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Numerical Simulations of Canted Nozzle and Scarfed Nozzle Flow Fields

机译:倾斜喷嘴和围巾喷嘴流场的数值模拟

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Computational fluid dynamics (CFD) techniques are used for the analysis of issues concerning non-conventional (canted and scarfed) nozzle flow fields. Numerical simulations are carried out for the quality of flow in terms of axisymmetric nature at the inlet of canted nozzles of a rocket motor. Two different nozzle geometries are examined. The analysis of these simulation results shows that the flow field at the entry of the nozzles is non axisymmetric at the start of the motor. With time this asymmetry diminishes, also the flow becomes symmetric before the nozzle throat, indicating no misalignment of thrust vector with the nozzle axis. The qualitative flow fields at the inlet of the nozzles are used in selecting the geometry with lesser flow asymmetry. Further CFD methodology is used to analyse flow field of a scarfed nozzle for the evaluation of thrust developed and its direction. This work demonstrates the capability of the CFD based methods for the nozzle analysis problems which were earlier solved only approximately by making simplifying assumptions and semi empirical methods.
机译:计算流体动力学(CFD)技术用于分析关于非常规(倾斜和慌乱)喷嘴流场的问题。对火箭电机倾斜喷嘴入口处的轴对称性质的流动质量进行数值模拟。检查了两个不同的喷嘴几何形状。对这些模拟结果的分析表明,喷嘴的入口处的流场在电动机的开始处是非轴对称的。随着时间的推移,不对称减少,流动也在喷嘴喉部之前对称,表明没有喷嘴轴线的推力向量未对准。喷嘴入口处的定性流场用于选择具有较小流不对称的几何形状。进一步的CFD方法用于分析围巾喷嘴的流场,以评估推力发育及其方向。这项工作展示了基于CFD基于CFD方法的热量分析问题的能力,这些方法仅仅通过简化假设和半经验方法来解决。

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