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Design and experimental optimisation of a novel flat plate solar thermal collector with trapezoidal shape for facades integration

机译:一种新型梯形平板太阳能集热器的立面集成设计与实验优化

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摘要

For developing solar thermal facades, new efficient flat plate solar thermal collectors are required, fulfilling the prerequisites of efficiency and architectural acceptance, with new shapes and/or new colours. A new flat plate solar thermal collector, with isosceles trapeze shape was developed and stepwise optimised focussing on the insulation, the bonding between the tubes and the absorber plate, the meander tube length and diameter, and the glazing. The results show that the improved contact between the tubes and the absorber plate has a significant effect on the experimental conversion efficiency, as also the tubes with larger diameters have. A self-cleaning coating applied on the outer side of the glazing, deposited through a simple cold-spraying process has a beneficial effect on the collector's functionality, without significant efficiency losses. To support architectural integration, a concept of a multi-coloured absorber plate is formulated and tested. Eight types of solar thermal collectors were tested and the optimised version reached a 60.7% efficiency on an indoor testing rig, corresponding to a 62.38% maximum conversion efficiency estimated based on steady-state experimental conditions. Outdoor testing of the optimal collector is reported for a sunny day that includes 2 h with solar radiation in the same range as on the indoor testing rig when efficiencies of 61.85% were obtained. (C) 2015 Elsevier Ltd. All rights reserved.
机译:为了开发太阳能热立面,需要新的高效平板太阳能集热器,以新的形状和/或新的颜色满足效率和建筑可接受性的先决条件。研发了一种具有等腰梯形形状的新型平板太阳能集热器,并逐步进行了优化,重点是隔热,管与吸收板之间的结合,曲折管的长度和直径以及玻璃窗。结果表明,管和吸收板之间的改善的接触对实验转化效率具有显着影响,直径较大的管也具有显着影响。通过简单的冷喷涂工艺沉积在玻璃窗外侧的自清洁涂层对集热器的功能具有有益的影响,而没有明显的效率损失。为了支持架构集成,制定并测试了多色吸收板的概念。对八种类型的太阳能集热器进行了测试,优化后的版本在室内测试台上达到了60.7%的效率,相当于根据稳态实验条件估算的最大转换效率为62.38%。据报道,最佳集热器的室外测试是在晴天进行的,包括2小时的太阳辐射,其效率与室内测试装置相同,达到61.85%。 (C)2015 Elsevier Ltd.保留所有权利。

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