首页> 外文会议>Proceedings of the ASME Heat Transfer Division 2003 >TEMPERATURE IMAGING OF VORTEX-FLAME INTERACTION BY FILTERED RAYLEIGH SCATTERING
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TEMPERATURE IMAGING OF VORTEX-FLAME INTERACTION BY FILTERED RAYLEIGH SCATTERING

机译:瑞雷散射的涡旋-火焰相互作用的温度成像

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This paper describes the application of a filtered-Rayleigh-scattering (FRS) instrument for nonintrusive temperature imaging in a vortex-driven diffusion flame. The FRS technique provides quantitative, spatially correlated temperature data without the flow intrusion or time lag associated with physical probes. Use of a molecular iodine filter relaxes the requirement for clean, particulate-free flowfields and offers the potential for imaging near walls, test section windows and in sooty flames, all of which are precluded in conventional Rayleigh imaging, where background interference from these sources typically overwhelms the weak molecular scattering signal. For combustion applications, FRS allows for full-field temperature imaging without chemical seeding of the flowfield, which makes FRS an attractive alternative to other laser-based imaging methods such as planar laser-induced fluorescence (PLIF). In this work, the details of our FRS imaging system are presented and temperature measurements from an acoustically forced diffusion flame are provided. The local Rayleigh cross-section is corrected using Raman imaging measurements of the methane fuel molecule, which are then correlated to other major species using a laminar flamelet approach. To our knowledge, this is the first report of joint Raman/FRS imaging for nonpremixed combustion. Measurements are presented from flames driven at 7.5 Hz, where a single vortex stretches the flame, and at 90 Hz, where two consecutive vortices interact to cause a repeatable strain-induced flame-quenching event.
机译:本文介绍了滤光瑞利散射(FRS)仪器在涡流驱动扩散火焰中非侵入式温度成像中的应用。 FRS技术可提供定量的,空间相关的温度数据,而不会出现与物理探针相关的流量侵入或时间滞后的情况。分子碘滤光片的使用放宽了对清洁,无颗粒流场的要求,并提供了在壁附近,测试截面窗口和煤烟中成像的潜力,而传统的瑞利成像法通常都排除了这些因素,在这些情况下,通常来自这些源的背景干扰压倒了微弱的分子散射信号。对于燃烧应用,FRS允许在不对流场进行化学播种的情况下进行全场温度成像,这使FRS成为诸如平面激光诱导荧光(PLIF)等其他基于激光的成像方法的有吸引力的替代方案。在这项工作中,将介绍我们的FRS成像系统的详细信息,并提供由声强迫扩散火焰产生的温度测量值。使用甲烷燃料分子的拉曼成像测量来校正局部瑞利横截面,然后使用层流小火焰方法将其与其他主要物种关联。据我们所知,这是用于非预混燃烧的拉曼/ FRS联合成像的首次报道。测量是在以7.5 Hz驱动的火焰(其中单个涡旋使火焰伸展)和在90 Hz(两个连续的涡流相互作用以引起可重复的应变诱发的火焰猝灭事件)下驱动的火焰中进行的。

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