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Performance analysis of flat-plate and V-groove solar air collector through CFD simulation

机译:通过CFD模拟平板和V沟太阳能空气收集器的性能分析

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摘要

The simplicity of solar flat plate air collector and free availability of solar energy sources attract attention to the optimization of the collector. This study aims to assess the effect of double pass air flow on the performance of flat plate air collectors. The analysis of the performance characteristics of the indirect solar dryer was carried out by CFD simulation with three different smooth, rough and V-grooved surfaces, keeping the lower and lateral collector well insulated and the drying chamber acting as a vertical chimney. The average thermal efficiency of the V-grooved surface, smooth surface, and rough surface is 90%, 78%, and 62% respectively. The total area of the collector is 1.20 × 2.0 = 2.40 m2 with the dimension of drying cabinet width, depth, and height 1200 × 650 × 1000 mm respectively. The pressure drop observed at the entrance to the drying chamber is high in the case of a smooth surface, medium in a rough surface and low in a V-grooved plate which will allow sufficient gas pressure to pass through completely.The air mass flow rate is the most important and effective factor during drying. The humidity of the air, as well as air velocity, is also an important factor in improving the drying rate. ©2020. CBIORE-IJRED. All rights reserved
机译:太阳能平板空气收集器的简单性和太阳能源的免费可用性引起了收集器的优化。本研究旨在评估双通空气流量对平板空气收集器性能的影响。通过CFD模拟进行间接太阳能干燥器的性能特性的分析,具有三种不同的光滑,粗糙和V沟槽表面,保持下部和横向收集器井绝缘和作为垂直烟囱的干燥室。 V沟槽表面,光滑表面和粗糙表面的平均热效率分别为90%,78%和62%。收集器的总面积为1.20×2.0 = 2.40平方米,尺寸为干燥柜宽度,深度和高度1200×650×1000mm。在干燥室的入口处观察到的压力下降在光滑的表面,粗糙表面中的介质和V槽板中的低的情况下,这将允许充分的气体压力完全通过。空气质量流量是干燥过程中最重要和最有效的因素。空气的湿度以及空气速度,也是提高干燥速率的重要因素。 ©2020。 cbiore-ijred。版权所有

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