不同太阳能空气集热器的数学建模与性能分析

A. Karim, Z. Amin
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引用次数: 10

摘要

使用太阳能空气集热器的目的是将大气温度提高到可用于各种中低温应用的温度。集热器、吸收体和气流布置是太阳能空气集热器的重要组成部分。集热器的性能取决于它的热损失和与气流接触的吸收面积。本研究涉及的理论模拟质量流量对性能的影响,平板和v型槽集热器在单和双通道配置。结果表明,v型槽双通式集风器效率最高,达到56%。性能优于平板双通集热器,在相同工况下效率可达54%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mathematical modelling and performance analysis of different solar air collectors
The purpose of using solar air collectors is to raise the atmospheric air temperature to a temperature which can be used for various low and medium temperature applications. Collector, absorber and airflow arrangement are the most important components in the solar air collector. The performance of the collector depends on its heat loss and the absorber area that is in contact with the airflow. This study involves the theoretical simulation of the effect of mass flow rate on the performance, for flat plate and v-groove collectors that are in single and double pass configurations. Results show that the v-groove double pass air collector has the highest efficiency value of 56% at . The performance is greater than flat plate double pass collector, which has an efficiency of 54% under the same operating conditions.
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