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Optimization Design for Contour of Pintle Nozzle in Solid Rocket Motor Based on Response Surface Method

机译:基于响应面法的固体火箭电机叉喷嘴轮廓优化设计

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In aim to gain the capability of providing variable thrust, the technology of an axial pintle inserted into the nozzle of the solid rocket motor had been used. As the pintle inserted into the nozzle, the loss of specific impulse will increase. In order to reduce the loss of fluid dynamics of the pintle nozzle, considering the interaction of the nozzle contour and the pintle contour, CFD method combined with the response surface method is used to optimize the contour of the pintle nozzle. The central composite design is used to introduce a design point;;the Kriging algorithm is used to generate the response surface;;and the Nonlinear Programming by Quadratic Lagrangian is used for optimization. After the optimization, the loss of fluid dynamics can be reduced significantly. To study the influence of the key parameters to the loss of specific impulse, the key parameters are optimized independently in this paper. It indicates that the main factor of the loss of specific impulse is the parameters of the nozzle. To reduce the computational consumption, the process of optimization has been improved. And the result shows that when optimizing a pintle nozzle, the nozzle part and the pintle part can be optimized separately. The method that bases on the response surface not only takes into account of the interactive effects of the shape parameters, but also works with less calculation. Additionally it maintains the high accuracy and reliability. It can be used to select the optimal shape parameters of the pintle nozzle quickly, which has certain engineering application value.
机译:旨在获得提供可变推力的能力,使用了插入固体火箭电动机喷嘴的轴向轴的技术。当插入喷嘴中的缝隙时,特定脉冲的损失将增加。为了减小轴针式喷嘴的流体动力学的损失,考虑到喷嘴轮廓的相互作用和销轮廓,CFD方法与响应面法结合使用,以优化轴针式喷嘴的轮廓。中央复合设计用于引入设计点;; Kriging算法用于生成响应面;和二次拉格朗日的非线性编程用于优化。优化后,可以显着降低流体动力学的损失。为研究关键参数对特定脉冲丢失的影响,在本文中独立优化关键参数。它表明,特定脉冲损失的主要因素是喷嘴的参数。为了降低计算消耗,优化过程已经提高。并且结果表明,当优化针脚喷嘴时,可以单独优化喷嘴部分和缝隙部分。基于响应表面的方法不仅考虑了形状参数的交互式效果,而且还使用较少的计算。此外,它保持高精度和可靠性。它可用于快速选择Pintle喷嘴的最佳形状参数,具有某些工程应用值。

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