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Development of rotational CARS for combustion diagnostics using a polarization approach

机译:使用极化方法开发用于燃烧诊断的旋转汽车

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Rotational Coherent anti-Stokes Raman spectroscopy (CARS) has the last decades been developed into a useful tool for thermometry and concentration measurements in combustion. In this paper, we present a novel polarization approach of the technique, which will enhance its potential and widen the range of conditions at which it can be utilized. The theory of the polarization approach is described in detail. It is shown that by specific arrangement of the polarizations of the laser beams, total suppression of the non-resonant background signal can be obtained, and thus by probing only the resonant CARS signal the diagnostic utility of the technique increases. The main benefit of the approach is in situations where the non-resonant background signal is relatively high in comparison with the resonant signal. The high potential of polarization rotational CARS for thermometry is demonstrated in some illustrative examples, for example, nitrogen thermometry on the fuel side of diffusion flames, and carbon monoxide thermometry in the product gas of ethylene/oxygen/argon-flames.
机译:旋转相干反斯托克斯拉曼光谱法(CARS)在最近几十年已发展成为一种用于燃烧中的测温和浓度测量的有用工具。在本文中,我们提出了一种新颖的极化技术,它将增强其潜力并扩大可利用的条件范围。详细描述了极化方法的理论。示出了通过特定地布置激光束的偏振,可以完全抑制非共振背景信号,因此通过仅探测共振CARS信号,增加了该技术的诊断效用。该方法的主要优点是在非谐振背景信号与谐振信号相比较高的情况下。在一些示例性示例中,证明了极化旋转CARS用于测温的高潜力,例如,扩散火焰的燃料侧的氮气测温和乙烯/氧气/氩气的副产物气中的一氧化碳测温。

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