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CFD modeling and evaluation the performance of a solar cabinet dryer equipped with evacuated tube solar collector and thermal storage system

机译:CFD建模和评估配备真空管太阳能集热器和储热系统的太阳能柜式干燥机的性能

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This paper investigates the performance of a solar cabinet drying system equipped with a heat pipe evacuated tube solar collector (ETSC) and thermal storage system with application of PCM. The thermal analysis of the solar collector, drying efficiency, CFD modeling of the system and quality evaluation of dried apple slices was considered. The performance of the dryer was simulated and validated by experimental data. The experiments was conducted at three air flow rates (0.025, 0.05 and 0.09 kg/s) for the drying system with and without using PCM for drying apple slices with the thickness of 5 mm. The result of thermal analysis showed that using PCM increases the input thermal energy about 1.72% and 5.12% for the air flow rates of 0.025 and 0.05 kg/s respectively, but excessive increase in air flow rate (up to 0.05 kg/s) decreases input thermal energy. The maximum overall drying efficiency was related to the system with PCM at the air flow rate of 0.025 kg/s and it was 39.9%. CFD simulation of the storage system and the dryer showed that there is a good agreement between the simulated and experimental. Using PCM has no adverse effect on the quality of the dried product. (C) 2019 Published by Elsevier Ltd.
机译:本文研究了配备热管真空管太阳能集热器(ETSC)和热存储系统并采用PCM的太阳能柜干燥系统的性能。考虑了太阳能收集器的热分析,干燥效率,系统的CFD建模以及干燥苹果片的质量评估。通过实验数据对干燥机的性能进行了仿真和验证。对于使用和不使用PCM干燥厚度为5 mm的苹果片的干燥系统,以三种空气流速(0.025、0.05和0.09 kg / s)进行实验。热分析结果表明,使用PCM时,空气流量分别为0.025和0.05 kg / s时,输入热能分别增加约1.72%和5.12%,但是空气流量的过度增加(最高0.05 kg / s)会降低输入热能。最大的总干燥效率与空气流量为0.025 kg / s的PCM系统有关,为39.9%。储存系统和干燥机的CFD仿真表明,仿真和实验之间有很好的一致性。使用PCM对干燥产品的质量没有不利影响。 (C)2019由Elsevier Ltd.发布

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