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A review of thermal absorbers and their integration methods for the combined solar photovoltaic/thermal (PV/T) modules

机译:太阳能光伏/热电(PV / T)组合模块的吸热器及其集成方法综述

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摘要

Thermal absorbers and their integration methods are critical to solar photovoltaic/thermal (PV/T) modules. These two elements directly influence the cooling effort of PV layers and as a result, the related electrical/thermal/overall efficiency. This paper conducts a critical review on the essential thermal absorbers and their integration methods for the currently-available PV modules for the purpose of producing the combined PV/T modules. A brief overview of different PV/T technologies is initially summarized, including aspects of their structure, efficiencies, thermal governing expressions and their applications. Seven different types of thermal absorbers and four corresponding integration methods are subsequently discussed and summarized in terms of their advantages/disadvantages and the associated application for various PV/T modules. Compared to traditional thermal absorbers, such as sheet-and-tube structure, rectangular tunnel with or without fins/grooves and flat-plate tube, these four types, i.e. micro-channel heat pipe array/heat mat, extruded heat exchanger, roll-bond heat exchanger and cotton wick structure, are promising due to the significant enhancement in terms of efficiency, structure, weight, and cost etc. The appropriate or suitable integration method varies in different cases, i.e. the ethylene-vinyl acetate (EVA) based lamination method seems the best option for integration of PV layer with thermal absorber when compared with other conventional methods, such as direct contact, thermal adhesive and mechanical fixing. Finally, suggestions for further research topics are proposed from five aspects. The overall research results would provide useful information for the assistance of further development of solar PV/T modules with high feasibility for widespread application in energy supply even at district or city-level in the near future.
机译:吸热器及其集成方法对于太阳能光伏/热能(PV / T)模块至关重要。这两个因素直接影响PV层的冷却效果,并因此影响相关的电/热/总体效率。本文对目前生产的光伏组件的基本吸热器及其集成方法进行了严格的审查,目的是生产组合式PV / T组件。首先简要概述了不同的PV / T技术,包括其结构,效率,热调节表达式及其应用等方面。随后针对其优点/缺点以及各种PV / T模块的相关应用,对七种不同类型的吸热器和四种相应的集成方法进行了讨论和总结。与传统的吸热器相比,如板-管结构,带或不带散热片/沟槽的矩形隧道和平板管,这四种类型分别为微通道热管阵列/加热垫,挤压式热交换器,辊式由于效率,结构,重量和成本等方面的显着提高,粘结式热交换器和棉芯结构很有希望。合适的或合适的集成方法在不同情况下会有所不同,即基于乙烯-乙酸乙烯酯(EVA)的层压与其他常规方法(例如直接接触,热粘合和机械固定)相比,该方法似乎是将PV层与吸热剂集成在一起的最佳选择。最后,从五个方面提出了进一步研究课题的建议。总体研究结果将为进一步开发太阳能PV / T组件提供有用的信息,即使在不久的将来甚至在地区或城市一级,也可广泛应用于能源供应中。

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