Please use this identifier to cite or link to this item: http://hdl.handle.net/1942/31895
Title: Comparative Building Energy Simulation Study of Static and Thermochromically Adaptive Energy-Efficient Glazing in Various Climate Regions
Authors: MANN, Daniel 
Yeung, Cindy
Habets, Roberto
Vroon, Zeger
BUSKENS, Pascal 
Issue Date: 2020
Publisher: MDPI
Source: ENERGIES, 13 (11) (Art N° 2842)
Abstract: The building sector contributes approximately one third of the total energy consumption worldwide. A large part of this energy is used for the heating and cooling of buildings, which can be drastically reduced by use of energy-efficient glazing. In this study, we performed building energy simulations on a prototypical residential building, and compared commercially available static (low-e, solar IR blocking) to newly developed adaptive thermochromic glazing systems for various climate regions. The modeling results show that static energy-efficient glazing is mainly optimized for either hot climates, where low solar heat gain can reduce cooling demands drastically, or cold climates, where low-e properties have a huge influence on heating demands. For intermediate climates, we demonstrate that adaptive thermochromic glazing in combination with a low-e coating is perfectly suited. The newly developed thermochromic glazing can lead to annual energy consumption improvement of up to 22% in comparison to clear glass, which exceeds all other glazing systems. Furthermore, we demonstrate that in the Netherlands the use of this new glazing system can lead to annual cost savings of EU 638 per dwelling (172 m(2), 25% window facade), and to annual nationwide CO2 savings of 4.5 Mt. Ergo, we show that further development of thermochromic smart windows into market-ready products can have a huge economic, ecological and societal impact on all intermediate climate region in the northern hemisphere.
Notes: Mann, D; Buskens, P (corresponding author), Netherlands Org Appl Sci Res TNO, High Tech Campus 25, NL-5656 AE Eindhoven, Netherlands.; Mann, D; Buskens, P (corresponding author), Brightlands Mat Ctr, Urmonderbaan 22, NL-6167 RD Geleen, Netherlands.; Buskens, P (corresponding author), Zuyd Univ Appl Sci, Nieuw Eyckholt 300, NL-6400 AN Heerlen, Netherlands.; Buskens, P (corresponding author), Hasselt Univ, Inst Mat Res Inorgan & Phys Chem, Agoralaan Bldg D, B-3590 Diepenbeek, Belgium.
Daniel.Mann@TNO.nl; cindy.yeung@tno.nl; Roberto.Habets@tno.nl;
Zeger.Vroon@tno.nl; Pascal.Buskens@TNO.nl
Other: Mann, D; Buskens, P (corresponding author), Netherlands Org Appl Sci Res TNO, High Tech Campus 25, NL-5656 AE Eindhoven, Netherlands; Brightlands Mat Ctr, Urmonderbaan 22, NL-6167 RD Geleen, Netherlands. Buskens, P (corresponding author), Zuyd Univ Appl Sci, Nieuw Eyckholt 300, NL-6400 AN Heerlen, Netherlands; Hasselt Univ, Inst Mat Res Inorgan & Phys Chem, Agoralaan Bldg D, B-3590 Diepenbeek, Belgium. Daniel.Mann@TNO.nl; cindy.yeung@tno.nl; Roberto.Habets@tno.nl; Zeger.Vroon@tno.nl; Pascal.Buskens@TNO.nl
Keywords: simulation;modelling;energy consumption;residential building;window;energy-efficient glazing;thermochromics;CO2 emission
Document URI: http://hdl.handle.net/1942/31895
e-ISSN: 1996-1073
DOI: 10.3390/en13112842
ISI #: WOS:000545401100169
Rights: 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
Category: A1
Type: Journal Contribution
Validations: ecoom 2021
Appears in Collections:Research publications

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