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Design of a Plug Formation Detector Based on the Capacitance Measurement Technique

机译:基于电容测量技术的塞子形成探测器设计

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摘要

A measurement system has been developed to non-invasively detect plug formation in density pneumatic conveying. This plug formation detection system yields quantitative information that is validated by comparison to an electrical capacitance tomography (ECT) system. Both the plug detection system and the ECT system were applied to a horizontal pipeline (50 mm inner diameter) in density pneumatic conveying. The experimental conditions were varied for different heights of the initial particle dense layer and air volume flow rates. For all cases, the results obtained from the plug detector and ECT show similar patterns. This good agreement suggests that, where feasible, this plug detector can be used in place of the ECT system, which is advantageous since plug detection systems are often less expensive and faster than ECT systems. The factors influencing plug formation are discussed in detail. As a result, it can be seen that the height of the initial particle dense layer and the air volume flow velocity contribute to the nature of the plug formation rather than the solid-phase volume fraction in the dense layer.
机译:已经开发了一种测量系统,以非侵入性地检测密度气动输送中的堵塞形成。此插头形成检测系统可产生定量信息,该信息可通过与电容层析成像(ECT)系统进行比较来验证。塞子检测系统和ECT系统都应用于水平管道(内径50毫米)的密度气动输送中。对于不同的初始颗粒致密层高度和空气体积流量,实验条件有所不同。对于所有情况,从塞子检测器和ECT获得的结果显示出相似的模式。良好的协议表明,在可行的情况下,可以使用该插头检测器代替ECT系统,这是有利的,因为插头检测系统通常比ECT系统便宜且速度更快。详细讨论了影响塞子形成的因素。结果,可以看出,初始颗粒致密层的高度和空气体积流速影响了栓塞形成的性质,而不是致密层中的固相体积分数。

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