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Design of a Fiber-Coupled Mid-Infrared Fuel Sensor for Pulse Detonation Engines

机译:脉冲爆震发动机纤维耦合中红外燃料传感器的设计

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摘要

A mid-infrared laser absorption sensor is designed and used for time-resolved fuel concentration measurements in pulse detonation engines. A 3.39 μm helium-neon laser is fiber coupled to the engine, enabling optical absorption measurements for engine firing rates ranging from 5 to 40 Hz. Individual components (e.g., fiber-coupling lenses, optical fiber, and detectors) are optimized to minimize the effects of vibration and thermal emission. Fiber-coupling enables delicate components to be isolated from engine vibration and detonation pressure waves. The first-generation design is used to measure ethylene concentration with a single-cycle signal-to-noise ratio of ~7 for fired tests. The sensor is redesigned and measurements are performed on a different engine at multiple axial locations to extract fuel time of flight and concentration. Ethylene and propane concentration measurements were made, demonstrating the versatility of the sensor for multiple fuels. Single-cycle measurements of ethylene for fired tests have a signal-to-noise ratio of ~6 whereas measurements of propane have a signal-to-noise ratio of~80, reflecting the larger absorption coefficient of propane at this wavelength. Comparison of fired and unfired tests reveals the effects of cycle-to-cycle interactions for the fired tests. Time-resolved fuel concentration measurements are shown to be crucial for understanding engine dynamics in high-repetition-rate pulse detonation engines.
机译:设计了中红外激光吸收传感器,并将其用于脉冲爆震发动机中时间分辨的燃料浓度测量。 3.39μm的氦氖激光器与发动机光纤耦合,可对发动机的射速进行5至40 Hz的光吸收测量。优化了各个组件(例如,光纤耦合透镜,光纤和检测器),以最大程度地减少振动和热辐射的影响。纤维耦合可以将精密的组件与发动机的振动和爆震压力波隔离开。第一代设计用于以约7的单循环信噪比测量乙烯浓度,以进行燃烧测试。重新设计了传感器,并在不同的发动机上的多个轴向位置进行了测量,以提取燃料的飞行时间和浓度。进行了乙烯和丙烷浓度测量,证明了该传感器对多种燃料的多功能性。用于燃烧测试的乙烯的单循环测量的信噪比为〜6,而丙烷的测量的信噪比为〜80,反映了该波长下丙烷的更大吸收系数。点火测试和未点火测试的比较揭示了点火测试的周期间交互作用的影响。已显示时间分辨的燃料浓度测量对于理解高重复频率脉冲爆震发动机中的发动机动力学至关重要。

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