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Performance of a building integrated collector for solar heating and radiant cooling

机译:建筑物集成式太阳能集热器和辐射冷却器的性能

摘要

Due to their limited temperature range, unglazed solar collectors have long been relegated to providing low cost heating in applications such as swimming pool heating systems. This limited temperature range is due to heat loss: firstly by convection to the surrounding air and secondly by radiant heat transfer to the cold sky. During the day an unglazed collector can be operated as a standard solar absorber to heat water in a storage tank. However, it is possible to take advantage of radiant cooling of unglazed solar collectors by operating them at night. Under night conditions when there is no solar radiation and the sky temperature is low, the collector can radiate heat to the sky and cool a cold storage tank to provide cooling in the building the following day. This study theoretically and experimentally examines the performance of a building integrated collector for heating and cooling and explores the contribution it can make to heating and cooling loads in typical New Zealand and Australian buildings.
机译:由于其有限的温度范围,无釉太阳能集热器长期以来一直被贬低以在诸如游泳池加热系统的应用中提供低成本的加热。这种有限的温度范围是由于热损失造成的:首先是通过对流到周围空气,其次是通过辐射热传递到寒冷的天空。白天,可以将无釉收集器用作标准的太阳能吸收器,以加热储水箱中的水。但是,有可能通过在夜间操作无釉太阳能集热器进行辐射冷却。在没有太阳辐射且天空温度低的夜晚条件下,集热器可以向天空散发热量,并冷却蓄冷槽以在第二天为建筑物提供冷却。这项研究从理论上和实验上考察了建筑物集成供热和制冷系统的性能,并探讨了其对典型的新西兰和澳大利亚建筑物的供热和制冷负荷的贡献。

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