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首页> 外文期刊>International journal of aerospace engineering >Solid Rocket Motor Design Using Hybrid Optimization
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Solid Rocket Motor Design Using Hybrid Optimization

机译:基于混合优化的固体火箭发动机设计

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A particle swarm/pattern search hybrid optimizer was used to drive a solid rocket motor modeling code to an optimal solution. The solid motor code models tapered motor geometries using analytical burn back methods by slicing the grain into thin sections along the axial direction. Grains with circular perforated stars, wagon wheels, and dog bones can be considered and multiple tapered sections can be constructed. The hybrid approach to optimization is capable of exploring large areas of the solution space through particle swarming, but is also able to climb “hills” of optimality through gradient based pattern searching. A preliminary method for designing tapered internal geometry as well as tapered outer mold-line geometry is presented. A total of four optimization cases were performed. The first two case studies examines designing motors to match a given regressive-progressive-regressive burn profile. The third case study studies designing a neutrally burning right circular perforated grain (utilizing inner and external geometry tapering). The final case study studies designing a linearly regressive burning profile for right circular perforated (tapered) grains.
机译:粒子群/模式搜索混合优化器用于将固体火箭发动机建模代码驱动到最佳解决方案。固体电动机代码使用解析回烧法通过沿轴向将晶粒切成薄片来模拟锥形电动机的几何形状。可以考虑使用带有圆形穿孔星,马车车轮和狗骨头的谷物,并且可以构造多个锥形部分。混合的优化方法能够通过粒子群探索解决方案空间的大面积区域,但也能够通过基于梯度的模式搜索来攀登最优性的“丘陵”。提出了一种设计锥形内部几何形状以及锥形外部模具线几何形状的初步方法。总共执行了四个优化案例。前两个案例研究检查了设计电动机以匹配给定的渐进渐进燃烧曲线。第三个案例研究设计了一种中性燃烧的直圆形穿孔谷物(利用内部和外部几何形状逐渐变细)。最后的案例研究研究为右圆形穿孔(锥形)晶粒设计线性回归燃烧轮廓。

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