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Experimental investigation of an indirect-mode forced convection solar dryer for drying thymus and mint

机译:间接模式强制对流太阳能干燥机干燥胸腺和薄荷的实验研究

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摘要

An indirect-mode forced convection solar dryer was designed and fabricated. The thermal performance of the solar dryer under Tanta (latitude, 30° 47'N and longitude, 31°E) prevailing weather conditions was experimentally investigated. The system consists of a double pass v-corrugated plate solar air heater connected to a drying chamber. A blower was used to force the heated air to the drying chamber. Drying experiments were performed for thymus (initial moisture content 95% on wet basis) and mint (initial moisture content 85% on wet basis) at an initial temperature of 29℃. The final moisture contents for thymus and mint were reached after 34 and 5 h, respectively. Fourteen mathematical models of thin layer drying were tested to specify the suitable model for describing the drying behavior of the studied products. It was found that, Midilli and Kucuk model is convenient to describe the thin layer solar drying of mint. However, the Page and modified Page models were found to be the best among others for describing the drying curves of thymus.
机译:设计并制造了一种间接模式强制对流太阳能干燥机。通过实验研究了坦塔(纬度为30°47'N,经度为31°E)下太阳能干燥器的热性能。该系统由一个与干燥室相连的双通道V型波纹板太阳能空气加热器组成。使用鼓风机迫使加热的空气进入干燥室。在29℃的初始温度下对胸腺(湿基的初始水分含量为95%)和薄荷(湿基的初始水分含量为85%)进行了干燥实验。胸腺和薄荷的最终水分分别在34和5小时后达到。测试了14个薄层干燥的数学模型,以指定用于描述所研究产品的干燥行为的合适模型。研究发现,Midilli和Kucuk模型可以方便地描述薄层太阳干燥的薄荷。但是,发现Page和改良的Page模型是描述胸腺干燥曲线的最佳模型。

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