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Quantitative liquid and vapor distribution measurements in evaporating fuel sprays using laser-induced exciplex fluorescence

机译:使用激光诱导的激基复合物荧光定量测量蒸发的燃料喷雾中的液体和蒸气分布

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摘要

Fully quantitative two-dimensional measurements of liquid- and vapor-phase fuel distributions (mass per unit volume) from high-pressure direct-injection gasoline injectors are reported for conditions of both slow and rapid vaporization in a heated, high-pressure spray chamber. The measurements employ the coevaporative gasoline-like fluorobenzene (FB)/diethylmethylamine (DEMA)/hexane exciplex tracer/fuel system. In contrast to most previous laser-induced exciplex-fluorescence (LIEF) experiments, the quantitative results here include regions in which liquid and vapor fuel coexist (e.g. near the injector exit). A unique aspect is evaluation of both vapor- and liquid-phase distributions at varying temperature and pressure using only in situ vapor-phase fluorescence calibration measurements at room temperature and atmospheric pressure. This approach draws on recent extensive measurements of the temperature-dependent spectroscopic properties of the FB-DEMA exciplex system, in particular on knowledge of the quantum efficiencies of the vapor-phase and liquid-phase (exciplex) fluorescence. In addition to procedures necessary for quantitative measurements, we discuss corrections for liquid-vapor crosstalk (liquid fluorescence that overlaps the vapor-fluorescence bandpass), the unknown local temperature due to vaporization-induced cooling, and laser-sheet attenuation by scattering and absorption.
机译:据报道,在加热的高压喷雾室中,在缓慢和快速汽化的条件下,高压直喷汽油喷射器对液相和气相燃料分布(单位体积质量)进行了完全定量的二维测量。测量采用了共蒸发汽油样的氟苯(FB)/二乙基甲胺(DEMA)/己烷激基复合物示踪剂/燃料系统。与大多数先前的激光诱导的激基复合物荧光(LIEF)实验相反,这里的定量结果包括液体和蒸气燃料共存的区域(例如在喷油器出口附近)。一个独特的方面是在室温和大气压下仅使用原位气相荧光校准测量来评估在变化的温度和压力下的气相分布和液相分布。该方法利用了FB-DEMA激基复合物系统随温度变化的光谱特性的最新广泛测量,特别是基于气相和液相(激基复合物)荧光的量子效率知识。除了进行定量测量所必需的程序外,我们还讨论了液-气串扰(与气-荧光带通重叠的液体荧光),由于汽化引起的冷却而导致的未知局部温度以及由于散射和吸收而引起的激光片衰减的校正。

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