首页> 外文期刊>Transactions of the ASABE >A NEW APPROACH TO PREDICTING THE COMPLEX PERMITTIVITY OF RICE
【24h】

A NEW APPROACH TO PREDICTING THE COMPLEX PERMITTIVITY OF RICE

机译:一种预测大米复杂介电常数的新方法

获取原文
获取原文并翻译 | 示例
           

摘要

The initial attempts in relation to the present study, i.e., to develop a moisture calibration from the intrinsic dielectric properties of rice and wheat kernels, were unsuccessful. It was observed that the behavior of the loss factor with the variation of moisture content of the samples was less than predictable. The foregoing statement corroborates earlier results. Earlier researchers introduced the term "moisture density" (product of decimal moisture content and bulk density) and showed that variation in dielectric constant attributable to bulk density variation can be reduced when data are presented in terms of moisture density. The data, however, for the loss factor were not presented. In an attempt to find the moisture dependence of the relative permittivity and loss factor of different cultivars and kinds of rice at 2.45 GHz to produce quadratic and cubic models for the variation of the relative permittivity and loss factor with moisture content and density, a new term, "moisture-specific volume" (ratio of decimal moisture content to the bulk density), is introduced in the present work. Data are presented in light of this new term and in light of seven equations for the dielectric properties of random media. Further, two equations out of the seven are found to be equivalent. The data for the moisture-specific volume and hence for the moisture content of different samples and the relationships provide the estimates for the relative permittivity and loss factor of rice kernels over almost the entire range of moisture content, without the aid of reference data points. A comparative study of the two proposed models with those of previous researchers is also reported. Results for the two dielectric properties for rough, brown, and white or milled rice kernels of 'Lebonnet' and 'Pecos' cultivars, in terms of moisture-specific volume presented in the form of quadratic and cubic models, are found satisfactory.
机译:与本研究有关的最初尝试,即从稻谷和小麦籽粒的固有介电特性发展水分定标,是失败的。观察到损失因子随样品水分含量变化的行为小于可预测的。上述陈述证实了较早的结果。较早的研究人员引入了术语“水分密度”(十进制水分含量和堆积密度的乘积),并表明当以水分密度表示数据时,可以减少归因于堆积密度变化的介电常数变化。但是,没有显示损失因子的数据。为了找到不同品种和水稻在2.45 GHz时相对介电常数和损耗因子的水分依赖性,以产生二次模型和立方模型,用于相对介电常数和损耗因子随水分含量和密度的变化,一个新术语在本工作中引入了“水分比体积”(十进制水分含量与堆积密度之比)。根据这个新术语和有关随机介质介电特性的七个方程式,给出了数据。此外,发现七个方程中的两个方程是等价的。在没有参考数据点的帮助下,水分比体积的数据以及不同样品的水分含量及其关系的数据提供了在几乎整个水分含量范围内的稻米相对介电常数和损耗因子的估算值。还报道了与之前的研究人员对这两种拟议模型的比较研究。发现以“二次方”和“立方”形式表示的“ Lenetnet”和“ Pecos”品种的糙米,糙米和碾米稻米的两种介电特性的结果令人满意。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号