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Review of atomization mechanism and spray characteristics of a liquid jet in supersonic crossflow
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作者 Yaozhi ZHOU Zun CAI +4 位作者 Qinglian LI Chenyang LI Mingbo SUN Peibo LI Hongbo WANG 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2023年第8期1-23,共23页
The injection and atomization process of a liquid fuel jet is critical for an ignition start of a scramjet engine.Airwall-mounted crossflow injection strategy is widely used in scramjet combustors,avoiding high total ... The injection and atomization process of a liquid fuel jet is critical for an ignition start of a scramjet engine.Airwall-mounted crossflow injection strategy is widely used in scramjet combustors,avoiding high total pressure loss and allowing the liquid fuel to rapidly undergo atomization,mixing,and evaporation.In this review,research progress on a liquid jet in supersonic crossflow was evaluated from aspects of atomization mechanism and spray characteristics.When a liquid jet is injected into a supersonic crossflow,primary and secondary breakups occur successively.The surface instability of liquid can significantly affect the breakup process.This review discusses the current understanding of the breakup process and spray characteristics of a liquid jet in supersonic crossflow including the mechanism of atomization and the characteristics of distribution and atomization.The development of windward Rayleigh-Taylor(R-T)unstable waves is the main factor in column breakup.The development of Kelvin-Helmholtz(K-H)unstable waves along the circumferential direction of the jet or droplets is the main factor of surface and droplet breakups.The liquid-gas momentum ratio is the most important factor affecting the penetration depth.The span width of the liquid jet is affected by the windward area.Breakup and coalescence lead to a transformation of the size distribution of droplets from S-or C-shaped to I-shaped,and the velocity distribution of the droplets on the central symmetry plane has a mirrored S-shape.The droplet distribution on the spanwise cross-section retains a structure similar to an“Ω”shape.At last,some promising recommendations have been proposed,namely a theoretical predictive model which can describe the breakup mechanism of a liquid jet,the distribution characteristics and droplets size distribution of a liquid jet under a cavity combustion chamber,especially for enthalpy flows with complex wave structures. 展开更多
关键词 ATOMIZATION Liquid fuels Spraynozzles supersonicflow Two phase flow
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基于激光吸收光谱技术测量瞬态超声速流场温度 被引量:12
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作者 陶波 叶景峰 +3 位作者 赵新艳 张立荣 胡志云 叶锡生 《中国激光》 EI CAS CSCD 北大核心 2011年第12期217-220,共4页
燃烧过程的准确、实时诊断对研究燃烧机理、提高燃烧效率、降低污染物排放等至关重要。简要介绍了可调谐二极管激光吸收光谱(TDLAS)技术的测温原理,通过选择水在1397nm附近的两条邻近吸收线,运用多功能数据采集卡对二极管激光器进行控... 燃烧过程的准确、实时诊断对研究燃烧机理、提高燃烧效率、降低污染物排放等至关重要。简要介绍了可调谐二极管激光吸收光谱(TDLAS)技术的测温原理,通过选择水在1397nm附近的两条邻近吸收线,运用多功能数据采集卡对二极管激光器进行控制和信号采集,实现了TDLAS技术波长扫描直接吸收法对瞬态超声速流场温度的测量,获得了瞬态超声速流场温度随喷流时间的演化过程,测量重复频率为1kHz。 展开更多
关键词 测量 温度测量 吸收光谱 可调谐二极管激光 超声速流场
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