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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Experimental study of flash boiling spray vaporization through quantitative vapor concentration and liquid temperature measurements
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Experimental study of flash boiling spray vaporization through quantitative vapor concentration and liquid temperature measurements

机译:通过定量蒸气浓度和液温测量进行闪蒸喷雾蒸发的实验研究

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Flash boiling sprays of liquid injection under superheated conditions provide the novel solutions of fast vaporization and better air-fuel mixture formation for internal combustion engines. However, the physical mechanisms of flash boiling spray vaporization are more complicated than the droplet surface vaporization due to the unique bubble generation and boiling process inside a superheated bulk liquid, which are not well understood. In this study, the vaporization of flash boiling sprays was investigated experimentally through the quantitative measurements of vapor concentration and liquid temperature. Specifically, the laser-induced exciplex fluorescence technique was applied to distinguish the liquid and vapor distributions. Quantitative vapor concentration was obtained by correlating the intensity of vapor-phase fluorescence with vapor concentration through systematic corrections and calibrations. The intensities of two wavelengths were captured simultaneously from the liquid-phase fluorescence spectra, and their intensity ratios were correlated with liquid temperature. The results show that both liquid and vapor phase of multi-hole sprays collapse toward the centerline of the spray with different mass distributions under the flash boiling conditions. Large amount of vapor aggregates along the centerline of the spray to form a ‘‘gas jet’’ structure, whereas the liquid distributes more uniformly with large vortexes formed in the vicinity of the spray tip. The vaporization process under the flash boiling condition is greatly enhanced due to the intense bubble generation and burst. The liquid temperature measurements show strong temperature variations inside the flash boiling sprays with hot zones present in the ‘‘gas jet’’ structure and vortex region. In addition, high vapor concentration and closed vortex motion seem to have inhibited the heat and mass transfer in these regions. In summary, the vapor concentration and liquid temperature provide detailed information concerning the heat and mass transfer inside flash boiling sprays, which is important for the understanding of its unique vaporization process.
机译:在过热条件下液体喷射的闪蒸喷雾为内燃机提供了快速汽化和更好的空气-燃料混合物形成的新颖解决方案。然而,由于没有充分理解,由于过热的散装液体内部独特的气泡产生和沸腾过程,闪蒸沸腾喷雾蒸发的物理机理比液滴表面蒸发更复杂。在这项研究中,通过对蒸气浓度和液体温度的定量测量,对闪蒸喷雾的蒸发进行了实验研究。具体而言,应用激光诱导的激基复合物荧光技术来区分液体和蒸气的分布。通过系统校正和校准使气相荧光强度与气相浓度相关联,从而获得定量气相浓度。从液相荧光光谱中同时捕获两个波长的强度,并且它们的强度比与液相温度相关。结果表明,在闪蒸条件下,多孔喷雾的液相和气相都朝着质量中心分布不同的喷雾中心线塌陷。大量蒸气沿喷雾中心线聚集,形成“气体喷射”结构,而液体分布更均匀,并在喷雾尖端附近形成大涡旋。由于强烈的气泡产生和破裂,在闪蒸条件下的汽化过程大大增强。液体温度测量结果表明,在“沸腾”喷雾中,“气体喷射”结构和涡流区域中存在热区,温度变化很大。此外,高蒸气浓度和封闭的涡旋运动似乎已经抑制了这些区域中的热量和质量传递。总之,蒸气浓度和液体温度提供了有关闪蒸喷雾内部传热和传质的详细信息,这对于理解其独特的蒸发过程非常重要。

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