首页> 外文会议>Proceedings of the 2002 ASME Joint U.S.-European Fluids Engineering Conference >DROPLET TEMPERATURE AND SIZE MEASUREMENT USING COMBINED TWO COLORS LASER-INDUCED FLUORESCENCE AND INTERFERENCE TECHNIQUE. APPLICATION TO THE ENERGETIC BUDGET OF AN EVAPORATING MONODISPERSE DROPLET STREAM
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DROPLET TEMPERATURE AND SIZE MEASUREMENT USING COMBINED TWO COLORS LASER-INDUCED FLUORESCENCE AND INTERFERENCE TECHNIQUE. APPLICATION TO THE ENERGETIC BUDGET OF AN EVAPORATING MONODISPERSE DROPLET STREAM

机译:结合两种颜色的激光诱导荧光和干涉技术测量微滴温度和尺寸。在蒸发单分散液滴流的能量预算中的应用

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Aerothermal properties in a fuel spray is a central problem in the field of the design of the combustion chambers of automobile engines, turbojets or rocket engines. Heat and mass transfer models are necessary in the predictive calculation schemes used by the motorists. Reliable experimental data must be obtained for both the validation and development of new physical models linked to heat transfer and evaporation in sprays, where aerodynamic interactions has a key role. This paper proposes an experimental study of the energetic budget of a monodisperse ethanol droplet stream, injected in the thermal boundary layer of an heated plate. The droplet size reduction is measured using a light scattering technique (interferential method) in order to characterize the evaporation, as the droplet mean temperature is monitored using the two colors laser-induced fluorescence technique. The convection heat transfer coefficient and the Nusselt number are inferred from the overall energetic budget, as a function of the inter-droplet distance, characterizing the interaction regime. The results are compared to physical models combined with numerical simulations available in the literature, for moving, evaporating isolated droplets and for three droplets arrangement in linear stream.
机译:在汽车发动机,涡轮喷气发动机或火箭发动机的燃烧室的设计领域中,燃料喷雾中的空气热特性是一个中心问题。在驾驶员使用的预测计算方案中,传热和传质模型是必需的。必须获得可靠的实验数据,以验证和开发与喷雾中的传热和蒸发相关的新物理模型,在这些模型中,空气动力学相互作用起着关键作用。本文提出了一种实验研究,该实验研究了在加热板的热边界层中注入的单分散乙醇液滴流的能量平衡。为了表征蒸发,使用光散射技术(干涉法)测量了液滴尺寸的减小,因为使用两种颜色的激光诱导荧光技术监控了液滴的平均温度。对流传热系数和Nusselt数是从总能量预算中得出的,它是液滴间距离的函数,是相互作用机理的特征。将结果与物理模型和文献中提供的数值模拟相结合,以移动,蒸发孤立的液滴并以线性流形式排列三个液滴。

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