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Numerical Study of Reverse-Rotating Wave in the Hollow Rotating Detonation Engines

机译:空心旋转引擎中反向旋转波的数值研究

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This paper adopts the method of injection via an array of holes in three-dimensional numerical simulations of the rotating detonation engines (RDE) with hollow combustor using the premixed stoichiometric hydrogen-air mixture. The calculation is based on the Euler equations coupled with a one-step Arrhenius chemistry model. The array hole injection method is more practical than previous conventional simulations where ideal full area injection method is used. The wave structure of the flow field is composed of obverse-rotating waves (ORWs) propagating clockwise and reverse-rotating waves (RRWs) propagating counterclockwise. ORW is detonation wave (DW) near the outer solid wall while degenerate to shock wave (SW) near the nominally inner wall. This phenomenon is never found in the previse numerical studies.
机译:本文采用通过预混化学计量氢气混合物的空心燃烧器的三维数值模拟中的三维数值模拟中喷射阵列的喷射方法。使用预混合的化学计量氢气混合物,通过旋转爆炸发动机(RDE)。该计算基于耦合与单步Arhenius化学模型的欧拉方程。阵列空穴注入方法比以前的常规模拟更实用,其中使用理想的全面积注射方法。流场的波形结构由用于逆时针方向的顺时针和反向旋转波(RRW)的正旋转波(ORW)组成。 ORW是外立固体壁附近的爆炸波(DW),同时将标称内壁附近退化为冲击波(SW)。在预测数值研究中,从未发现过这种现象。

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