首页> 外文会议>ASME Pressure Vessels amp;amp;amp; Piping Conference >MITIGATION OF ROCKING AND SLIDING MOTION OF A FREE-STANDING STRUCTURE SUBJECTED TO BASE EXCITATION USING COAXIAL CIRCULAR CYLINDERS CONTAINING HIGHLY VISCOUS LIQUID IN ANNULAR SPACES
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MITIGATION OF ROCKING AND SLIDING MOTION OF A FREE-STANDING STRUCTURE SUBJECTED TO BASE EXCITATION USING COAXIAL CIRCULAR CYLINDERS CONTAINING HIGHLY VISCOUS LIQUID IN ANNULAR SPACES

机译:使用高粘性液体在环形空间中的同轴圆柱体对基础激发进行自由静态结构的摇摆和滑动运动

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In this study, the effectiveness of coaxial circular cylinders containing a highly viscous liquid in annular spaces for reduction of rocking motion of a free-standing structure is investigated both analytically and experimentally. First, an analytical model of coupled rocking and sliding motions of a free-standing structure, including the coaxial circular cylinders, subjected to seismic input was derived. The free-standing structure was modeled as a free-standing rigid body. The cylinders were attached to the bottom of the rigid body as a damping device. We then experimentally derived the friction coefficients, inertia moments, and a damping coefficient in the rotating direction. Furthermore, using these parameters, the effectiveness of this system in suppressing the rocking motion is investigated analytically. The proposed method was determined to be very effective in suppressing the rocking motion of a rigid body subjected to a seismic input by the experiment.
机译:在这项研究中,在分析和实验上,研究了在环形空间中包含高粘度液体的同轴圆柱体的有效性,用于减少独立结构的摇摆运动。首先,推导出防立式结构的耦合摇摆和滑动动作的分析模型,包括对抗震输入进行地震输入的同轴圆柱体。独立结构被建模为独立刚体。作为阻尼装置,汽缸附着在刚体的底部。然后,我们通过实验衍生摩擦系数,惯性矩和旋转方向的阻尼系数。此外,使用这些参数,分析地研究了该系统在抑制摇摆运动时的有效性。确定该方法是非常有效地抑制经过实验进行地震输入的刚体的摇摆运动。

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