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Velocity measurement of pneumatically conveyed solid particles using an electrostatic sensor

机译:使用静电传感器测量气动输送的固体颗粒的速度

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摘要

The paper proposes a method to measure the mean velocity of solid particles based on the spatial filtering effect of the electrostatic sensor. To determine the relationship between the spatial frequency characteristics of the sensor and solid particle velocity, a general formula is derived by analyzing quantitatively the spatial filtering characteristics of the electrostatic sensor along with the accepted assumptions. The effects of the geometric parameters of the sensor, particle velocity distribution, particle concentration distribution over the cross-section of a pneumatic pipeline, particle size, particle material type and frequency resolution on particle velocity measurement accuracy are also discussed in detail. Experiments are performed on a bench-scale gravity-fed particle flow experimental rig to test the performance of the velocity measurement system. The off-line experimental results show that the system repeatability is within +-5percent over the velocity range of 2-6 m s~(-1) for concentrations of solid particles in the range of 0.5-6.0percent.
机译:提出了一种基于静电传感器空间滤波效应的固体颗粒平均速度测量方法。为了确定传感器的空间频率特性与固体颗粒速度之间的关系,通过对静电传感器的空间滤波特性以及公认的假设进行定量分析,可以得出一个通用公式。还详细讨论了传感器的几何参数,颗粒速度分布,气动管道横截面上的颗粒浓度分布,颗粒大小,颗粒材料类型和频率分辨率对颗粒速度测量精度的影响。实验是在台式规模的重力式颗粒流实验装置上进行的,以测试速度测量系统的性能。离线实验结果表明,当固体颗粒浓度在0.5-6.0%范围内时,在2-6 m s〜(-1)的速度范围内,系统的重复性在+ -5%范围内。

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