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Effect of Drying Air Velocity on Drying Kinetics of Tomato Slices in a Forced-Convective Solar Tunnel Dryer

机译:强迫风对流太阳能隧道式干燥机中干燥速度对番茄片干燥动力学的影响

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摘要

The objective of this work is to analyse the extent to which a change in the drying air velocity may affect the drying kinetics of tomato in a forced-convective solar tunnel dryer. 2 m-s~(-1) (V_1)(and 3 m-s~(-1) (V_2) air speeds were applied in similar drying air temperature and humidity conditions. Main drying constants calculated included the drying rate, the drying time and the effective water diffusivity based on the derivative form of the Fick's second law of diffusion. Henderson and Pabis Model and Page Model were used to describe the drying kinetics of tomato. We found that solar drying of tomato occurred in both constant and falling-rate phases. The Page Model appeared to give a better description of tomato drying in a forced-convective solar tunnel dryer. At t = 800 min, the drying rate was approximately 0.0023 kg of water/kg dry matter when drying air velocity was at 2 m/s. At the same moment, the drying rate was higher than 0.0032 kg of water/kg dry matter when the drying air velocity was 3 m/s. As per the effective water diffusivity, its values changed from 2.918E-09 m~2·s~(-1) to 3.921E-09 m~2·s~(-1) when drying air velocity was at 2 and 3 m-s~(-1) respectively, which is equivalent to a 25% increase. The experimentations were conducted in Niamey, on the 1st and 5th of January 2019 for V_2 and V_1 respectively. For both two experiments, the starting time was 9:30 local time.
机译:这项工作的目的是分析在强制对流太阳能隧道式干燥机中,干燥空气速度的变化可能会影响番茄的干燥动力学的程度。在相似的干燥温度和湿度条件下,风速分别为2 ms〜(-1)(V_1)(3 ms〜(-1)(V_2)),计算出的主要干燥常数包括干燥速率,干燥时间和有效干燥时间。基于菲克第二扩散定律的导数形式的水扩散率,使用亨德森和帕比斯模型和佩奇模型描述了番茄的干燥动力学,我们发现番茄的太阳能干燥发生在恒速和降速阶段。 Page Model似乎更好地描述了强制对流太阳能隧道式干燥机中番茄的干燥过程,在t = 800 min时,当干燥空气速度为2 m / s时,干燥速率约为0.0023 kg水/ kg干物质。同时,当干燥风速为3 m / s时,干燥速率高于0.0032 kg水/ kg干物质,根据有效水扩散率,其值从2.918E-09 m〜2·s变化干燥风速分别为2和3 ms时〜(-1)至3.921E-09 m〜2·s〜(-1)分别相当于增加了25%。实验分别于2019年1月1日和5日在尼亚美针对V_2和V_1进行。对于这两个实验,开始时间均为当地时间9:30。

著录项

  • 来源
    《Journal of Sustainable Bioenergy Systems》 |2019年第2期|64-78|共15页
  • 作者单位

    Energy-Environment-Development Niger (ENDA Energy Niger), Niamey, Niger,Laboratoire d'Energetique, d'Electronique, d'Electrotechnique, d'Automatique et d'Informatique Industrielle (LEEII), Universite Abdou Moumouni, Niamey, Niger;

    Laboratoire d'Energetique, d'Electronique, d'Electrotechnique, d'Automatique et d'Informatique Industrielle (LEEII), Universite Abdou Moumouni, Niamey, Niger;

    Laboratoire d'Energetique, d'Electronique, d'Electrotechnique, d'Automatique et d'Informatique Industrielle (LEEII), Universite Abdou Moumouni, Niamey, Niger;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Solar Dryer; Tomato; Air Velocity; Modeling; Diffusivity;

    机译:太阳能干燥机番茄;风速造型;扩散性;

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