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Facade solar collectors

机译:外墙太阳能集热器

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Rational use of energy in buildings leads to a concept of active energy facades such as transparently insulated massive walls, solar thermal or PV facades, advanced glazings for daylighting purposes or double ventilated facades. The paper is concerned with the facade-integrated solar thermal collectors concept for water heating in the existing building stock in the Czech Republic (panel and brick blocks of flats), which are ready for major renovations. Thermal behavior of facade collectors compared with standard roof-located collectors in solar DHW systems was investigated. Facade solar collectors should have an area increased by approximately 30% to achieve the usual 60% solar fraction compared with conventional roof solar collectors with a 45° slope. Further increases in the solar fraction above 70% lead to a required area comparable with roof collectors but with less stagnation periods compared with roof collectors. Application of facade solar collectors affects the indoor comfort in buildings in a reasonable range. Indoor temperatures increase by no more than 1 K in all investigated configurations. Building behavior is not strongly affected by facade collectors when sufficient insulation layers are present.
机译:在建筑物中合理使用能源产生了主动能量外墙的概念,例如透明隔热的大墙,太阳能热能或PV外墙,用于日光照明的高级玻璃或双层通风外墙。本文关注的是捷克共和国现有建筑材料(面板和砖砌块)中用于水加热的立面集成式太阳能集热器的概念,它们已经准备好进行重大翻新。研究了太阳能DHW系统中立面集热器与标准屋顶集热器的热行为。与具有45°斜度的常规屋顶太阳能集热器相比,外墙太阳能集热器的面积应增加约30%,以实现通常的60%的太阳能分数。太阳能分数进一步增加到70%以上,可以得到与屋顶集热器相当的所需面积,但是与屋顶集热器相比,停滞期更短。外墙太阳能集热器的应用会在合理范围内影响建筑物的室内舒适度。在所有调查的配置中,室内温度的升高不超过1K。当存在足够的隔热层时,建筑物的外观不会受到立面收集器的强烈影响。

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