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On-line measurement of particle size distribution and mass flow rate of particles in a pneumatic suspension using combined imaging and electrostatic sensors

机译:结合使用成像和静电传感器,在线测量气动悬浮液中颗粒的粒径分布和质量流率

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摘要

This paper presents a novel instrumentation system that uses a combination of electrostatic and digital imaging sensors. An inferential approach is adopted for the mass flow measurement of particles, velocity and volumetric concentration of particles being measured independently. The velocity of particles is determined by cross correlating two signals derived from a pair of electrostatic sensors and the volumetric concentration of particles is obtained using a novel digital imaging sensor, which also provides particle size distribution data. The basic principles and limits of operation of the imaging sensor are discussed and explained. Results obtained from a pneumatic conveyor are presented which demonstrate good performance of the measurement system for both mass flow metering (accurate to about ±6%) and particle sizing (reliable to around ±2.5%). Particle size distribution results are also included and the insensitivity of particle sizing to changes in velocity and concentration is assessed. In addition, on-line sizing results are compared to off-line results, measured using an accepted laser diffraction based instrument, and good agreement is observed. In general, the results obtained are encouraging and the system shows great promise.
机译:本文提出了一种新颖的仪器系统,该系统结合了静电和数字成像传感器。采用推论方法测量颗粒的质量流量,独立测量颗粒的速度和体积浓度。粒子的速度是通过互相关从一对静电传感器获得的两个信号来确定的,而粒子的体积浓度是使用新型数字成像传感器获得的,该传感器还提供了粒径分布数据。讨论并解释了成像传感器的基本原理和操作限制。给出了从气动输送机获得的结果,这些结果证明了测量系统在质量流量计量(准确度约为±6%)和颗粒筛分(可靠度约为±2.5%)方面均具有良好的性能。还包括粒度分布结果,并评估了粒度对速度和浓度变化的不敏感性。此外,将在线调整结果与离线结果进行比较,并使用公认的基于激光衍射的仪器进行测量,并且观察到良好的一致性。总的来说,获得的结果令人鼓舞,并且该系统显示出巨大的希望。

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