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On the Characteristics of Thin-Layer Drying Models for Intermittent Drying of Rough Rice

机译:糙米间歇干燥的薄层干燥模型特征

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摘要

In the present study, several drying experiments were carried out to investigate the drying behavior and the feasibility of using the intermittent drying method. Iranian rough rice with the initial moisture content (MC) of 17.65% (dry basis) was dried by a laboratory-scale dryer with an intermediate tempering stage at drying air temperatures of 40 degrees C, 50 degrees C, and 60 degrees C and air velocities of 2.2 and 3.2m/s. According to the experimental results, tempering stage greatly affected the drying performance. Besides, the drying rate was increased with drying temperature; however, the effect of the air velocity was negligible. Various thin-layer drying models were separately examined based on the statistical analysis in order to define the behavior of each drying stages namely pre-tempering and post-tempering. The results indicated that the Midilli and two-term models are the most appropriate models for the first and second drying stages, respectively. The constants and coefficients of these two models can be expressed as a polynomial function of the temperature and velocity of drying air. The parameter estimation procedure was employed in order to evaluate the effective moisture diffusivity.
机译:在本研究中,进行了一些干燥实验,以研究干燥行为和使用间歇干燥方法的可行性。初始水分含量(MC)为17.65%(干基)的伊朗糙米通过实验室规模的干燥机进行中间回火,在40摄氏度,50摄氏度和60摄氏度的干燥空气温度下进行干燥速度为2.2和3.2m / s。根据实验结果,回火阶段大大影响了干燥性能。此外,干燥速率随干燥温度的增加而增加。但是,风速的影响可以忽略不计。基于统计分析,分别检查了各种薄层干燥模型,以定义每个干燥阶段的行为,即回火和回火。结果表明,Midilli模型和两阶段模型分别是第一和第二干燥阶段的最合适模型。这两个模型的常数和系数可以表示为干燥空气的温度和速度的多项式函数。使用参数估计程序来评估有效水分扩散率。

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