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Numerical Simulation of Pulse Detonation Engine Phenomena

机译:脉冲爆震发动机现象的数值模拟

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This computational study examines transient, reactive compressible flow phenomena associated with the pulse detonation wave engine. The PDWE is an intermittent combustion engine that relies on unsteady detonation wave propagation for combustion and compression elements of the propulsive cycle. The present computations focus on high order numerical simulations of the generic PDWE configuration with simplified reaction kinetics, so that rapid, straightforward estimates of engine performance may be made. Both one- and two-dimensional simulations of the high speed reactive flow phenomena are performed and compared to determine the applicability of 1D simulations for performance characterization. Examination of the effects of the combustion reaction mechanism and the use of a pressure relaxation length for 1D simulations is made. Characteristic engine performance parameters, in addition to engine noise estimates within and external to the detonation tube, are presented.
机译:这项计算研究检查了与脉冲爆震波发动机相关的瞬态,反应性可压缩流动现象。 PDWE是一种间歇式内燃机,它依靠非稳定爆震波传播来推动推进循环的燃烧和压缩元件。当前的计算集中在具有简化的反应动力学的通用PDWE配置的高阶数值模拟上,因此可以对发动机性能进行快速,直接的估算。进行了高速反应性流动现象的一维和二维仿真,并进行了比较,以确定一维仿真对性能表征的适用性。检验了燃烧反应机理的影响以及在一维模拟中压力松弛长度的使用。除了引爆管内部和外部的发动机噪声估计值外,还提供了发动机特性参数。

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