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Measurement of spray flow by an improved Interferometric Laser Imaging Droplet Sizing (ILIDS) system

机译:通过改进的干涉激光成像液滴尺寸调整(ILIDS)系统测量喷雾流量

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This paper describes a novel technique for droplet-sizing of spray. In the field of spray analysis, various kinds of measurement techniques have been proposed. Among them the method (1LIDS) provides instantaneous spatial distributions of droplet images in a frame of pictures as shown in the previous investigations (Koenig et al. 1986, Glover et al. 1995, Skippon et al. 1996). The interferometric fringes in the projected image are correlated to its own droplet size, and the accuracy depends on the technique estimating the size of the circular image and the fringe spacing. The previous works have employed, in this sense, a high-resolution photography. The present study proposes an automated system for high speed processing to improve the method employing a high resolution CCD camera and computing system so that the validation and accurate evaluation of fringe spacing may be easily performed by FFT. The images to be taken were compressed optically to those of broken lines of length by defocused image and to thin width by focused image. The present novel ILIDS receiving optical system achieves the measurements of sizing in a denser spray by avoiding overlapping of neighboring images with fringe. The processing is performed scanning the image line in the frame and the fringe spacing from the periodic signal similar to the LDA burst signal. The system examined mono-disperse spray droplets and the resultant error with a comparison to a photographic measurement is estimated as less than 3% for arithmetic mean diameter distribution. The simultaneous measurement of droplet size and velocity is possible by using a two-dimensional PIV/PTV technique.
机译:本文介绍了一种新的喷雾液滴定径技术。在喷雾分析领域,已经提出了各种测量技术。在这些方法中,方法(1LIDS)可提供一帧图像中液滴图像的瞬时空间分布,如先前的研究(Koenig等人1986,Glover等人1995,Skippon等人1996)所示。投影图像中的干涉条纹与其自身的墨滴大小相关,其准确性取决于估计圆形图像大小和条纹间距的技术。从这个意义上讲,以前的作品采用的是高分辨率摄影。本研究提出了一种用于高速处理的自动化系统,以改进采用高分辨率CCD相机和计算系统的方法,从而可以通过FFT轻松进行条纹间距的确认和准确评估。通过散焦图像将要拍摄的图像光学压缩为长度的虚线,通过聚焦图像将其压缩为较细的宽度。本新颖的ILIDS接收光学系统通过避免相邻图像与条纹的重叠来实现在较浓密喷雾中的上浆测量。执行该处理是从类似于LDA突发信号的周期信号中扫描帧中的图像线和边缘间隔。系统检查了单分散喷雾,与算术测量结果相比,误差的算术平均直径分布估计小于3%。通过使用二维PIV / PTV技术,可以同时测量液滴的大小和速度。

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