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Mathematical Modeling and Experimental Evaluation of Electrostatic Sensor Arrays for the Flow Measurement of Fine Particles in a Square-Shaped Pipe

机译:静电传感器阵列在方管中细小颗粒的流量测量的数学建模和实验评估

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Square-shaped pneumatic conveying pipes are used in some industrial processes, such as fuel injection systems in coal-fired power plants and circulating fluidized beds. However, a little research has been conducted to characterize the gas-solid two-phase flow in a square-shaped pneumatic conveying pipe. This paper presents mathematical modeling and experimental assessment of novel non-restrictive electrostatic sensor arrays for the measurement of pulverized fuel flow in a square-shaped pipe. The sensor arrays consist of twelve pairs of strip-shaped electrodes, which are uniformly embedded in the four flat pipe walls. An analytical mathematical model of the sensor arrays is established, and the induced charge and currents of different electrodes due to a point charge are then derived based on the model. Experimental tests were conducted on a 54-mm square-shaped pipe section of a pneumatic conveyor test rig under a range of flow conditions. The fuel velocity profile over the whole cross section of the pipe is measured. Mathematical modeling and experimental results demonstrate that the proposed non-restrictive electrostatic sensor arrays are capable of characterizing the local pulverized fuel flow in a square-shaped pneumatic conveying pipe.
机译:方形气动输送管用于某些工业过程,例如燃煤电厂的燃料喷射系统和循环流化床。然而,已经进行了一些研究以表征方形气动输送管中的气固两相流。本文介绍了新型非限制性静电传感器阵列的数学建模和实验评估,该阵列用于测量方形管道中的粉状燃料流量。传感器阵列由十二对条形电极组成,它们均匀地嵌入四个扁平管壁中。建立传感器阵列的解析数学模型,然后基于该模型推导由于点电荷而引起的不同电极的感应电荷和电流。在一系列流量条件下,在气动输送机试验台的54毫米方形管段上进行了实验测试。测量管道整个横截面上的燃油速度曲线。数学模型和实验结果表明,所提出的非限制性静电传感器阵列能够表征方形气动输送管中的局部粉化燃料流。

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