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Performance and heat transfer analysis of uncovered photovoltaic-thermal collectors with detachable compound

机译:具有可分离化合物的未发现光伏集热器的性能和传热分析

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Concerning the manufacturing of uncovered, liquid-based photovoltaic-thermal (PVT) collectors, design requirements or low expenses have higher priority than the all-out optimization of the thermal efficiency. The specific impact of inevitable thermal resistances caused by wavy surfaces and imperfect contacts between PV modules and heat exchangers has not been comprehensively investigated yet. This paper focuses on the performances of uncovered PVT collectors with detachable mounting of PV modules on heat exchangers and the effect of macroscopic air gaps. Two prototypes with thin film modules were built without using silicon glue, other adhesives or heat conductive paste. Measured in sun simulator in electrical open-circuit mode, the thermal zero-loss efficiencies for the adhesive-free collectors are η0,M = 66.8% (copper pipe meander laser-welded on aluminium sheet) and η0,M = 69.2 % (aluminium roll-bond) based on gross areas. These results are similar or better than the efficiencies of commercially available collectors. Due to the thermal resistance of air gaps, we calculated temperature differences of 12 K and higher between absorbing sheets and heat carrier, which have to be considered while estimating the electrical yield by means of system simulations. For comparison, we built a prototype with a roll-bond heat exchanger and a very thin adhesive layer and thereby an optimized heat transport (η0,M = 76.8 %). Using numerical, two-dimensional models, we can verify the efficiency measurements and determine the influence of design and boundary conditions on heat transfer mechanisms in the collectors. Simulations show good agreement with experimental results and prove to be an effective tool for design optimization.
机译:关于裸露的,基于液体的光伏热(PVT)收集器的制造,设计要求或较低的成本比全面优化热效率具有更高的优先级。波纹表面和光伏组件与热交换器之间不完美接触所引起的不可避免的热阻的具体影响尚未得到全面研究。本文着重于将可拆卸安装的PV模块安装在热交换器上的未发现的PVT集热器的性能以及宏观气隙的影响。在不使用硅胶,其他粘合剂或导热胶的情况下,制造了两个带有薄膜模块的原型。在电气开路模式下在太阳模拟器中测量,无粘合剂集热器的热零损耗效率为η0,M = 66.8%(铜管曲折激光焊接在铝板上)和η0,M = 69.2%(铝)卷装式))。这些结果与市售收集器的效率相似或更好。由于气隙的热阻,我们计算出吸热片和热载体之间的温差为12 K或更高,在通过系统仿真估算电气产量时必须考虑这些温差。为了进行比较,我们建立了一个带有辊压式换热器和一个非常薄的粘合剂层的原型,从而优化了热传递(η0,M = 76.8%)。使用数值二维模型,我们可以验证效率测量结果,并确定设计和边界条件对集热器中传热机制的影响。仿真结果与实验结果吻合良好,被证明是进行设计优化的有效工具。

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