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首页> 外文期刊>Journal of Cleaner Production >Energy analysis of hybrid solar tunnel dryer with PV system and solar collector for drying mint (MenthaViridis)
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Energy analysis of hybrid solar tunnel dryer with PV system and solar collector for drying mint (MenthaViridis)

机译:具有光伏系统和太阳能收集器的混合式太阳能隧道干燥机的能量分析,用于干燥薄荷(MenthaViridis)

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This work aims to develop a hybrid portable solar tunnel dryer and enhance its performance using solar photovoltaic system and flat plate solar collector for drying peppermint. The solar tunnel dryer can work in mixed mode (direct and indirect thermal heating). The photovoltaic system is used to operate an axial direct current fan (forced mode). Also, the solar tunnel dryer is provided with a thermal curtain to shade mint and protect it from direct solar radiation. The solar tunnel dryer performance is evaluated by using single, double and three layers of mint, and compared with open sun drying. Predicted and experimental moisture ratio of mint leaves using developed solar tunnel dryer were compared through several models of thin-layer drying. The effect of embodied energy of the developed hybrid solar tunnel dryer on environment was studied. Results indicated that the drying time of peppermint was varied from 210 to 360 min for the developed dryer, while varied from 270 to 420 min for open sun drying. It has been noticed that peppermint drying happened in falling-rate period. The two-term model was the best model to simulate the solar thin layer drying process of peppermint for all treatments. The daily average photovoltaic efficiency was 9.38%, dryer efficiency was 30.71%, overall efficiency was 16.32%, energy payback time was 2.06 years and net carbon dioxide (CO2) mitigation over the lifetime was 31.80 tons. The quality of the dried peppermint by using black thermal curtain in the solar tunnel dryer is higher than that dried in the open sun as the natural color and the appearance are retained more under shading. This system is quite useful for people living in remote areas, where grid connectivity is not available and it can meet the demand of farmers. (c) 2018 Elsevier Ltd. All rights reserved.
机译:这项工作旨在开发一种混合便携式太阳能隧道式干燥机,并使用太阳能光伏系统和平板太阳能收集器来干燥薄荷,从而提高其性能。太阳能隧道干燥机可以混合模式(直接和间接加热)工作。光伏系统用于操作轴流直流风扇(强制模式)。此外,太阳能隧道干燥机还配备了热幕,以遮蔽薄荷并保护其免受太阳直射。通过使用单层,双层和三层薄荷来评估太阳能隧道式干燥机的性能,并将其与露天防晒进行比较。通过几种薄层干燥模型,比较了使用开发的太阳能隧道干燥机对薄荷叶的预测水分和实验水分比。研究了开发的混合式太阳能隧道干燥机的内含能量对环境的影响。结果表明,对于发达的干燥机,薄荷的干燥时间在210至360分钟之间变化,而对于开放式阳光干燥,其干燥时间在270至420分钟之间变化。已经注意到,薄荷干燥发生在下降速率时期。两项模型是模拟所有处理中薄荷的太阳能薄层干燥过程的最佳模型。日平均光伏效率为9.38%,干燥机效率为30.71%,总效率为16.32%,能源回收时间为2.06年,使用寿命内净二氧化碳(CO2)减排量为31.80吨。通过在太阳能隧道式干燥机中使用黑色热帘来干燥薄荷的质量要高于在露天阳光下干燥的薄荷,因为在阴影下其自然色和外观保留得更多。该系统对偏远地区的人们非常有用,因为那里的电网不可用,可以满足农民的需求。 (c)2018 Elsevier Ltd.保留所有权利。

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