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Coherent Structures in an Impinging Jet with Swirl and Combustion

机译:旋转和燃烧的冲击喷射中的相干结构

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The present paper reports on an experimental study of flow structure and coherent structures in impinging jets with strong swirl and combustion of lean propane/air mixture by a combined application of OH, HCHO PLIF and PIV. The equivalence ratio of the mixture was 0.7, the Reynolds number of the jet was 5000. Thru to the use of modem panoramic optical methods PIV, OH and HCHO PLIF (these methods are based on anemometry on particle images and registration of plane laser-induced fluorescence of formaldehyde, respectively), the velocity distributions and the position of the flame front in the axial section of the flow were measured. For the flame, a significant increase in the fluorescence intensity of formaldehyde and other organic compounds were detected upon excitation at a wavelength of 355 nm in the near-wall region at a distance of three calibers from the nozzle to the surface. To reveal coherent structures, the experimental data were processed by proper orthogonal decomposition (POD). It is expected that this effect is caused by the cooling of the combustion products due to heat exchange with a surface, lowering the temperature inside the recirculation zone and reducing the completeness of fuel combustion.
机译:本文报道了通过OH,HCHO PLIF和PIV的组合施加在螺旋旋涡和瘦螺旋/空气混合物中撞击搅拌射流的流动结构和相干结构的实验研究。混合物的等效比为0.7,射流的雷诺数为5000.通过使用调制解调器全态光学方法PIV,OH和HCHO PLIF(这些方法基于粒子图像上的水平测量和平面激光诱导的配准测量甲醛的荧光,测量速度分布和火焰前沿在流动的轴向部分的位置。对于火焰,在近壁区域的波长355nm的波长的激发时检测甲醛和其他有机化合物的荧光强度的显着增加,在从喷嘴到表面的三个次次次曲折的距离。为了揭示相干结构,通过适当的正交分解(POD)处理实验数据。预计该效果是由于由于与表面的热交换而冷却燃烧产物引起的,降低了再循环区域内的温度并降低了燃料燃烧的完整性。

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