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Application of tuned liquid column ball damper (TLCBD) for improved vibration control performance of multi-storey structure

机译:调谐液柱球阻尼器(TLCBD)的应用改进多层结构的振动控制性能

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Tuned liquid column ball damper (TLCBD) is a passive control device used for controlling the building vibrations induced from wind or earthquakes. TLCBD is a modified form of conventional tuned liquid column damper (TLCD). This paper studies the effect of TLCBD on the four-storey steel frame structure. The performance of the TLCBD is also compared with conventional TLCD. The analytical model of both TLCD and TLCBD is presented here. The effectiveness of these analytical models is examined experimentally by series of shaking table tests under different excitation levels including harmonic loadings and seismic excitations. In TLCBD, the vibration is reduced significantly as compared to TLCD by using steel ball as a moving orifice. The difference in diameter of steel ball and tube, containing the liquid column, acts as an orifice which moves with the movement of the ball. This moving orifice phenomenon enhanced the vibration reduction effect by resisting the water motion in the TLCBD. Root mean square (RMS) and peak values of acceleration were calculated for each loading and each storey of uncontrolled and controlled structures. Comparison of the time histories of controlled and uncontrolled structures for different loadings is also reported. Results indicate that the TLCBD is more effective in the earthquake scenarios as compared to the harmonic excitations. The TLCBD controls the vibration of the primary structure significantly in vibration reduction.
机译:调谐液柱球阻尼器(TLCBD)是一种被动控制装置,用于控制风或地震所诱导的建筑振动。 TLCBD是一种修改形式的传统调谐液柱阻尼器(TLCD)。本文研究了TLCBD对四层钢框架结构的影响。与常规TLCD相比,TLCBD的性能也将与传统的TLCD进行比较。此处提出了TLCD和TLCBD的分析模型。通过在不同的激发水平下通过谐波载体和地震激发的不同激励水平进行一系列振动台测试,通过一系列振动台试验检查这些分析模型的有效性。在TLCBD中,与TLCD通过使用钢球作为移动孔的振动显着降低。含有液柱的钢球和管的直径差异起作用作为与球的运动一起移动的孔口。这种移动的孔口现象通过抵抗TLCBD中的水运动来增强减振效果。为每个负载和每个叠层计算加速度的均方根(RMS)和峰值值。还报道了不同载荷的控制和不受控制结构的时间历史的比较。结果表明,与谐波激发相比,TLCBD在地震场景中更有效。 TLCBD在减振中可显着控制初级结构的振动。

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