采用辅助热源的太阳能干燥机在不同风量下的性能改善

L.A. Alkahdery
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引用次数: 1

摘要

太阳能干燥是保存农产品最重要的方法之一。本文的主要重点是提高太阳能干燥系统的有效性。新方法和变量的发展可能会对太阳能烘干机的功能产生影响,有助于提高其效率。本文提出并研制了一种用于农产品干燥的间接式太阳能干燥机。为了提高干燥机的性能,设计了一种由太阳能平板空气收集器、绝缘干燥室、辅助(电)热源和电风扇组成的干燥机。烘干机最典型的功能是向产品吹热空气,迫使其中的水分蒸发。实验研究了空气温度和速度对蒸发速率的影响。在0.042、0.0735和0.105 m3/s三种不同的气流速率下进行了试验。当太阳辐射很少或没有太阳辐射时,使用辅助加热器提供足够的热量。对于不同的气流速率,太阳能模式和电模式进行了实验测试,每种模式只有一个能量源。研究结果显示,除了太阳辐射外,使用不同的热源可以使干燥室内的空气温度保持在32到42摄氏度之间。在整个高风速干燥过程中,温度对干燥机性能的影响较小。
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PERFORMANCE IMPROVEMENTOF SOLAR DRYER USINGAN AUXILIARY HEAT SOURCE UNDER DIFFERENT VALUES OF AIRFLOW RATES
One of the most crucial methods for preserving agricultural produce is solar drying. The major focus of this paper is increasing solar drying systems' effectiveness. The development of new methods and variables that may have an impact on the functionality of solar dryers aids in enhancing their efficiency. An indirect-type solar dryer for drying agricultural products is proposed and developed in this study. A dryer consisting of a solar flat plate air collector, an insulated drying chamber, an auxiliary (electric) heat source, and an electric fan is constructed to improve the dryer's performance. The dryer's most typical function is to blow hot air at the product, forcing the water in it to evaporate. The effect of air temperature and velocity on evaporation rate has been studied experimentally. Tests with three different airflow rates—0.042, 0.0735, and 0.105 m3/s—are conducted. When there is little or no solar radiation, an auxiliary heater is used to provide sufficient heat. For varying airflow rates, solar mode and electrical mode were tested experimentally with only one energy source in each mode. The findings revealed that using a different heat source in addition to solar radiation will allow you to keep the air temperature in the drying chamber between 32oCand 42oC. Also, it was found that for the whole drying process at high air velocities, the temperature had less influence on the dryer's performance.
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发文量
15
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