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Solar Facade Module for Nearly Zero Energy Building. Optimization Strategies

机译:太阳能门面模块用于近零能量建筑。优化策略

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The study presented in this paper is a continuation of small-scale passive solar wall module testing to evaluate: 1) the impact of phase change material embedded in building envelope on indoor air temperature in comparison to reference wall insulated with mineral wool 2) the impact of Fresnel lens on heat transfer processes in designed module compared to PMMA acrylic glass. Six different solar wall modules and a reference wall module were built and tested in a laboratory under controlled conditions. Compared to previous studies, changes in the experimental setup were made - solar radiation intensified, simulated outdoor temperature adjusted. The study shows explicitly the phase change melting processes in different modules tested, describing the differences between modules and impact of Fresnel lenses and insulation solutions. Room temperature with solar wall modules after the full cycle of charging and discharging latent and sensible energy (24 h) is higher than in the reference wall. Two of 3 of the proposed solar wall modules with Fresnel lens are more effective than modules with PMMA.
机译:本文提出的研究是小规模无源太阳能墙体模块测试的延续评价:1)相变材料嵌入在室内空气温度上的相变材料与矿物羊毛绝缘相比,与矿物羊毛2)的影响相比与PMMA丙烯酸玻璃相比,设计模块中传热过程的菲涅耳透镜。在受控条件下在实验室内建造和测试六种不同的太阳能壁模块和参考墙模块。与以前的研究相比,制造了实验设置的变化 - 太阳辐射强化,模拟室外温度调节。该研究显示了测试的不同模块中的相变熔化过程,描述了模块与菲涅耳透镜和绝缘解决方案的影响之间的差异。室温与太阳能壁模块充电和放电潜伏的完整循环和明智的能量(24小时)高于参考墙。其中3个具有菲涅耳透镜的太阳能壁模块中的两个比具有PMMA的模块更有效。

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