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A novel ECT-EST combined method for gas-solids flow pattern and charge distribution visualization

机译:新型ECT-EST组合方法用于气固流动模式和电荷分布可视化

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摘要

A non-invasive measurement method of visualizing the flow pattern and charge distribution of gas-solids two-phase flow has been studied and verified using gravity-dropping and pneumatic conveyance rigs with pulverized coal as solids. It has been proven that the permittivity distribution acquired from an electrical capacitance tomography (ECT) system can be used to improve the accuracy in establishing charge sensitivity field of an electrostatic tomography (EST) system, and to reduce the uncertainty of charge distribution reconstruction. The experimental results show that, under the given experimental conditions for the gravity-dropping system, charge density increases with particles' concentration, whilst in the pneumatic conveyance system, charge density decreases in the area where the particles' concentration is higher, and the total charge intensity decreases with the increase of the concentration of pulverized coal in the pipe. The method proposed in this paper is potentially important in pneumatic processes for charge distribution measurement and safe operations. It is envisaged that with further development, this technique can provide information for investigation into the mechanism of inter-particle force on electrostatic attraction and repulsion.
机译:已经研究并使用以煤粉为固体的重力式和气动输送钻机研究并验证了一种可视化气固两相流的流型和电荷分布的无创测量方法。已经证明,从电容层析X射线摄影(ECT)系统获取的介电常数分布可用于提高建立静电层析X射线摄影(EST)系统的电荷灵敏度场的准确性,并减少电荷分布重建的不确定性。实验结果表明,在给定重力下降系统的实验条件下,电荷密度随颗粒浓度的增加而增加,而在气动输送系统中,颗粒浓度较高的区域的电荷密度减小,总浓度降低。装料强度随管道中煤粉浓度的增加而降低。本文提出的方法在气动过程中对电荷分布测量和安全操作具有潜在的重要意义。可以预见,随着进一步的发展,该技术可以为研究粒子间力对静电吸引和排斥的机理提供信息。

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