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Performance modeling of pulse detonation engines using the method of characteristics

机译:使用特征方法的脉冲爆震发动机性能建模

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A quasi-one-dimensional method of characteristics (MOC) model is developed to evaluate the single cycle gasdynamic flow field and associated propulsive performance of a fully- and partially-filled pulse detonation engine (PDE), and PDEs equipped with diverging nozzles. A detailed description of the PDE thrust chamber flow field is provided to highlight the dominant gasdynamic wave processes encountered in a general single-cycle operation. The MOC model is developed using a simplified unit process approach with an explicit inverse time marching algorithm in order to readily construct the complex thrust chamber flow field along a predefined grid. A grid dependency study is carried out to determine the appropriate grid resolution for the purposes of minimizing computational expense and maximizing numerical accuracy. Lastly, the MOC model is validated with existing numerical and experimental performance data for PDEs operating with oxyhydrogen and hydrocarbon mixtures in both atmospheric and sub-atmospheric environments. It is shown that the current MOC model has good agreement with existing numerical and experimental data for a variety of PDE configurations and operating conditions. (C) 2019 Elsevier Masson SAS. All rights reserved.
机译:开发了一种准一维特征方法(MOC)模型,以评估单循环气体动力流场以及部分填充的脉冲爆震发动机(PDE)以及配备有发散喷嘴的PDE的相关推进性能。提供了PDE推力室流场的详细说明,以突出显示一般单周期运行中遇到的主要气体动力学波过程。 MOC模型是使用简化的单元处理方法和显式的逆时行进算法开发的,以便于沿预定的网格轻松构建复杂的推力室流场。为了最大程度地减少计算开销和最大化数值精度,进行了网格依赖性研究以确定合适的网格分辨率。最后,MOC模型通过现有的数值和实验性能数据进行了验证,该数据用于在大气和低于大气压的环境中使用氢和碳氢化合物混合物的PDE。结果表明,对于各种PDE配置和操作条件,当前的MOC模型与现有的数值和实验数据具有良好的一致性。 (C)2019 Elsevier Masson SAS。版权所有。

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