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首页> 外文期刊>Drying technology: An International Journal >Solar Drying of Peeled Longan Using a Side Loading Type Solar Tunnel Dryer: Experimental and Simulated Performance
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Solar Drying of Peeled Longan Using a Side Loading Type Solar Tunnel Dryer: Experimental and Simulated Performance

机译:侧装式太阳能隧道干燥机对去皮龙眼的太阳能干燥:实验和模拟性能

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This article presents experimental and simulated results of drying of peeled longan in a side-loading solar tunnel dryer. This new type of solar tunnel dryer consists of a flat-plate solar air heater and a drying unit with a provision for loading and unloading from windows at one side of the dryer. These are connected in series and covered with glass plates. A DC fan driven by a 15-W solar cell module supplies hot air in the drying system. To investigate the experimental performance, five full-scale experimental runs were conducted and 100 kg of peeled longan was dried in each experimental run. The drying air temperature varied from 32 to 76°C. The drying time in the solar tunnel dryer was 16 h to dry peeled longan from an initial moisture content of 84% (w.b.) to a final moisture content of 12% (w.b.), whereas it required 16 h of natural sun drying under similar conditions to reach a moisture content of 40% (w.b.). The quality of solar-dried product was also good in comparison to the high-quality product in markets in terms of color, taste, and flavor. A system of partial differential equations describing heat and moisture transfer during drying of peeled longan in this solar tunnel dryer was developed and this system of nonlinear partial differential equations was solved numerically by the finite difference method. The numerical solution was programmed in Compaq Visual FORTRAN version 6.5. The simulated results agreed well with the experimental data for solar drying. This model can be used to provide the design data and it is essential for optimal design of the dryer.
机译:本文介绍了在侧装式太阳能隧道干燥机中干燥去皮龙眼的实验和模拟结果。这种新型的太阳能隧道式干燥机由平板太阳能空气加热器和干燥单元组成,该干燥单元可从干燥机一侧的窗户进行装卸。它们串联连接并用玻璃板覆盖。由15 W太阳能电池模块驱动的直流风扇为干燥系统提供热空气。为了研究实验性能,进行了五次全面的实验运行,并在每次实验运行中干燥了100公斤去皮的龙眼。干燥空气温度在32至76°C之间变化。在太阳能隧道式干燥机中,干燥时间为16小时,以将去皮的龙眼从初始水分含量为84%(wb)干燥至最终水分含量为12%(wb),而在相似的条件下需要16 h的自然阳光干燥达到40%(wb)的水分含量。与市场上在颜色,口味和风味方面的高品质产品相比,太阳能干燥产品的质量也很好。建立了描述该龙眼干燥机去皮龙眼干燥过程中水分和水分传递的偏微分方程组,并通过有限差分法对该非线性偏微分方程组进行了数值求解。数值解是在Compaq Visual FORTRAN 6.5版中编程的。模拟结果与太阳干燥实验数据吻合良好。该模型可用于提供设计数据,这对于烘干机的最佳设计至关重要。

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