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Determination of drying kinetics and convective heat transfer coefficients of ginger slices

机译:姜片的干燥动力学和对流传热系数的测定

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摘要

In the present work, the effects of some parametric values on convective heat transfer coefficients and the thin layer drying process of ginger slices were investigated. Drying was done in the laboratory by using cyclone type convective dryer. The drying air temperature was varied as 40, 50, 60 and 70 ℃ and the air velocity is 0.8, 1.5 and 3 m/s. All drying experiments had only falling rate period. The drying data were fitted to the twelve mathematical models and performance of these models was investigated by comparing the determination of coefficient (R~2), reduced Chi-square (χ~2) and root mean square error between the observed and predicted moisture ratios. The effective moisture diffusivity and activation energy were calculated using an infinite series solution of Fick's diffusion equation. The average effective moisture diffusivity values and activation energy values varied from 2.807 × 10~(-10) to 6.977 × 10~(-10) m~2/s and 19.313-22.722 kJ/mol over the drying air temperature and velocity range, respectively. Experimental data was used to evaluate the values of constants in Nusselt number expression by using linear regression analysis and consequently, convective heat transfer coefficients were determined in forced convection mode. Convective heat transfer coefficient of ginger slices showed changes in ranges 0.33-2.11 W/m~2 ℃.
机译:在本工作中,研究了一些参数值对生姜片的对流换热系数和薄层干燥过程的影响。在实验室中使用旋风式对流干燥器进行干燥。干燥空气温度分别为40、50、60和70℃,风速为0.8、1.5和3 m / s。所有干燥实验仅具有下降速率期。将干燥数据拟合到十二个数学模型,并通过比较观察到的和预计的水分比之间的系数(R〜2),减少的卡方(χ〜2)和均方根误差的确定来研究这些模型的性能。使用Fick扩散方程的无穷级数解计算有效的水分扩散率和活化能。在干燥空气温度和速度范围内,平均有效湿气扩散率值和活化能值从2.807×10〜(-10)到6.977×10〜(-10)m〜2 / s和19.313-22.722 kJ / mol不等,分别。实验数据用于通过线性回归分析评估Nusselt数表达式中的常数的值,因此,在强制对流模式下确定了对流传热系数。生姜片的对流传热系数在0.33-2.11 W / m〜2℃范围内变化。

著录项

  • 来源
    《Heat and mass transfer》 |2016年第10期|2271-2281|共11页
  • 作者单位

    Mechanical Engineering Department, Firat University, 23279 Elazig, Turkey;

    Mechanical Engineering Department, Firat University, 23279 Elazig, Turkey;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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