻尼民用和机械结构的振动。平底矩形水箱已被广泛用于被动结构控制。另一方面,最近的一项实验研究表明,考虑到改善的减震效果和减少的液体质量,具有倾斜底部的TLD的性能要优于平底的TLD。这项工作使用有限差分方法研究了倾斜底部TLD的晃荡模态特性(晃荡频率和晃荡模式形状),该方法已通过全面测试得到了验证。可以看到,与浅水倾斜底TLD和深水倾斜底TLD相比,晃荡模式形状有很大不同。为了进一步揭示阻尼器几何形状对倾斜底部TLD的晃动模态特性的影响,已考虑了三种不同的几何参数进行参数研究,例如:液体的平均水位,倾斜角度以及倾斜的水平投影长度与底部总长度之比。可以发现,随着平均水位的增加,倾斜角的减小和长度比的增加,晃动特征频率也随之增加。本征频率以非线性方式随阻尼器的几何形状而变化,平底TLD的结果始终是斜底TLD的结果的上限。在本研究中开发的数值模型可以用于结构化倾斜底TLD的调试和初步设计。

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