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Parametric study on mixing augmentation mechanism induced by air injection in a shock-induced combustion ramjet engine

机译:冲击诱导燃烧冲压发动机中空气注入引起的混合增强机理的参数研究

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The fuel-air mixing process plays an important role in the shock-induced combustion ramjet (shcramjet) engine. In the current study, the investigation of front fuel jet and rear air jet is provided in order to study the mixing effect induced by the air jet and reveal the mixing augmentation mechanism and formation of several recirculation zones. Some parameters are also provided to evaluate the flow field properties quantitatively, namely the mixing efficiency, the total pressure recovery coefficient, the fuel penetration depth and the mixing length. The obtained results predicted by the three-dimensional Reynolds-average Navier-Stokes (RANS) equations coupled with the two equation shear stress transport (SST) k-omega turbulence model show that the additional air jet is really beneficial for accelerating the mixing process and improving the mixing efficiency. The shear vortex and air injected are the key sources for the mixing enhancement mechanism of the dual injection strategy. The formations of recirculation zones midstream and downstream are provided as well. The midstream recirculation zone "R-2" is related to both front fuel jet and rear air jet, and "R-3" is related to the air jet only. The downstream recirculation zone1 is composed by flows from the fuel jet and the air jet, and the downstream recirculation zone2 is formed by hydrogen flows. (C) 2019 Elsevier Ltd. All rights reserved.
机译:燃油-空气混合过程在冲击诱导燃烧冲压发动机(shcramjet)发动机中起着重要作用。在当前的研究中,提供了对前燃料喷射和后空气喷射的研究,以便研究由空气喷射引起的混合效果,并揭示混合增强机理和几个再循环区域的形成。还提供了一些参数以定量地评估流场特性,即混合效率,总压力恢复系数,燃料渗透深度和混合长度。三维雷诺平均Navier-Stokes(RANS)方程与两个方程的切应力传递(SST)k-omega湍流模型相结合所预测的结果表明,额外的空气射流确实有助于加速混合过程,并且提高混合效率。剪切涡和注入的空气是双重注入策略的混合增强机制的关键来源。还提供了上游和下游的再循环区的构造。中流再循环区“ R-2”既与前燃料喷嘴又与后空气喷嘴有关,而“ R-3”仅与空气喷嘴有关。下游再循环区1由来自燃料喷嘴和空气射流的流组成,而下游再循环区2由氢气流形成。 (C)2019 Elsevier Ltd.保留所有权利。

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