Research on a measuring method with the function of compensating dielectric constant

Ming Yang, Zhimin Chen, Yutao Wang, Haoyu Zhang
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Abstract

Measurement of solid volume concentration in gas- solid two-phase flow is based on the prerequisite of invariable solid medium dielectric constant, but in the existing industrial measurement, measuring error is caused as a result of neglecting the variation of solid medium dielectric constant. In order to solve this problem, a measuring method which can compensate solid medium dielectric constant is proposed. In the new measuring method, two capacitance sensors are combined: the compensatory capacitance sensor and the measuring capacitance sensor. The compensatory capacitance sensor has a fixed solid volume concentration, so the output can reflect changes of solid dielectric constant and offer a compensation data. The measuring capacitance sensor is used to measure solid volume concentration after the compensation. A mathematical model is built to illustrate how to compensate dielectric constant with the compensation data. The mathematical model is built on the foundation of output characteristics of capacitance sensors, which is studied at the start of the paper. Experiments are carried out to evaluate the performance of the existing and new measuring methods. Experimental results show that when the solid phase dielectric constant varies, relative error is greater than 40% if the existing method is used while it is about 6% if the new method is used. Using the new measuring method can compensate solid phase dielectric constant online and increase the accuracy of concentration measurement.
补偿介电常数函数测量方法的研究
气固两相流中固体体积浓度的测量是以固体介质介电常数不变为前提的,但在现有的工业测量中,由于忽略了固体介质介电常数的变化而造成测量误差。为了解决这一问题,提出了一种补偿固体介质介电常数的测量方法。在新的测量方法中,两种电容传感器相结合:补偿电容传感器和测量电容传感器。补偿电容传感器具有固定的固体体积浓度,因此输出可以反映固体介电常数的变化,并提供补偿数据。测量电容传感器用于测量补偿后的固体体积浓度。建立了一个数学模型来说明如何利用补偿数据对介电常数进行补偿。本文首先对电容传感器的输出特性进行了研究,在此基础上建立了电容传感器的数学模型。通过实验对现有的测量方法和新的测量方法进行了性能评价。实验结果表明,当固相介电常数发生变化时,采用现有方法的相对误差大于40%,而采用新方法的相对误差约为6%。采用该方法可以在线补偿固相介电常数,提高了浓度测量的精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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