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Mixing augmentation of transverse hydrogen jet by injection of micro air jets in supersonic crossflow

机译:通过在超声速横流中注入微型空气射流来混合增加横向氢射流

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摘要

In this study, the influences of the micro air jet on the mixing of the sonic transverse hydrogen through micro jets subjected to a supersonic crossflow are investigated. A three-dimensional numerical study has been performed to reveal the affects of micro air jet on mixing of the hydrogen jet in a Mach 4.0 crossflow with a global equivalence ratio of 0.5. Parametric studies were conducted on the various air jet conditions by using the Reynolds-averaged Navier Stokes equations with Menter's Shear Stress Transport (SST) turbulence model. Complex jet interactions were found in the downstream region with a variety of flow features depending upon the angle of micro air jet. These flow features were found to have subtle effects on the mixing of hydrogen jets. Results indicate a different flow structure as air jet is presented in the downstream of the fuel jet. According to the results, without air, mixing occurs at a low rate. When the air jet is presented in the downstream of fuel jet, significant increase (up to 300%) occurs in the mixing performance of the hydrogen jet at downstream. In multi fuel jets, the mixing performance of the fuel jet is increased more than 200% when the micro air jet is injected. Consequently, an enhanced mixing zone occurs downstream of the injection slots which leads to flame-holding.
机译:在这项研究中,研究了微空气射流对通过超声速横流的微射流对声波横向氢混合的影响。进行了三维数值研究,揭示了微型空气射流对氢当量在4.0马赫错流中的总当量比为0.5的混合的影响。使用雷诺平均的Navier Stokes方程和Menter的剪切应力传递(SST)湍流模型,对各种空气喷射条件进行了参数研究。在下游区域发现了复杂的射流相互作用,这取决于微型空气射流的角度,具有各种流动特征。发现这些流动特征对氢射流的混合具有微妙的影响。结果表明,在燃料射流的下游出现空气射流时,流动结构有所不同。根据结果​​,在没有空气的情况下,混合速度低。当空气射流出现在燃料射流的下游时,氢射流在下游的混合性能会显着提高(最高300%)。在多燃料喷嘴中,当喷射微型空气喷嘴时,燃料喷嘴的混合性能提高了200%以上。因此,在喷射槽的下游出现了增强的混合区域,这导致了火焰的保持。

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