首页> 外文会议>ASME international conference on energy sustainability;ES2009 >MODELING, TESTING, AND EVALUATION OF A BUILDING-INTEGRATED PHOTOVOLTAIC-THERMAL COLLECTOR
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MODELING, TESTING, AND EVALUATION OF A BUILDING-INTEGRATED PHOTOVOLTAIC-THERMAL COLLECTOR

机译:建筑集成的光热收集器的建模,测试和评估

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The performance of Building-Integrated Photovoltaic-Thermal (BIPV/T) collector is examined in this study. A full scale-test collector is monitored over several weeks in the summer of 2008 and measured data is used to calibrate a heat transfer model implemented in a common scientific computing software package. Following calibration, error between experimental measurements and the calibrated model outputs is within the limits of measurement uncertainty.Collector simulations are constructed to examine thermal efficiency, the effectiveness of the collector as a night-sky radiator, the effect of heat collection on electrical efficiency, the effect of two common exterior convection coefficients on collector performance, and the effect of eliminating the air gap between the PV and absorber surfaces.Overall collector thermal efficiency is relatively low compared to existing collectors. However, the potential low cost of the system could allow larger collector areas to compensate for low efficiency, especially in warm climates. Combined thermal and electrical efficiency can be as high as 34%. Additional analysis also indicates that the predicted thermal performance is highly dependent on the thermal resistance between the PV cells and the absorber plate and is sensitive to assumptions regarding wind-driven convection heat transfer coefficients.
机译:在这项研究中,检查了建筑物集成式光伏热电(BIPV / T)集热器的性能。在2008年夏季,将在几周内对一个全面测试收集器进行监控,并使用测量数据来校准在通用科学计算软件包中实现的传热模型。校准后,实验测量值与校准后的模型输出之间的误差在测量不确定度的范围内。 构造集热器模拟以检查热效率,集热器作为夜空散热器的有效性,集热对电效率的影响,两个常见的外部对流系数对集热器性能的影响以及消除气隙的影响在PV和吸收体表面之间。 与现有的集热器相比,集热器的整体热效率相对较低。但是,该系统的潜在低成本可能使较大的收集器面积补偿低效率,尤其是在温暖的气候下。热和电的综合效率可高达34%。附加分析还表明,预测的热性能高度依赖于PV电池与吸收板之间的热阻,并且对有关风对流传热系数的假设敏感。

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