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Velocity characterization of dense phase pneumatically conveyed solid particles in horizontal pipeline through an integrated electrostatic sensor

机译:通过集成的静电传感器在水平管道中以气密方式输送致密相固体颗粒的速度表征

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Dense phase pneumatic conveying of pulverized fuel particles under high pressure is one of the key techniques in large scale gasification of coal and petroleum coke. The real time and continuous measurement of dense phase gas-solid flow parameters such as particle velocity, concentration and mass flow rate has great significance for the in-depth understanding of particle flow dynamic behaviors and the optimized design of the conveying system. In this paper, an integrated electrostatic sensor is designed and used to explore the flow characteristics of anthracite and petroleum coke particles on a dense phase pneumatic conveyor. The ring electrodes in the integrated sensor are capable of measuring the "mean" velocity of solid particles over the whole cross-section of the pipeline, while the arc electrodes are employed to determine the local velocity of particles near them. The experimental results on a dense phase pneumatic conveyor under high pressure demonstrate that the flow characteristics depend on the physical properties of solid particles and carrying gas. Petroleum coke particles are much easier to be suspended in the gas flow than the anthracite particles, but its flow stability is worse. The local velocities from the arc electrode pairs Mounted on the top of the pipeline are usually higher than those from the arc electrodes on the bottom for a stratified flow. The velocity from the ring electrode pair, indicating the mean velocity of particles over the whole cross-section, is usually higher than the local velocities from the arc electrode pairs for a suspension flow. In addition, the relationship between the mass flow rate and charge level of dense phase pneumatically conveyed solid particles is very complicated due to the complexity of the particle flow and the charge level cannot be used to measure particle concentration or mass flow rate. (C) 2014 Elsevier Ltd. All rights reserved.
机译:高压下粉状燃料颗粒的密相气力输送是煤和石油焦大规模气化的关键技术之一。密相气固两相流参数如颗粒速度,浓度和质量流量的实时连续测量,对于深入了解颗粒流动力学行为和输送系统的优化设计具有重要意义。在本文中,设计了集成的静电传感器,并用于探索无烟煤和石油焦颗粒在密相气力输送机上的流动特性。集成传感器中的环形电极能够在管道的整个横截面上测量固体颗粒的“平均”速度,而弧形电极用于确定靠近它们的颗粒的局部速度。在高压下的密相气力输送机上的实验结果表明,流动特性取决于固体颗粒和载气的物理性质。石油焦炭颗粒比无烟煤颗粒更容易悬浮在气流中,但其流动稳定性较差。对于分层流,安装在管道顶部的电弧电极对的局部速度通常高于底部电弧电极对的局部速度。环形电极对的速度(表示整个横截面中粒子的平均速度)通常高于悬浮流的电弧电极对的局部速度。另外,由于颗粒流的复杂性,致密相气动输送的固体颗粒的质量流率和电荷水平之间的关系非常复杂,并且电荷水平不能用于测量颗粒浓度或质量流率。 (C)2014 Elsevier Ltd.保留所有权利。

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