用于干燥农作物的平板太阳能集热器的热性能

Fatema Al Kindi, Talal Al-Shukaili, P. Pathare, Farooq Al Jahwari, N. Al-Azri, Ohood Al Ghadani
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引用次数: 0

摘要

在本研究中,采用有限体积法对用于农作物干燥的平板太阳能集热器的热性能进行了评价。建立了三维数值模型,并用于预测三种进口风速下的出口风速和温度。将数值预测结果与实验结果进行了比较,结果表明,在所有试验条件下,数值预测结果吻合较好。然后,利用数值模型对集热器的内部气流和传热特性进行了预测。内部挡板增加了停留时间和效率,但也促进了流动分离,造成了流动损失。此外,集热器有一个透明的盖子,导致大量的热损失,这可以通过在集热器内部的流动和盖子之间增加一个真空间隙来减轻。增大流量,热损失增大,吸热量减小,集热器进出口温差减小。由于热量是通过透明罩和侧壁的长波辐射散失的,因此在吸收板上涂上黑色哑光漆以增加太阳辐射吸收系数并没有改善干燥性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermal Performance of a Flat-Plate Solar Collector for Drying Agricultural Crops
In this study, the finite volume method was used to evaluate the thermal performance of a flat-plate solar collector used to dry agricultural crops. A 3D numerical model was created and used to predict the outlet air velocities and temperatures for three inlet air velocities. When compared with experimental measurements, the numerical predictions showed good agreement under all testing conditions. Then, the numerical model was used to predict the internal airflow and heat transfer characteristics of the collector. The internal baffles were found to increase the dwell time and efficiency but also promote flow separation, which resulted in flow loss. In addition, the collector has a transparent cover that results in a substantial heat loss, which can be mitigated by adding a vacuum gap between the flow inside the collector and the cover. Increasing the flow rate increased the heat loss and decreased the heat uptake, which decreased the temperature difference between the inlet and outlet of the collector. Because the heat was lost through long-wavelength radiation via the transparent cover and sidewalls, coating the absorber plate with black matte paint to increase the solar radiation absorption coefficient did not improve the drying performance.
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CiteScore
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