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首页> 外文期刊>International Journal of Automotive Technology >Evaluation of natural and tracer fluorescent emission methods for droplet size measurements in a diesel spray
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Evaluation of natural and tracer fluorescent emission methods for droplet size measurements in a diesel spray

机译:评价自然和示踪荧光发射方法以测量柴油喷雾中的液滴尺寸

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Spray sizing that records fluorescent emission and scattered light has been widely applied to spray diagnostics over the last two decades. Different experimental strategies have been developed, but comparing the different solutions offered has remained of interest to experimentalists. In this work, a comparison of two fluorescence strategies for measuring droplet size in the liquid phase of a last-generation DI diesel spray is conducted. The natural fluorescent emission of a commercial diesel fuel and the fluorescence emitted by a tracer (Rhodamine B) are compared using theoretical and experimental approaches. The LIF/Mie ratio commonly called Planar Droplet Sizing (PDS) technique is applied in two different ways to elucidate the possible advantages of using a fluorescent dopant. The sprays were injected under non-evaporative conditions into a constant pressure vessel that simulates densities present at the moment of injection in currently used passenger car diesel engines. Characterization of the signal properties was performed by measuring the absorption coefficient, fluorescence emission spectrum, quantum yield and lifetime of both configurations. The scattered light and fluorescence intensities were calculated to verify the dependencies of the droplet surface and volume. When applying the two techniques to quantify droplet size in dense diesel sprays, the results show that signal weakness and lack of control over the properties of natural fluorescence produce distortion in the shape of the spray and cause measurements to be unreliable.
机译:在过去的二十年中,记录荧光发射和散射光的喷雾定径已广泛应用于喷雾诊断。已经开发了不同的实验策略,但是比较提供的不同解决方案仍然是实验学家感兴趣的。在这项工作中,对用于测量上一代去离子柴油喷雾器液相中液滴尺寸的两种荧光策略进行了比较。使用理论和实验方法比较了商用柴油的自然荧光发射和示踪剂(罗丹明B)发出的荧光。 LIF / Mie比通常称为平面液滴尺寸调整(PDS)技术,以两种不同的方式应用,以阐明使用荧光掺杂剂的可能优势。将喷雾剂在非蒸发条件下注入到恒定压力容器中,该容器模拟当前使用的乘用车柴油发动机中在注入时存在的密度。通过测量两种配置的吸收系数,荧光发射光谱,量子产率和寿命来进行信号特性的表征。计算散射光和荧光强度以验证液滴表面和体积的依赖性。当使用这两种技术来定量浓柴油喷雾中的液滴尺寸时,结果表明信号弱和对自然荧光特性的控制不足会导致喷雾形状变形,从而导致测量结果不可靠。

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