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INITIAL STRESS CORRECTION METHOD FOR THE MODELING OF FOLDED SPACE INFLATABLE STRUCTURES

机译:折叠空间充气结构建模的初始应力修正方法

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摘要

Initial errors and mesh distortions are inevitable in the modelling of folded space inflatable structures. Aimed at this key technical problem, an initial stress correction method based on finite element theory is proposed in this paper. First, initial stress is calculated through the difference of mapping and reference configurations, the former with initial errors and the later without. Then the initial stress is imposed on the mapping configuration to correct initial errors. Through the correction, the accuracy of the inflation deployment numerical calculation is greatly improved. In order to validate the reliability of this correction method, a typical space inflatable structure-inflatable tube is studied as an example. First of all, the finite element models of both Z-folded and rolled tubes are established with the initial stress correction method. Then the inflation deployment numerical calculations of the folded tubes are carried out applying the segmented inflatable control volume method. Through comparative analysis of the calculation results with and without a correction, the method proposed in this paper is proved to be feasible and accurate. The correction method is a complement to the modelling of folded space inflatable structures and it has a great significance for the improvement of the accuracy of the inflation deployment numerical calculations of space inflatable structures.
机译:在折叠空间充气结构的建模中,不可避免会出现初始误差和网格变形。针对这一关键技术问题,提出了一种基于有限元理论的初始应力修正方法。首先,通过映射和参考配置的差异计算初始应力,前者具有初始误差,而后者则没有。然后,将初始应力施加于映射配置以更正初始错误。通过修正,大大提高了通货膨胀展开数值计算的准确性。为了验证该校正方法的可靠性,以典型的空间充气结构充气管为例进行了研究。首先,采用初始应力校正方法建立了Z型折叠管和轧制管的有限元模型。然后采用分段充气控制体积法对折叠管进行充气展开数值计算。通过对有无修正的计算结果进行比较分析,证明了本文提出的方法是可行和准确的。该校正方法是对折叠式空间充气结构建模的补充,对于提高空间充气结构充气展开数值计算的精度具有重要意义。

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