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Finite element simulation and optimization design of capacitance sensor with loop test plate

机译:环试板电容传感器有限元仿真与优化设计

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Flow pattern is complicated and changeable under the background of dense-phase pneumatic conveying in a horizontal pipe, which has great influence on other flow parameters. If a sensor can detect other parameters of slug combined with the characteristics of the flow pattern, the result will be more accurate. In this paper, in order to solve this problem, a new type of capacitance sensor is put forward, which combines the flow pattern recognition with the concentration detection of slug. The sensor has a high spatial resolution than other sensors. Focusing on the poor sensing field sensitivity uniformity and low measuring sensitivity, an approach combining finite element analysis with orthogonal experiment is proposed to optimally design the sensor. The results of simulation and experiments show that the optimized sensor has a more homogeneous circumferential sensitivity field, and it can detect the slug flow accurately. The sensor is more suitable to test slug than ECT sensor. Therefore, the sensor has a good application prospect in the field of two-phase flow testing.
机译:流动模式在水平管道中的密集相气输送的背景下复杂和可变,这对其他流动参数产生了很大影响。如果传感器可以检测与流动模式的特性相结合的SLUC的其他参数,则结果将更加准确。在本文中,为了解决这个问题,提出了一种新型的电容传感器,其将流动模式识别与块的浓度检测相结合。传感器具有比其他传感器高的空间分辨率。专注于较差的传感场敏感性均匀性和低测量灵敏度,提出了一种与正交实验的有限元分析相结合的方法,以最佳地设计传感器。仿真和实验结果表明,优化的传感器具有更均匀的周向灵敏度场,并且可以精确地检测块流。传感器更适合于测试Slug而不是Ect传感器。因此,传感器在两相流动测试领域具有良好的应用前景。

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