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Control performance of liquid column Vibration absorbers

机译:液柱减振器的控制性能

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This paper reports the study of the control performance and effec- tiveness of a new type of passive device--liquid column vibration absorber (LCVA). The LCVA, which allows the column cross-section to be non-uniform, is a variation of the tuned liquid column damper (TLCD). The LCVA provides great versatility and architectural adap- tability, since its natural frequency is determined not only by the length of the liquid column, but also the geometric configuration. In this study, an unsteady and non-uniform flow equation for the LCVA is derived based on the Lagrange equation. It is assumed that the liquid flow is uniform in the horizontal and the vertical columns, respectively. The optimal head loss coefficient for the LCVA is derived explicitly under the condition that the LCVA's fre- quency is tuned to that of the structure. The control effectiveness of the LVCA is numerically analyzed and compared to that of the TLCD and the tuned mass damper (TMD). It is found that if properly designed the LCVA can be as effective as or even more effective than the TLCD.
机译:本文报告了对新型无源设备-液柱减振器(LCVA)的控制性能和效率的研究。允许色谱柱横截面不均匀的LCVA是调谐液柱阻尼器(TLCD)的变体。 LCVA具有很好的通用性和结构适应性,因为它的固有频率不仅取决于液柱的长度,而且还取决于几何构型。在这项研究中,基于拉格朗日方程推导了LCVA的非恒定非均匀流动方程。假定液体在水平和垂直列中分别是均匀的。在LCVA的频率调整到结构的频率的条件下,可以明确得出LCVA的最佳压头损失系数。对LVCA的控制效果进行了数值分析,并与TLCD和调谐质量阻尼器(TMD)进行了比较。已经发现,如果设计合理,则LCVA可以与TLCD一样有效,甚至更有效。

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