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Numerical Study on the Mixing Characteristics of Chevron Mixer for the Afterburner

机译:雪佛龙加力器混合特性的数值研究

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To improve the performance of the afterburner of the turbofan engine, an innovative type of mixer, the chevron mixer, was arranged to enhance the mixing between the core flow and bypass flow. Based on three-dimension CFD for the chevron mixer, the effects of chevron mixer geometry parameters on the mixing performance are revealed. The velocity vector of the flow field shows that chevron could induce counter-rotating streamwise vortices, which can enhance entrainment of two-flow remarkably. The temperature profile of flow located downstream of mixer was more uniform than that of confluent mixer. It means that the ignition temperature increase for afterburner with chevron mixer. With the increase of penetration angle of tabs, the thermal mixing efficiency is improved, but the pressure loss coefficient is enhanced slightly. For a fixed penetration angle, with the increase of number of tabs, the thermal mixing efficiency is decreased by 5%~15%. The distribution of tabs has significant effect on the mixing characteristics. The structure of tabs with tilted inward and outward alternately is of benefit to form stronger streamwise vortices, and its intensity is more than 2 times than that with tabs tilted inward or outward only. These computational results could be used to optimize the mixer structure in the further research.
机译:为了提高涡轮风扇发动机的加力燃烧器的性能,安排了一种创新类型的混合器,人字形混合器,以增强堆芯流和旁通流之间的混合。基于人字形混合器的三维CFD,揭示了人字形混合器几何参数对混合性能的影响。流场的速度矢量表明,人字形可以引起逆流向旋涡,从而可以显着增强两流的夹带。位于混合器下游的流的温度分布比融合混合器的流的温度分布更均匀。这意味着使用人字形混合器的加力燃烧器的点火温度升高。随着翼片穿透角的增加,热混合效率提高,但压力损失系数略有提高。对于固定的穿透角,随着接片数量的增加,热混合效率降低5%〜15%。接片的分布对混合特性有重要影响。交替向内和向外倾斜的翼片的结构有利于形成更强的流向涡流,其强度比仅向内或向外倾斜的翼片的强度高2倍以上。这些计算结果可用于进一步研究中优化混频器结构。

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