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Evaluation of Test Method for Solar Collector Efficiency

机译:太阳能集热器效率测试方法评估

摘要

The test method of the standard EN12975-2 (European Committee for Standardization, 2004) is used by European test laboratories to determine the efficiency of solar collectors. In the test methods the mean solar collector fluid temperature in the solar collector, Tm is determined by the approximated equation where Tin is the inlet temperature to the collector and Tout is the outlet temperature from the collector. The specific heat of the solar collector fluid is in the test method as an approximation determined as a constant equal to the specific heat of the solar collector fluid at the temperature Tm. The power produced by the solar collector during a test period is determined by the product of the specific heat, the mass flow rate and the temperature increase of the solar collector fluid. The solar collector efficiency is in the standard determined by measurements at different temperature levels. Based on these efficiencies, an efficiency equation is determined by regression analysis. In the test method, there are no requirements on the ambient air temperature and the sky temperature. The paper will present an evaluation of the test method for a 12.5 m² flat plate solar collector panel from Arcon Solvarme A/S. The solar collector panel investigated has 16 parallel connected horizontal absorber fins. CFD (Computational Fluid Dynamics) simulations, calculations with a solar collector simulation program SOLEFF (Rasmussen and Svendsen, 1996) and thermal experiments are carried out in the investigation. The investigations elucidate: • How the mean solar collector fluid temperature Tm is underestimated by the approximated equation in the test standard and how the collector efficiency equation is influenced by the underestimation of Tm. The dependence of the volume flow rate is shown; • How the use of the approximated specific heat of the solar collector fluid is influencing the collector efficiency expression; • How the temperature levels used is influencing the collector efficiency expression; • How the measured collector efficiency is influenced by the weather conditions such as the ambient air temperature and the sky temperature. Based on the investigations, recommendations for change of the test methods and test conditions are considered. The investigations are carried out within the NEGST (New Generation of Solar Thermal Systems) project financed by EU.
机译:欧洲测试实验室使用EN12975-2标准的测试方法(欧洲标准化委员会,2004年)来确定太阳能收集器的效率。在测试方法中,太阳能收集器中的太阳能收集器平均温度Tm由近似方程式确定,其中Tin是收集器的入口温度,Tout是收集器的出口温度。在测试方法中,将太阳能收集器流体的比热作为近似值确定为常数,该常数等于温度Tm下太阳能收集器流体的比热。太阳能收集器在测试期间产生的功率取决于比热,太阳能收集器流体的质量流量和温度升高的乘积。太阳能收集器的效率在标准上是通过在不同温度水平下的测量确定的。基于这些效率,通过回归分析确定效率方程。在测试方法中,对环境空气温度和天空温度没有要求。本文将对Arcon Solvarme A / S的12.5平方米平板太阳能集热板的测试方法进行评估。研究的太阳能集热板具有16个并联的水平吸收器鳍片。 CFD(计算流体动力学)模拟,太阳能收集器模拟程序SOLEFF(Rasmussen和Svendsen,1996)的计算以及热实验均在研究中进行。研究阐明:•如何通过测试标准中的近似方程式低估平均太阳能集热器流体温度Tm,以及如何通过低估Tm来影响收集器效率方程式。显示了体积流量的依赖性; •使用太阳能收集器流体的近似比热如何影响收集器效率表达式; •使用的温度水平如何影响收集器的效率表达; •所测量的收集器效率如何受到天气条件(例如周围空气温度和天空温度)的影响。在调查的基础上,考虑了改变测试方法和测试条件的建议。这项调查是在欧盟资助的NEGST(新一代太阳能热系统)项目中进行的。

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