对复合材料高压储氢罐结构可靠性分析的贡献

Youcef Sid Amer, Samir Benammar, Kong Fah Tee, Mohammed Wadi, Mohammed S. Jouda
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引用次数: 0

摘要

尽管复合高压储罐越来越受到人们的关注,特别是在储氢应用方面,但详细的结构可靠性分析仍然需要改进。本文旨在利用蒙特卡罗模拟方法对复合材料高压储氢罐的力学响应进行概率研究。采用基于复合材料压力缸周向模型的性能函数,随机设计变量为5个。结果表明,内压和螺旋层厚度是影响罐体结构可靠性的主要参数,而螺旋层厚度和缠绕角对罐体结构可靠性的影响较小。此外,变差系数值过高会导致安全裕度的收缩,从而可能导致复合氢高压罐的失效。所得结果与文献中可用的实验测试进行了验证
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A contribution to structural reliability analysis of composite high-pressure hydrogen storage tanks
Although composite high-pressure tanks are a subject of growing interest, especially for hydrogen storage applications, a detailed structural reliability analysis still needs to be improved. This work aims to provide a probabilistic investigation of the mechanical response of composite high-pressure hydrogen storage tanks using the Monte Carlo Simulation method. A performance function based on the circumferential model of composite pressure cylinders is employed with five random design variables. According to the results, the internal pressure and the helical layer thickness are the foremost parameters significantly impacting the structural reliability of the tank, whereas, the helical layer thickness and winding angles have a minor influence. In addition, high coefficients of variation values cause the contraction of the safety margin potentially leading to the failure of the composite hydrogen high-pressure tank. The obtained results were validated with experimental tests available in the literature
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