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首页> 外文期刊>Journal of food engineering >Modeling the system performance of multi-tray crop drying using an inclined multi-pass solar air heater with in-built thermal storage
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Modeling the system performance of multi-tray crop drying using an inclined multi-pass solar air heater with in-built thermal storage

机译:使用带有内置蓄热器的倾斜式多程太阳能空气加热器对多托盘农作物干燥的系统性能进行建模

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摘要

This paper presents a periodical analysis of multi-tray crop drying attached to an inclined multi-pass solar air heater with in-built thermal storage. The performance of multi-tray drying integrated with a solar air heater was evaluated for drying of the paddy crop. A parametric study was done for a day of the month of October for the climatic conditions of Delhi (India). The effect of change in the tilt angle, length and breadth of a collector and mass flow rate on the temperature of crop was studied. The thin layer drying equation has been used to study the drying rate and hourly reduction in moisture content in the different trays. It has been observed that the crop moisture content decreases with the drying time of the day. Different drying rate has been observed in different drying trays due to the variation in crop temperatures. The thermal efficiency of the drying increases with increase in mass of the crop.
机译:本文介绍了对带有内置式蓄热器的倾斜式多通道太阳能空气加热器上的多盘作物干燥的定期分析。评估了集成有太阳能空气加热器的多盘干燥的性能,以进行稻谷作物的干燥。针对德里(印度)的气候条件,于10月的某天进行了参数研究。研究了倾斜角,收集器的长度和宽度以及质量流量的变化对农作物温度的影响。薄层干燥方程已用于研究不同托盘中的干燥速率和每小时减少的水分含量。已经观察到,农作物的水分含量随着一天的干燥时间而降低。由于作物温度的变​​化,在不同的干燥盘中观察到了不同的干燥速率。干燥的热效率随着农作物的质量增加而增加。

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