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  4. Predicting the thermal performance of thermochromic flat plate solar collectors
 
conference paper

Predicting the thermal performance of thermochromic flat plate solar collectors

Krammer, Anna  
•
Schüler, Andreas  
2019
Journal of Physics: Conference Series
CISBAT 2019 | Climate Resilient Cities – Energy Efficiency & Renewables in the Digital Era

A thermochromic vanadium dioxide (VO2) based absorber coating is proposed. The optical response of the multilayered absorber is first simulated, then, the spectral reflectance of the deposited absorber is measured. The determined solar absorptance and thermal emittance values are used to predict the thermal performance of the thermochromic flat plate solar collector. The corresponding stagnation temperature is estimated to be ~25°C lower than that of a standard collector. This is mostly due to the increase in emissivity over the thermochromic phase transition and, partially, to a lower solar absorptance than in standard absorbers. However, a concurrent increase of the solar absorptance over the phase transition limits the overheating protection abilities of the thermochromic collector. Alternative scenarios based on thermochromic absorbers with assumed, constant solar absorptances and the same temperature dependent thermal emittance as determined for the measured sample, are considered. The corresponding thermal performances and stagnation temperatures are predicted and discussed.

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Type
conference paper
DOI
10.1088/1742-6596/1343/1/012201
Author(s)
Krammer, Anna  
Schüler, Andreas  
Date Issued

2019

Publisher

IOP Science

Published in
Journal of Physics: Conference Series
Volume

1343

Start page

012201

Note

Content from this work may be used under the terms of the Creative Commons Attribution 3.0 licence.

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LESO-PB  
Event nameEvent placeEvent date
CISBAT 2019 | Climate Resilient Cities – Energy Efficiency & Renewables in the Digital Era

Lausanne, Switzerland

September 4-6, 2019

Available on Infoscience
January 29, 2020
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/164987
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