ON THE MONITORING OF THE GAS-SOLID FLOWS IN INDUSTRIAL FLUIDIZED BEDS BY USING ELECTRICAL CHARGE SENSORS

E. Reis, Matheus Ferreira Felix de Andrade
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引用次数: 1

Abstract

The fluidized bed technology has been used in many industrial processes. It promotes good rates of heat, mass transfer and chemical reaction by generating high level of gas-solid mixture. However, the assurance of quality and efficiency of these processes requires the monitoring of the gas-solid flow. For this propose, there are some sensing techniques that allows generating dynamic signals from cold or hot fluidized beds. They are based on pressure fluctuations, acoustic and mechanical vibrations, electrical capacitance and on electrical charges. Electrical charge sensors were proposed originally for measuring the flow velocity in pneumatic conveying. They are composed of one or more metallic electrodes that detect electrical charges in the gas-solid flow, which are generated by particle-particle and particle-wall interaction due to triboelectric effect. In this work, such sensors are explored as a robust and inexpensive solution for the monitoring of industrial fluidized beds. However, since research investments are requested specially on the design of the sensor, concerning the flow quantity of interest and the electrification processes acting on the sensor, in this work different configurations were classified from information in literature, and other were proposed in this work concerning their use with industrial fluidized beds. Although the relation between magnitude of the detected charges and some physical quantities of the flow, such as concentration, is still not clear, other important information can be obtained by analyzing dynamic signals, as velocity or bubbles frequency, or even for identifying of the fluidization regime. It was stated that each configuration, with its own shape and arrangement, can promote or not one or other electrification process by contact, friction or induction and, therefore, each one has a different perception of the flow.
用电荷传感器监测工业流化床气固流动的研究
流化床技术已在许多工业过程中得到应用。它通过产生高水平的气固混合物来促进良好的传热、传质和化学反应速率。然而,为了保证这些工艺的质量和效率,需要对气固流动进行监测。对于这个提议,有一些传感技术,允许产生动态信号从冷或热流化床。它们基于压力波动、声学和机械振动、电容和电荷。电荷传感器最初是为了测量气力输送中的流速而提出的。它们由一个或多个金属电极组成,检测气固流动中的电荷,这些电荷是由于摩擦电效应引起的颗粒-颗粒和颗粒-壁相互作用产生的。在这项工作中,这种传感器被探索作为一个强大的和廉价的解决方案,用于监测工业流化床。然而,由于研究投资是专门针对传感器的设计,涉及感兴趣的流量和作用于传感器的电气化过程,因此在本工作中,根据文献中的信息对不同的配置进行了分类,并在本工作中提出了其他关于它们在工业流化床中的应用的配置。虽然检测到的电荷的大小与流动的某些物理量(如浓度)之间的关系尚不清楚,但通过分析动态信号可以获得其他重要信息,如速度或气泡频率,甚至可以用于识别流化状态。有人指出,每一种结构都有自己的形状和排列,可以通过接触、摩擦或感应来促进或阻止一种或另一种电气化过程,因此,每一种结构对流动都有不同的感知。
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