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硅砂介电特性的温度和湿度依赖性

Temperature and moisture dependence of the dielectric properties of silica sand.

作者信息

Liu Chenhui, Zhang Libo, Peng Jinhui, Srinivasakannan Chandrasekar, Liu Bingguo, Xia Hongying, Zhou Junwen, Xu Lei

出版信息

J Microw Power Electromagn Energy. 2013;47(3):199-209. doi: 10.1080/08327823.2013.11689858.

Abstract

The major objective of this work was to investigate the effects of temperature and moisture content on the dielectric properties of silica sand. The dielectric properties of moist silica sand at five temperatures between 20 to 100 degrees C, covering different moisture content levels at a frequency of 2.45 GHz, were measured with an open-ended coaxial probe dielectric measurement system. The wave penetration depth was calculated based on the measured dielectric data. The results show moisture content to be the major influencing factor for the variation of dielectric properties. Dielectric constant, loss factor and loss tangent all increase linearly with increasing moisture content. Three predictive empirical models were developed to relate the dielectric constant, loss factor, loss tangent of silica sand as a linear function of moisture content. An increase in temperature between 20 to 100 degrees C was found to increase the dielectric constant and loss factor. The penetration depth decreased with increase in moisture content and temperature. Variation in penetration depth was found to vary linearly with decrease in moisture content. An predictive empirical model was developed to calculate penetration depth for silica sand. This study offers useful information on dielectric properties of silica sand for developing microwave drying applications in mineral processing towards designing better microwave sensors for measuring silica sand moisture content.

摘要

这项工作的主要目的是研究温度和含水量对硅砂介电性能的影响。使用开放式同轴探头介电测量系统,在2.45 GHz频率下,测量了20至100摄氏度之间五个温度下不同含水量水平的湿硅砂的介电性能。根据测量的介电数据计算了波穿透深度。结果表明,含水量是介电性能变化的主要影响因素。介电常数、损耗因子和损耗角正切均随含水量的增加而线性增加。建立了三个预测经验模型,将硅砂的介电常数、损耗因子、损耗角正切与含水量的线性函数联系起来。发现20至100摄氏度之间温度的升高会增加介电常数和损耗因子。穿透深度随含水量和温度的增加而减小。发现穿透深度的变化随含水量的降低呈线性变化。建立了一个预测经验模型来计算硅砂的穿透深度。本研究为开发矿物加工中的微波干燥应用提供了有关硅砂介电性能的有用信息,有助于设计更好的微波传感器来测量硅砂含水量。

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