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Bimodal vibration control of seismically excited structures by the liquid column vibration absorber

机译:液柱减振器控制地震激励结构的双峰振动

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The possibility of controlling two modes of structural vibration due to earthquake excitation by considering the sloshing action in the vertical limbs of the liquid column vibration absorber (LCVA) has been explored in this paper. The structure has been modeled as a linear, viscously damped multi-degree-of-freedom (m.d.f.) system. The governing differential equations of motion for the damper liquid and for the coupled structure-LCVA system have been derived from dynamic equilibrium. The nonlinear orifice damping in the LCVA has been linearized by a stochastic equivalent linearization technique. A displacement transfer function formulation for the structure-LCVA system has been presented. The study has been carried out on a 2-d.f. example structure for which both the modes have significant contribution to the total response. The performance of the LCVA has been evaluated in the frequency domain with the base input characterized by a white noise power spectral density function and through a simulation study by subjecting the example structure-LCVA system to a recorded accelerogram. The results are compared with that of the liquid column damper and indicate superior performance of the LCVA. Furthermore, an LCVA has been designed for the example structure.
机译:本文探讨了通过考虑液柱减振器(LCVA)的垂直肢体中的晃动作用来控制地震引起的两种结构振动的可能性。该结构已建模为线性,粘性阻尼的多自由度(m.d.f.)系统。阻尼液和耦合结构-LCVA系统的控制运动微分方程已从动态平衡中得出。 LCVA中的非线性节流孔阻尼已通过随机等效线性化技术进行了线性化。提出了结构LCVA系统的位移传递函数公式。该研究是在2-d.f。两种模式都对总响应有重大贡献的示例结构。 LCVA的性能已经在频域中进行了评估,其基本输入具有白噪声功率谱密度函数的特征,并且通过对示例结构-LCVA系统进行了记录的加速度计的仿真研究进行了评估。将结果与液柱阻尼器的结果进行比较,表明LCVA具有出色的性能。此外,已经为示例结构设计了LCVA。

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