钟汝能, 郑勤红, 姚斌, 向泰. 小粒径颗粒状农产品介电特性的GEM公式参数确定[J]. 农业工程学报, 2020, 36(17): 281-290. DOI: 10.11975/j.issn.1002-6819.2020.17.033
    引用本文: 钟汝能, 郑勤红, 姚斌, 向泰. 小粒径颗粒状农产品介电特性的GEM公式参数确定[J]. 农业工程学报, 2020, 36(17): 281-290. DOI: 10.11975/j.issn.1002-6819.2020.17.033
    Zhong Runeng, Zheng Qinhong, Yao Bin, Xiang Tai. Determination of parameters of GEM formula for dielectric properties of small size granular agricultural products[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2020, 36(17): 281-290. DOI: 10.11975/j.issn.1002-6819.2020.17.033
    Citation: Zhong Runeng, Zheng Qinhong, Yao Bin, Xiang Tai. Determination of parameters of GEM formula for dielectric properties of small size granular agricultural products[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2020, 36(17): 281-290. DOI: 10.11975/j.issn.1002-6819.2020.17.033

    小粒径颗粒状农产品介电特性的GEM公式参数确定

    Determination of parameters of GEM formula for dielectric properties of small size granular agricultural products

    • 摘要: 介电特性是研究农产品微波辅助应用的重要参数。为了拓展有效介质公式(General Effective Medium,GEM)在农业工程领域的应用,探究农产品介电特性计算新方法,该研究针对颗粒状农产品,采用离散元法、有限元法和平均能量法建立了堆积型农业颗粒物料等效介电特性分析的数值模型,在模拟仿真数据和试验测量数据对比分析的基础上,提出适用于微波波段下颗粒状农产品介电特性计算的GEM公式较佳无量纲参数(A=5、β=0.5;称为Modified General Effective Medium of Agriculture,MGEMA),并采用多种农产品颗粒的试验数据验证了MGEMA的可行性、有效性和准确性。结果表明,真实谷粒和模拟谷粒的堆积角误差为0.45%,在农产品颗粒的相对介电常数(2.0~10.0)、相对介电损耗因子(0.1~0.9)、微波频率(2.0~12.2 GHz)、湿基含水率(2.0%~19.7%)和体积分数(18.2%~88.0%)计算条件下,MGEMA公式针对介电常数和介电损耗因子计算结果的最大偏差分别为0.40%和1.20%。研究可为三维情形下颗粒落料堆积型混合物的等效介电特性模拟分析提供一种参考方法,为室温下(24 ℃)小粒径农产品颗粒的介电特性研究提供一个理论公式。

       

      Abstract: The dielectric properties are the response characteristics of bound charge in molecules of matter to external electric field, and the fundamental researches on the dielectric properties of agricultural products can provide a basis for microwave processing, nondestructive sensing, etc. In order to extend the application of general effective medium (GEM) in agricultural engineering and explore the novel calculation method for dielectric properties of agricultural products, granular agricultural products were taken as the study objects in this paper. The simulation model and numerical method for analyzing the effective dielectric properties of the accumulative granular agricultural products were established by using discrete element method, finite element method and average energy method. In addition, a great deal of simulation and experimental measurement was carried out. Based on the comparative analysis of numerical calculation data and experimental measurements data, the best dimensionless parameter of GEM formula for calculating dielectric properties of granular agricultural products at microwave band was proposed as A=5 and β=0.5 ( called Modified General Effective Medium of Agriculture, MGEMA). The feasibility, validity and accuracy of the numerical model and MGEMA formula were verified through experimentally measured data of some kinds of granular agricultural products, including grain, wheat, millet, maize pulp, and rapeseed, etc. The results showed that the repose angle error between the real and simulated of grain particle materials was 0.45%. Under the conditions of dielectric constant (2.0-10.0), dielectric loss factor (0.1-0.9), microwave frequency (2.0-12.2 GHz), moisture content (2.0%-19.7%, wet basis) and volume fraction (18.2 %-88.0 %) of agricultural product particles,the maximum error of dielectric constant and dielectric loss factor that calculated by MGEMA formula were 0.40% and 1.20%, respectively. The accuracy was better than some traditional theoretical formulas. The method can be used for simulation analysis of effective dielectric properties of other kinds accumulation granular agricultural products in three dimension, and the MGEMA provides a theoretical formula with high accuracy for the dielectric properties study of granular agricultural products at room temperature (24 ℃).

       

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