Vibration of Tensegrity Stucture by using SEM

B. Gan, S. Kiryu
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Abstract

A tensegrity structure is a structure which consists both of compressive and tensile elements without being restrained at the boundaries. The self-equilibrium state inside the tensegrity structure is the condition that builds the structure without any boundary condition necessity. The conventional Eigensystem solver cannot deal with this kind of structure since there are rigid body motions in the governing equations. The exact dynamic solution of tensegrity structure problems can only be obtained by using the frequency-dependent dynamic method. In this study, the free vibrational characteristics of a tensegrity structure which is modeled by a combination of the compressive strut and tensile cables elements are solved by using the Spectral Element Method (SEM). Natural frequencies of the tensegrity are tracked by using the Wittrick-Williams algorithm. Numerical calculations are given to show the effectiveness, efficiency, and accuracy of the SEM in solving the axially vibrating members of the tensegrity structures.
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用扫描电镜研究张拉整体结构的振动
张拉整体结构是由压缩单元和拉伸单元组成的结构,在边界处不受约束。张拉整体结构内部的自平衡状态是构建该结构的条件,无需任何边界条件。由于控制方程中存在刚体运动,传统的特征系统求解器无法处理这类结构。张拉整体结构问题的精确动力解只能采用频率相关动力方法。本文采用谱元法(SEM)求解了由压缩杆单元和拉伸索单元组成的张拉整体结构的自由振动特性。使用Wittrick-Williams算法跟踪张拉整体的固有频率。数值计算表明了扫描电镜在求解张拉整体结构轴向振动构件时的有效性、高效性和准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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