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Towards a homogenous drying rate using a solar fruit dryer

机译:使用太阳能水果干燥机实现均匀的干燥速度

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Solar fruit drying has the potential to reduce food insecurity in developing nations. One possible technique for drying fruit is to use solar dryers. This technique is easy to use without requiring high investments. However, the drying technique can be challenging. One problem is that the drying rate could be different depending on where in the dryer the process takes place. At the beginning of the dryer, the air is dry and warm while at the exit it has picked up moisture from the products and has cooled down. This could result in severe problems for the user. One possible solution is to have an arrangement that inverts the direction of the airflow periodically. This means that the entrance and the exit of the air are shifted. Thus, the drying rate evens out. Results from the performed simulations shows that the difference in drying rate comparing the fastest with the slowest drying rate in the dryer can be reduced from approximately 110 % to 10 % with this approach. Furthermore, this paper also describes how weather condition for a design day was established. This weather condition can be used for more accurate estimates regarding drying rates and temperatures in the solar dryer.
机译:晒干太阳果有减少发展中国家粮食不安全的潜力。干燥水果的一种可能技术是使用太阳能干燥机。该技术易于使用,无需大量投资。但是,干燥技术可能具有挑战性。一个问题是,干燥速度可能会有所不同,具体取决于在干燥机中进行处理的位置。在干燥机开始时,空气干燥温暖,而在出口处,空气从产品中吸收水分并冷却。这可能给用户带来严重的问题。一种可能的解决方案是具有一种周期性地反转气流方向的装置。这意味着空气的入口和出口发生了偏移。因此,干燥速度均匀。进行的仿真结果表明,采用这种方法,干燥机中最快和最慢干燥速率的干燥速率差异可以从大约110%降低到10%。此外,本文还介绍了如何确定设计日的天气条件。此天气状况可用于更准确地估算出太阳能干燥器中的干燥速率和温度。

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