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Head Shape and Winding Angle Optimization of Composite Pressure Vessels Based on a Multi-level Strategy

机译:基于多层次策略的复合压力容器头部形状和缠绕角优化

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摘要

This paper presents a multi-level strategy for the optimization of composite pressure vessels with nonmetallic liners. The design variables for composite vessels include the head shape, the winding angle, the layer thickness, the number of layers, and the stacking sequence. A parameter called "modified shape factor" is introduced as an objective function. This parameter takes into account the effects of the internal pressure and volume, the vessel weight, and the composite material properties. The proposed algorithm uses genetic algorithm and finite element analysis to optimize the design parameters. As a few examples, this procedure is implemented on geodesic and ellipsoidal heads. The results show that for the given vessel conditions, the geodesic head shape with helical winding angle of nine degrees has the better performance.
机译:本文提出了一种优化非金属衬里复合压力容器的多级策略。复合容器的设计变量包括封头形状,缠绕角度,层厚,层数和堆叠顺序。引入称为“修改形状因子”的参数作为目标函数。该参数考虑了内部压力和体积,容器重量以及复合材料特性的影响。该算法利用遗传算法和有限元分析来优化设计参数。作为一些示例,此过程在测地线和椭球头上执行。结果表明,在给定的容器条件下,螺旋缠绕角为9度的测地线头形状具有更好的性能。

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