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Effect of Recess in High-Pressure Liquid Oxygen/Methane Coaxial Injection and Combustion

机译:高压液氧/甲烷共轴喷射和燃烧中的凹陷效应

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The effect of a recessed liquid oxygen tube in shear coaxial injection has been investigated experimentally using an optically accessible subscale rocket combustor operated at pressures between 40 and 60 bar. Different single-shear coaxial injectors have been used to inject liquid oxygen and methane at relevant operating conditions covering sub-, near-, and supercritical pressures with respect to the critical point of oxygen. Liquid oxygen was injected at 120 K and the injection temperature of gaseous methane was about 275 K. Detection of spontaneous OH and CH chemiluminescence has been performed to characterize the flame-anchoring zone near the liquid oxygen post tip. In addition, the influence of the injector geometry on the combustion roughness and stability has been investigated during steady-state operating points. An increased flame expansion was observed with a recessed injector element. At a low momentum flux ratio, the pressure drop across the injector increases with a recessed liquid oxygen tube compared with a flush tube. Furthermore, a recessed liquid oxygen tube led to a smoother combustion in general; however, this configuration also led to additional resonant frequencies in the chamber acoustics.
机译:凹入式液氧管在剪切同轴注入中的作用已通过使用光学可访问的小规模火箭燃烧器在40至60 bar之间的压力下进行了实验研究。已经使用不同的单剪切同轴喷射器在涉及氧气临界点的亚临界,近临界和超临界压力的相关操作条件下喷射液态氧和甲烷。在120 K下注入液氧,气态甲烷的注入温度约为275K。已经进行了自发OH和CH化学发光的检测,以表征液氧柱尖端附近的火焰固定区。另外,在稳态工作点期间,已经研究了喷射器几何形状对燃烧粗糙度和稳定性的影响。使用凹陷的喷射器元件观察到火焰膨胀增加。在低动量通量比下,与冲洗管相比,使用凹入式液氧管时,喷射器两端的压降会增加。此外,凹入的液氧管通常导致燃烧更顺畅。然而,这种配置也导致了室内声学的其他共振频率。

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