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Particle velocity measurement method of dense-phase gas-solid flow based on an electrostatic sensor array

机译:基于静电传感器阵列的密集相气体固体流动颗粒速度测量方法

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Particle velocity is an important parameter of dense-phase gas-solid flow for both monitoring and control purposes. This paper presents a recent development in the noncontact measurement of solid particle velocity using an electrostatic sensor array (ESA). The electrostatic sensor array with eight electrodes is used to collect electrostatic signals generated by the moving charged particles. A velocity measurement method based on the tomography technique is presented, which measures the velocity of solid particles in the horizontal pipeline. The simulated model of the ESA with eight electrodes is built, and the sensing area of the ESA is mapped onto 13 pixels of equal area. Simulation tests are then conducted to evaluate the feasibility and accuracy of the velocity measurement at different positions. Finally, experimental tests are conducted on the horizontal conveying pipeline of a high-pressure dense-phase pneumatic conveying pilot system. Results indicate that the proposed method is capable of measuring the spatial average velocity of pulverized coal over the cross-sectional area of pipe with a relative error within +/- 7% for the conditions of particles tending to be of uniform distribution. In addition, the effect of moisture on velocity measurement is investigated.
机译:粒子速度是密集相气体固体流动的重要参数,用于监测和控制目的。本文介绍了使用静电传感器阵列(ESA)的不接触式固体颗粒速度测量的最新发展。具有八个电极的静电传感器阵列用于收集由移动带电粒子产生的静电信号。提出了一种基于断层摄影技术的速度测量方法,其测量水平管道中的固体颗粒的速度。构建了具有八个电极的ESA的模拟模型,ESA的感测区域映射到相等区域的13个像素。然后进行仿真测试以评估不同位置的速度测量的可行性和准确性。最后,实验测试在高压致密相气动输送先导系统的水平输送管道上进行。结果表明,该方法能够在+/- 7%内测量粉煤煤的空间平均速度,在+/- 7%内,粒子倾向于均匀分布。此外,研究了水分对速度测量的影响。

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