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Energy performance of water hybrid PV/T collectors applied to combisystems of Direct Solar Floor type

机译:应用于直接太阳能落地式组合系统的水混合PV / T集热器的能源性能

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摘要

The integration of photovoltaic (PV) modules in buildings allows one to consider a multifunctional frame and then to reduce the cost by substitution of components. In order to limit the rise of the cell operating temperature, a photovoltaics/thermal (PV/T) collector combines a solar water heating collector and PV cells. The recovered heat energy can be used for heating systems and domestic hot water. A combination with a Direct Solar Floor is studied. Its low operating temperature level is appropriate for the operating conditions of the mono- or poly-crystalline photovoltaic modules which are selected in that study. However, for a system including a glass covered collector and localised in Macon area in France, we show that the annual photovoltaic cell efficiency is 6.8% which represents a decrease of 28% in comparison with a conventional non-integrated PV module of 9.4% annual efficiency. This is obviously due to a temperature increase related to the cover. On the other hand, we show that without a glass cover, the efficiency is 10% which is 6% better than a standard module due to the cooling effect.rnMoreover, in the case of a glazed PV/T collector with a conventional control system for Direct Solar Floor, the maximum temperature reached at the level of the PV modules is higher than 100 ℃. This is due to the oversize of the collectors during the summer when the heating needs are null, i.e. without a heated swimming pool for example. This temperature level does not allow the use of EVA resin (ethylene vinyl acetate) in PV modules due to strong risks of degradation. The current solution consists of using amorphous cells or, if we do not enhance the thermal production, uncovered PV/T collector. Further research led to water hybrid PV/T solar collectors as a one-piece component, both reliable and efficient, and including the thermal absorber, the heat exchanger and the photovoltaic functions.
机译:建筑物中光伏(PV)模块的集成使人们可以考虑使用多功能框架,然后通过替换组件来降低成本。为了限制电池工作温度的升高,光伏/热(PV / T)收集器将太阳能热水收集器和PV电池组合在一起。回收的热能可用于加热系统和生活热水。研究了与直接太阳能地板的组合。其较低的工作温度水平适用于该研究中选择的单晶或多晶光伏模块的工作条件。但是,对于包含玻璃覆盖的集热器并位于法国梅肯地区的系统,我们显示年光伏电池效率为6.8%,与传统的非集成光伏模块的年效率9.4%相比降低了28%。效率。显然这是由于与盖有关的温度升高。另一方面,我们显示出没有玻璃盖的情况下,由于具有冷却效果,效率为10%,比标准模块高6%。此外,在采用常规控制系统的PV / T玻璃集热器的情况下对于直接太阳能地板,在光伏模块水平达到的最高温度高于100℃。这是由于在夏季供暖需求为零时(例如,没有温水游泳池的情况下),集热器的尺寸过大。由于存在很大的降解风险,该温度水平不允许在PV模块中使用EVA树脂(乙烯乙酸乙烯酯)。当前的解决方案包括使用非晶电池,或者,如果我们不提高热量生产,则使用未覆盖的PV / T集热器。进一步的研究导致水混合式PV / T太阳能集热器成为一体的组件,既可靠又高效,并且包括吸热器,热交换器和光伏功能。

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