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首页> 外文期刊>Journal of propulsion and power >Supersonic Combustion Using a Stinger-Shaped Fuel Injector
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Supersonic Combustion Using a Stinger-Shaped Fuel Injector

机译:使用毒刺形喷油器进行超音速燃烧

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The authors developed a stinger-shaped injector (stinger injector) for supersonic combustors in cold-flow experiments. The stinger injector has a port geometry with a sharp leading edge in front of a streamwise slit This injector produced higher jet penetration at a lower jet-to-crossflow momentum flux ratio J than a conventional circular injector. We applied the injector in a Mach 2.44 combustion test at a stagnation temperature of 2060 K. At a low fuel-equivalence ratio Φ regime (i.e., low J regime), the injector produced 10% higher pressure thrust than the circular injector because of high jet penetration as expected from the cold-flow experiments. Even at a moderate Φ regime, the stinger injector produced higher pressure thrust than the circular injector. At moderate Φ, the stinger injector held the flame around the injector and generated a precombustion shock wave in front of the injector. The presence of the precombustion shock wave decreased the momentum flux of the crossflow air and diminished the advantage of the injector for jet penetration. The injector, however, produced higher pressure thrust because better flame-holding produced higher pressure around the injector. At a higher Φ regime, the precombustion shock wave went upstream with both injectors. The far-upstream presence of a precombustion shock wave increased the turbulence in the crossflow and spread the fuel from both injectors. Thus, the difference in injector shape was insignificant for thrust performance.
机译:作者开发了在冷流实验中用于超音速燃烧器的毒刺形喷油器(毒刺喷油器)。刺针式喷射器的端口几何形状在流向缝隙的前面具有锋利的前缘。与传统的圆形喷射器相比,该喷射器以较低的喷射流与横流动量通量比J产生了更高的喷射穿透力。我们在2060 K的停滞温度下将喷油器应用于2.44马赫燃烧测试。在低燃油当量比Φ态(即低J态)下,喷油器产生的推力比圆形喷油器高10%,因为如冷流实验所预期的那样,射流穿透。即使在中等Φ范围内,毒刺喷油器也比圆形喷油器产生更高的压力推力。在Φ适中的情况下,毒刺式喷油器将火焰保持在喷油器周围,并在喷油器前方产生了预燃烧冲击波。预燃烧冲击波的存在降低了横流空气的动量通量,并削弱了喷射器穿透射流的优势。但是,喷油器产生较高的压力推力,因为更好的火焰保持性会在喷油器周围产生较高的压力。在较高的Φ状况下,两个喷射器的燃烧前冲击波都向上游传播。燃烧前冲击波的上游位置增加了横流中的湍流,并散布了两个喷油器的燃料。因此,喷射器形状的差异对于推力性能而言是微不足道的。

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