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Impact of Fuel Properties on Combusting Jet Fuel Spray Breakup, Analyzed using High-Speed Phase Contrast Imaging

机译:使用高速相衬成像分析燃料特性对燃烧喷气燃料喷雾破裂的影响

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High-speed x-ray phase contrast imaging of combusting jet fuel spray in a single-sector, swirl stabilized combustor is conducted using the high-powered x-ray source at Argonne National Laboratory's Advanced Photon Source. Imaging is conducted at 90,517 Hz on four fuels which span a wide range of combustion-relevant properties, including F-24, C-1, C-3, and C-5 fuels. F-24 is the standard jet fuel used by the U.S. Department of Defense, and the category C fuels are alternative blends that were created as part of the National Jet Fuel Combustion Program, which each demonstrate one or more extreme properties. The fuel spray breakup of these different fuels is investigated qualitatively by comparing differences between phase-contrast images collected at the same conditions on different fuels. An image processing routine is subsequently used to extract quantitative droplet information, including diameter and velocity, from the collected images. This allows detailed study on the effects of fuel properties on jet fuel spray breakup and atomization. These results demonstrate that droplet characteristics vary significantly between the four tested fuels and that fuels that are more volatile tend to lead to smaller droplets with higher velocities. Phase contrast imaging is found to be extremely effective at characterizing ligaments and droplets inside of an operating gas turbine combustor. This technique shows great promise for providing detailed spray boundary conditions for future gas turbine combustor simulations.
机译:使用Argonne国家实验室先进光子源中的高功率X射线源对单扇区,旋流稳定的燃烧器中的燃烧喷气燃料喷雾进行高速X射线相衬成像。成像是在90,517 Hz的频率下对涵盖广泛的与燃烧相关的特性的四种燃料(包括F-24,C-1,C-3和C-5燃料)进行的。 F-24是美国国防部使用的标准喷气燃料,C类燃料是作为美国国家喷气燃料燃烧计划的一部分而创建的替代混合物,每种混合物都具有一种或多种极端特性。通过比较在相同条件下对不同燃料收集的相衬图像之间的差异,定性地研究了这些不同燃料的燃料喷雾破裂。随后使用图像处理程序从收集的图像中提取定量的液滴信息,包括直径和速度。这允许对燃料特性对喷气燃料喷雾破裂和雾化的影响进行详细研究。这些结果表明,四种测试燃料之间的液滴特性显着不同,并且挥发性更高的燃料往往会导致具有较高速度的较小液滴。发现相衬成像在表征运行中的燃气轮机燃烧器内部的韧带和液滴方面非常有效。该技术显示出为将来的燃气轮机燃烧器模拟提供详细的喷雾边界条件的巨大希望。

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