Abstract Probabilistic analysis of wind-induced vibration mitigation of structures by fluid viscous dampers
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Probabilistic analysis of wind-induced vibration mitigation of structures by fluid viscous dampers

机译:液体粘液阻尼器风力诱导防振减轻结构的概率分析

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AbstractThe high-rise buildings usually suffer from excessively large wind-induced vibrations, and thus vibration control systems might be necessary. Fluid viscous dampers (FVDs) with nonlinear power law against velocity are widely employed. With the transition of design method from traditional frequency domain approaches to more refined direct time domain approaches, the difficulty of time integration of these systems occurs sometimes. In the present paper, firstly the underlying reason of the difficulty is revealed by identifying that the equations of motion of high-rise buildings installed with FVDs are sometimes stiff differential equations. Thus, an approach effective for stiff differential systems, i.e., the backward difference formula (BDF), is then introduced, and verified to be effective for the equation of motion of wind-induced vibration controlled systems. Comparative studies are performed among some methods, including the Newmark method, KR-alpha method, energy-based linearization method and the statistical linearization method. Based on the above results, a 20-story steel frame structure is taken as a practical example. Particularly, the randomness of structural parameters and of wind loading input is emphasized. The extreme values of the responses are examined, showing the effectiveness of the proposed approach, and also necessitating the refined probabilistic analysis in the design of wind-induced vibration mitigation systems.]]>
机译:<![cdata [ 抽象 高层建筑通常遭受过大的风力引起的振动,从而可能需要振动控制系统。广泛采用具有非线性电力法的流体粘性阻尼器(FVDS)。随着传统频率域的设计方法的转换,从传统的频域接近更精细的直接时间域方法,有时会发生这些系统的时间集成的难度。在本文中,首先,通过识别使用FVDS安装的高层建筑物的运动方程有时是硬差分方程,揭示了难度的基本原因。因此,然后引入了一种对硬差分系统的方法,即后向差分公式(BDF),并验证以对风力诱导的振动控制系统的运动方程有效。在一些方法中进行比较研究,包括纽马克方法,KR-α方法,基于能量的线性化方法和统计线性化方法。基于上述结果,采用20层钢框架结构作为实例。特别地,强调了结构参数和风装输入的随机性。检查响应的极端值,显示了所提出的方法的有效性,以及在风诱导的振动缓解系统设计中需要精细的概率分析。 ]]>

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