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Internal Ballistic Code for Solid Rocket Motors using Minimum Distance Function for Grain Burnback

机译:固体火箭发动机的内部弹道代码,使用最小距离函数进行晶粒回火

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A computer code has been developed for internal ballistic performance evaluation of solid rocket motors, using minimum distance function (MDF) approach for prediction of geometry evolution. This method can handle any complex geometry without the need to define different geometrical shapes and their evolution as used in several existing analytical geometry evolution-based methodologies. The code is validated with both experimental results published in literature, as well as for solid rocket motors of tactical and strategic missiles and a very good match is obtained with static test results. The output of the code gives p-t (pressure-time) curve as well as the detailed parameters of the flow along the axial direction, and geometries in the form of mesh file, which can be further used as input to codes for CFD analysis. Defence Science Journal, Vol. 65, No. 3, May 2015, pp.181-188, DOI: http://dx.doi.org/10.14429/dsj.65.8304
机译:已经开发了一种计算机代码,用于使用最小距离函数(MDF)方法预测几何形状演变,从而对固体火箭发动机的内部弹道性能进行评估。这种方法可以处理任何复杂的几何形状,而无需定义几种几何形状及其演化,就像在几种现有的基于分析几何演化的方法中所使用的那样。该代码已通过文献中公布的实验结果以及战术和战略导弹的固体火箭发动机进行了验证,并且与静态测试结果非常匹配。代码的输出给出了p-t(压力-时间)曲线以及沿轴向的详细流动参数,以及网格文件形式的几何形状,可以进一步用作CFD分析代码的输入。国防科学学报,第65,No.3,2015年5月,第181-188页,DOI:http://dx.doi.org/10.14429/dsj.65.8304

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