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Full scale experimentation on a new translucent passive solar wall combining silica aerogels and phase change materials

Authors :
Frédéric Jay
Mireille Tantot-Neirac
Pascal Henry Biwole
Yannick Berthou
Hébert Sallée
Patrick Achard
Centre Procédés, Énergies Renouvelables, Systèmes Énergétiques (PERSEE)
MINES ParisTech - École nationale supérieure des mines de Paris
Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL)
Laboratoire Jean Alexandre Dieudonné (JAD)
Université Côte d'Azur (UCA)-Université Nice Sophia Antipolis (... - 2019) (UNS)
COMUE Université Côte d'Azur (2015-2019) (COMUE UCA)-COMUE Université Côte d'Azur (2015-2019) (COMUE UCA)-Centre National de la Recherche Scientifique (CNRS)
Centre Scientifique et Technique du Bâtiment (CSTB)
CRISTOPIA Energy Systems
Source :
Solar Energy, Solar Energy, Elsevier, 2015, 115, pp.733-742. ⟨10.1016/j.solener.2015.03.038⟩
Publication Year :
2015
Publisher :
Elsevier BV, 2015.

Abstract

International audience; This paper presents the first passive solar wall providing simultaneously super insulation, heat storage and daylighting to the inner space. The wall’s external layer is composed of a silica aerogels bed for high insulation and solar radiation transmission. The second layer, internal, is composed of glass bricks filled with a eutectic phase change material (PCM) for heat storage and restitution. The whole wall is translucent. The experimentations carried out to characterize thermal and optical properties of the materials used are described. Then results are given for a full scale comparative experimentation on a twin zones building located in the south of France for the solar wall and a standard opaque high thermal capacity wall. Results show the heat losses through the wall are very low while the heat and light gains are high: The U value of the solar wall is 0.59 W m−1 K−1 and 0.72 W m−1 K−1 respectively when the PCM is in liquid and solid state. With the test building in free floating condition, the temperature difference between the outdoor and indoor air provided by the wall is about 9 °C in winter. The wall can provide up to 500 lux to the inner environment, which is sufficient for conference rooms. The tested wall has proven more effective in winter and shoulder season, particularly for cold sunny climates, but may cause overheating in summer.

Details

ISSN :
0038092X and 14711257
Volume :
115
Database :
OpenAIRE
Journal :
Solar Energy
Accession number :
edsair.doi.dedup.....49cacc056d7dc5ef4b9f4890b80dfec7
Full Text :
https://doi.org/10.1016/j.solener.2015.03.038