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NUMERICAL STUDIES ON THE MIXING OF CH4 AND KEROSENE INJECTED INTO A SUPERSONIC FLOW WITH H2 PILOT INJECTION

机译:H2先导注入超音速流中CH4与煤油混合的数值研究

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摘要

Two-fluid model and divisional computation techniques were used. The multi species gas fully N- S equations were solved by upwind TVD scheme. Liquid phase equations were solved by NND scheme. The phases-interaction ODE equations were solved by 2 nd Runge-Kutta approach. The favorable agreement is obtained between computational results and PLIF experimental results of iodized air injected into a supersonic flow. Then, the numerical studies were carried out on the mixing of CH4 and kerosene injected into a supersonic flow with H2 pilot injection. The results indicate that the penetration of kerosene approaches maximum when it is injected from the second injector. But the kerosene is less diffused compared with the gas fuels. The free droplet region appears in the flow field. The mixing mechanism of CH4 with H2 pilot injection is different from that of kerosene. In the staged duct, H2 can be entrained into both recirculation zones produced by the step and injectors. But CH4 can only be carried into the recirculation between the injectors.Therefore, initiations of H2 and CH4 can occur in those regions. The staged duct is better in enhancing mixing and initiation with H2 pilot flame.
机译:使用了双流体模型和除法计算技术。通过迎风TVD格式求解了多种气体完全NS方程。通过NND方案求解液相方程。通过第二种Runge-Kutta方法求解了相相互作用的ODE方程。计算结果与注入超音速流的加碘空气的PLIF实验结果之间获得了良好的一致性。然后,对H4先导注入的超音速流中注入的CH4和煤油的混合进行了数值研究。结果表明,当煤油从第二个注入器注入时,其渗透率接近最大值。但是与气体燃料相比,煤油的扩散较少。自由液滴区域出现在流场中。 CH4与H2先导注入的混合机理与煤油不同。在分阶段的管道中,H2可以被夹带到由阶梯和喷射器产生的两个回流区域中。但是CH4只能带入喷射器之间的再循环中,因此H2和CH4的引发可能发生在这些区域。分级风管在增强与H2引燃火焰的混合和引发方面更好。

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