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Computational Investigation of Thermal Nonequilibrium Effects in Scramjet Geometries

机译:超燃冲压几何中热非平衡效应的计算研究

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摘要

To characterize the impact of thermal nonequilibrium in shock-induced combustion scramjets, several thermal equilibrium and nonequilibrium computational fluid dynamics simulations have been performed. Specifically, the effects that would be encountered in shock-tunnel testing are of interest. Therefore, thermal equilibrium and nonequilibrium simulations are run for a Mach 6 shock-tunnel nozzle and a radical farming scramjet model with total enthalpies between 3.3 and 4.9 MJ/kg. Simulating both the nozzle and scramjet with thermal nonequilibrium represents the shock-tunnel test, whereas equilibrium inflow into a scramjet simulated in thermal nonequilibrium provides the scenario encountered in actual flight. For all nonequilibrium simulations, the Landau-Teller model in combination with modified Millikan and White thermal relaxation coefficients is used. It is shown that modeling the entire flow as being in thermal equilibrium results in higher effective temperatures within the local high-temperature regions where ignition occurs, which causes the ignition length to decrease and thus the combustion process to be more efficient compared with the nonequilibrium cases. Additionally, the conditions for ignition in simulations representing shock-tunnel experiments are found to be more favorable than in the simulations representing a flight test, assuming the same enthalpy and boundary conditions. Furthermore, these differences are found to be insensitive to the total enthalpy.
机译:为了表征热非平衡在冲击诱导燃烧超燃冲压发动机中的影响,已经进行了一些热平衡和非平衡计算流体动力学模拟。特别地,在冲击隧道测试中会遇到的影响是令人感兴趣的。因此,对总转速在3.3至4.9 MJ / kg之间的Mach 6冲击隧道喷嘴和激进农业超燃冲压发动机模型进行了热平衡和非平衡模拟。用热非平衡模拟喷嘴和超燃冲压发动机代表了冲击隧道试验,而在热非平衡模拟的超燃冲压发动机中的平衡流入提供了实际飞行中遇到的情况。对于所有非平衡模拟,均使用Landau-Teller模型与修正的Millikan和White热弛豫系数相结合。结果表明,将整个流模拟为处于热平衡状态会导致发生点火的局部高温区域内的有效温度更高,这导致点火长度减少,因此与非平衡情况相比,燃烧过程更加有效。另外,假设相同的焓和边界条件,表示冲击隧道实验的模拟中的点火条件比表示飞行试验的模拟中的点火条件更有利。此外,发现这些差异对总焓不敏感。

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  • 来源
    《Journal of propulsion and power》 |2013年第3期|648-660|共13页
  • 作者单位

    University of Queensland, Brisbane, Queensland 4072, Australia;

    University of Queensland, Brisbane, Queensland 4072, Australia;

    University of Queensland, Brisbane, Queensland 4072, Australia;

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  • 正文语种 eng
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