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Comparison of Techniques for Non-Intrusive Fuel Drop Size Measurements in a Subscale Gas Turbine Combustor

机译:小型燃气轮机燃烧室非侵入式燃料滴尺寸测量技术的比较

摘要

In aviation gas turbine combustors, many factors, such as the degree and extent of fuel/air mixing and fuel vaporization achieved prior to combustion, influence the formation of undesirable pollutants. To assist in analyzing the extent of fuel/air mixing, flow visualization techniques have been used to interrogate the fuel distributions during subcomponent tests of lean-burning fuel injectors. Discrimination between liquid and vapor phases of the fuel was determined by comparing planar laser-induced fluorescence (PLIF) images, elastically-scattered light images, and phase/Doppler interferometer measurements. Estimates of Sauter mean diameters are made by ratioing PLIF and Mie scattered intensities for various sprays, and factors affecting the accuracy of these estimates are discussed. Mie calculations of absorption coefficients indicate that the fluorescence intensities of individual droplets are proportional to their surface areas, instead of their volumes, due to the high absorbance of the liquid fuel for the selected excitation wavelengths.
机译:在航空燃气涡轮机燃烧器中,许多因素(例如燃烧前实现的燃料/空气混合的程度和程度以及燃料的汽化)会影响不良污染物的形成。为了帮助分析燃料/空气混合的程度,在稀燃燃料喷射器的子组件测试期间,已使用流动可视化技术来询问燃料分布。通过比较平面激光诱导的荧光(PLIF)图像,弹性散射光图像和相/多普勒干涉仪测量结果,确定了燃料的液相和气相之间的区别。通过对各种喷雾的PLIF和Mie散射强度进行比值得出Sauter平均直径的估计值,并讨论影响这些估计值准确性的因素。吸收系数的米氏计算表明,由于液体燃料对选定激发波长的高吸收性,单个液滴的荧光强度与其表面积成正比,而不是与其体积成正比。

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