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Thermal-structural dynamic analysis of a satellite antenna with the cable-network and hoop-truss supports

机译:带有电缆网络和环形桁架支撑的卫星天线的热结构动力学分析

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Thermally induced structural disturbances of the flexible appendages on a satellite usually occur during eclipse transitions. As a large-scale space structure consists of rod members, cyclic thermal shock induced vibrations such as the divergent thermal flutter may be crucial for its functional serving. In this article, the motivation is to estimate the dynamical behaviors of the AstroMesh antenna under solar flux shock. For this purpose, we developed a numerical approach for the thermal-structural coupling analysis of tensegrity structures considering the pre-stressed state after the form-finding process. The Euler-Bernoulli beam theory, the pre-stressed bar model, and the Fourier thermal element are employed in conjunction with the special consideration on the effect of structural deformations on absorbing solar flux. It is found that, unlike the single boom structure, thermal deformations of the AstroMesh antenna are mainly caused by the temperature variation along rod axis-direction, rather than the temperature gradient on rod cross-section. Besides, the phenomenon of thermally induced vibrations can hardly happen in the AstroMesh antenna.
机译:卫星上的柔性附件的热诱发结构扰动通常发生在日食过渡期间。由于大型空间结构由杆构件组成,因此周期性的热冲击引起的振动(例如发散的热颤振)对其功能起着至关重要的作用。本文的目的是估计AstroMesh天线在太阳通量冲击下的动力学行为。为此,我们考虑到找形过程后的预应力状态,为张力结构的热-结构耦合分析开发了一种数值方法。结合了结构变形对吸收太阳光通量的影响,结合使用了Euler-Bernoulli梁理论,预应力钢筋模型和傅里叶热敏元件。结果发现,与单臂结构不同,AstroMesh天线的热变形主要是由沿杆轴向的温度变化引起的,而不是由杆横截面上的温度梯度引起的。此外,在AstroMesh天线中几乎不会发生热引起的振动现象。

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