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Investigation on concentration distribution and mass flow rate measurement for gravity chute conveyor by optical tomography system

机译:光学层析成像系统研究重力溜槽输送机的浓度分布和质量流量

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摘要

This paper describes the design, computer simulation and experimental evaluation of a novel optical tomography instrumentation system that has been recently developed for the measurement of concentration profile and mass flow rate of particles in a gravity chute convey pipeline. The system employs novel multi-light sources and multi-light beams array to create the optical sensing field interrogating the entire cross-section in testing pipe. Comprehensive computer simulation and numerical calculations show that the proposed method is theoretically correct and the programmed algorithm is effective in the image reconstruction. This method has been characterized by real time, in situ and continuous measurement. The experiment results have demonstrated that the optical tomography technique based on the multi-sources fan-shaped geometry can be an effective approach to reflect the concentration distribution and mass flow rate of particles over the pipe cross-section. The mass flow rate of particles derived from extinction principle in some assumption circumstances has shown a good agreement to the projection data of light beams.
机译:本文介绍了一种新型光学层析成像仪器系统的设计,计算机仿真和实验评估,该系统最近已经开发出来,用于测量重力溜槽输送管道中颗粒的浓度分布和质量流率。该系统采用新颖的多光源和多光束阵列来创建光学传感场,该光学传感场询问测试管中的整个横截面。综合的计算机仿真和数值计算表明,该方法在理论上是正确的,所编程的算法在图像重建中是有效的。该方法的特点是实时,原位和连续测量。实验结果表明,基于多源扇形几何结构的光学层析成像技术可以有效地反映管道横截面上颗粒的浓度分布和质量流率。在某些假设条件下,根据消光原理得出的粒子质量流率与光束的投影数据具有很好的一致性。

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