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Energy, exergy and environmental impact analysis on the novel indirect solar dryer with fins inserted phase change material

机译:具有翅片插入相变材料的新型间接太阳能干燥器的能量,高度和环境影响分析

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摘要

Solar energy is a widely used green energy resource that is used for drying processes. Through this assessment, the performance of an Indirect Solar Dryer (ISD) with three different cases, namely solar collector - without Thermal Energy Storage (TES), with TES unit having Phase Change Material (PCM) and with TES having fins inserted PCM have been experimentally analyzed during spring and summer seasons for drying Momordica charantia. Totally six experiments were undertaken to compare temperature, drying kinetics, and energy analyses. The initial moisture level of 2 kg of specimen decreased from 1.84 kg of water (92% w. b) to 0.24 kg of water (12% w. b) in 10.5 h utilizing ISD with TES having fins inserted PCM (Test 6). The maximum thermal efficiency achieved about 19.41% on Test 6. Exergy efficiency increased from 8.66% to 79.02% at Test 6. Environmental impacts assessment has revealed that the Energy Payback Time for the ISD was 1.42 years. The CO2 emission, mitigation, and carbon credit gained (Test 6) are 23.88 kg/year, 20.13 tons, and $100.642 to $402.569 for the 35 years' intended lifespan. The assessment report showed that the device established was a potentially effective commercial drying technique, both in energy utilization and environmental sustainability. (C) 2021 Elsevier Ltd. All rights reserved.
机译:太阳能是一种广泛使用的绿色能源,用于干燥过程。通过该评估,具有三种不同情况的间接太阳能干燥器(ISD)的性能,即太阳能收集器 - 没有热能存储器(TES),具有具有相变材料(PCM)和具有插入PCM的鳍片的TES的TES单元在春季和夏季进行实验分析,用于干燥Momordica Charantia。完全六次实验进行了比较温度,干燥动力学和能量分析。 2千克标本的初始水分水平从1.84千克水(92%w.b)降至0.24千克水(12%w.b),在10.5小时,利用具有插入PCM的鳍片的TES(测试6)。最高热效率达到约19.41%的试验6.高级效率从试验6.66%增加到79.02%增加到79.02%。环境影响评估显示ISD的能量投资回收期为1.42岁。已获得的二氧化碳排放,减缓和碳信用(测试6)为23.88公斤/年,20.13吨,35年预定的寿命为100.642美元至402.569美元。评估报告表明,该设备建立是一种潜在有效的商业干燥技术,无论是能源利用和环境可持续性。 (c)2021 elestvier有限公司保留所有权利。

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