光学
多路复用
激光器
起爆
材料科学
燃烧室
傅里叶变换
时域
时分复用
物理
燃烧
爆炸物
电信
计算机科学
化学
有机化学
计算机视觉
量子力学
作者
Andrew W. Caswell,Sukesh Roy,Xinliang An,Scott T. Sanders,Frederick R. Schauer,James R. Gord
出处
期刊:Applied Optics
[Optica Publishing Group]
日期:2013-04-17
卷期号:52 (12): 2893-2893
被引量:55
摘要
Hyperspectral absorption spectroscopy is being used to monitor gas temperature, velocity, pressure, and H2O mole fraction in a research-grade pulsed-detonation combustor (PDC) at the Air Force Research Laboratory. The hyperspectral source employed is termed the TDM 3-FDML because it consists of three time-division-multiplexed (TDM) Fourier-domain mode-locked (FDML) lasers. This optical-fiber-based source monitors sufficient spectral information in the H2O absorption spectrum near 1350 nm to permit measurements over the wide range of conditions encountered throughout the PDC cycle. Doppler velocimetry based on absorption features is accomplished using a counterpropagating beam approach that is designed to minimize common-mode flow noise. The PDC in this study is operated in two configurations: one in which the combustion tube exhausts directly to the ambient environment and another in which it feeds an automotive-style turbocharger to assess the performance of a detonation-driven turbine. Because the enthalpy flow [kilojoule/second] is important in assessing the performance of the PDC in various configurations, it is calculated from the measured gas properties.
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