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首页> 外文期刊>Applied composite materials >Dome Shape Optimization of Composite Pressure Vessels Based on Rational B-Spline Curve and Genetic Algorithm
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Dome Shape Optimization of Composite Pressure Vessels Based on Rational B-Spline Curve and Genetic Algorithm

机译:基于有理B样条曲线和遗传算法的复合压力容器圆顶形优化

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This paper presents an algorithm for shape optimization of composite pressure vessels head. The shape factor which is defined as the ratio of internal volume to weight of the vessel is used as an objective function. Design constrains consist of the geometrical limitations, winding conditions, and Tsai-Wu failure criterion. The geometry of dome shape is defined by a B-spline rational curve. By altering the weights of control points, depth of dome, and winding angle, the dome shape is changed. The proposed algorithm uses genetic algorithm and finite element analysis to optimize the design parameters. The algorithm is applied on a CNG pressure vessel and the results show that the proposed algorithm can efficiently define the optimal dome shape. This algorithm is general and can be used for general shape optimization.
机译:本文提出了一种用于复合压力容器头部形状优化的算法。定义为容器内部容积与重量之比的形状因数用作目标函数。设计约束包括几何限制,绕组条件和蔡-伍破坏准则。圆顶形的几何形状由B样条有理曲线定义。通过更改控制点的权重,圆顶的深度和缠绕角度,可以更改圆顶的形状。该算法利用遗传算法和有限元分析来优化设计参数。该算法在CNG压力容器上的应用表明,该算法可以有效地定义最优的圆顶形状。此算法是通用算法,可用于通用形状优化。

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