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Optical tomography : real-time image reconstruction for various flow regime in gravity flow conveyorsud

机译:光学层析成像:重力流输送机中各种流态的实时图像重建 ud

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摘要

In this study, real-time imaging was monitored for flowing solid particles when various baffles were created to block certain areas of the pipe. The generated flow regimes were full-flow, three-quarter-flow, half-flow and quarter-flow. A vertical pneumatic conveyor was designed to hold a 85 mm inner diameter pipeline. The four projection optical tomography systems used, applied the parallel beam projection approach and use infrared light sources so that the sensor was free of noise from the surrounding visible light source. The two orthogonal and two rectilinear projections were axial, but ideally they should have been in the same layer. The sensor readings could be related to the varying light intensity effects of the dropping particles and were used to provide cross-sectional distribution information for the conveyor. By using computer programming, the information was reconstructed to produce coloured images and concentration was obtained by reference to a colour code. The results obtained from this study showed how imaged flow followed the artificial flow regime. This study could benefit industrial production lines in maintaining the desired flow rates.
机译:在这项研究中,当创建各种挡板来阻塞管道的某些区域时,实时成像会监测流动的固体颗粒。生成的流态为全流,四分之三流,半流和四分之一流。设计了垂直气动输送机,以容纳内径为85毫米的管道。所使用的四个投影光学层析成像系统应用了平行光束投影方法,并使用了红外光源,因此传感器没有来自周围可见光源的噪声。两个正交投影和两个直线投影是轴向的,但理想情况下,它们应该在同一层中。传感器读数可能与滴落的颗粒的变化的光强度影响有关,并用于提供输送机的横截面分布信息。通过使用计算机程序,信息被重建以产生彩色图像,并且通过参考彩色代码获得浓度。从这项研究中获得的结果表明,成像流如何遵循人工流态。这项研究可以使工业生产线保持所需的流速而受益。

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