首页> 外文会议>2002 ASME International Mechanical Engineering Congress and Exposition , Nov 17-22, 2002, New Orleans, Louisiana >IMPROVEMENT OF MEASUREMENT ACCURACY OF LASER DIFFRACTION METHOD IN SIZING SPRAY PARTICLES
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IMPROVEMENT OF MEASUREMENT ACCURACY OF LASER DIFFRACTION METHOD IN SIZING SPRAY PARTICLES

机译:喷雾颗粒尺寸激光衍射法测量精度的提高

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Drop size measurement is an important part in studying atomization characteristics and spray behavior. Recently, the laser diffraction method that does not interrupt the spray flow is being widely used. In the present study, a set of reticles (reference particles) with known size distributions, based on the Rosin-Rammler distribution function, were used to evaluate the measurement accuracy of the laser diffraction method. Experimental results showed that Sauter mean diameters (SMD) measured with a laser diffraction particle analyzer were in good agreement with the true values for the entire range of the Rosin-Rammler distribution parameters tested. However, the dispersion parameters in the Rosin-Rammler function were measured to be considerably different from the actual ones, as the particle distribution became monodispersed. Thus, functional expression for the parameter representing the dispersion was proposed in terms of the peak height ratio obtained directly from the light energy distribution information.
机译:液滴尺寸的测量是研究雾化特性和喷雾行为的重要部分。近来,不中断喷雾流的激光衍射方法被广泛使用。在本研究中,使用一组基于Rosin-Rammler分布函数的已知大小分布的标线(参考粒子)来评估激光衍射方法的测量精度。实验结果表明,使用激光衍射粒子分析仪测得的Sauter平均直径(SMD)与测试的Rosin-Rammler分布参数的整个范围的真实值高度吻合。然而,由于颗粒分布变得单分散,因此测量的Rosin-Rammler函数中的分散参数与实际参数有很大不同。因此,根据直接从光能分布信息获得的峰高比,提出了代表色散的参数的函数表达式。

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