Conference article

Theory Versus Practice of Energy and Comfort in 4 Low Energy Houses in Belgium

Griet Verbeeck
PHL University College, Diepenbeek, Belgium

Werner Carmans
PHL University College, Diepenbeek, Belgium

Veerle Martens
PHL University College, Diepenbeek, Belgium

Download articlehttp://dx.doi.org/10.3384/ecp110572080

Published in: World Renewable Energy Congress - Sweden; 8-13 May; 2011; Linköping; Sweden

Linköping Electronic Conference Proceedings 57:44, p. 2080-2087

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Published: 2011-11-03

ISBN: 978-91-7393-070-3

ISSN: 1650-3686 (print), 1650-3740 (online)

Abstract

Climate change made governments introduce energy performance regulations like the Energy Performance of Buildings Directive (EPBD) and these regulations will be tightened in the future. However; the real performance of current low energy dwellings does not always match the theoretical expected performance and therefore lessons can be learned from the real performance of these houses for future low energy houses.

For four low energy houses; energy consumption and indoor climate have been analyzed through calculations; monitoring and occupant surveys. All houses appeared to be more energy saving in theory and practice than the current Flemish building standard; but with large differences between the houses and with still a large potential for improvement; especially the heating systems. Also the measured CO2 concentrations in winter strongly differed between the houses and the occupants’ perception of indoor air quality did not always match the measured quality. The weakest point according to the surveys was summer comfort; especially in the sleeping rooms; but this was not always confirmed by measurements and calculations. This shows that common comfort theories are not adapted to dwellings and that summer comfort should be evaluated in detail during design. These lessons should be taken into account when designing and evaluating future low energy houses.

Keywords

Post-occupancy evaluation; Energy; Thermal comfort; Indoor air quality; Occupant behavior

References

[1] VEA; Press release of the Minister of Energy and Housing; Flemish new houses much more energy saving than 4 years ago!; 5 March 2010; www.energiesparen.be/node/1869.

[2] Guerra Santin O. (2010) Actual energy consumption in dwellings (PhD Dissertation T.U.DELFT). Series Sustainable Urban Areas 33; 252 pages; Amsterdam (IOS Press).

[3] van den Ham E.R.; Leyten J.L. et al. (2009) Robust climate design as a concept for comfortable; healthy and energy efficient indoor spaces. Proceedings of the 4th International Building Physics Conference. Energy Efficiency and New Approaches. Bayazit; Manioglu; Oral & Yilmaz (eds.) June 15-18 2009; Istanbul; Turkey.

[4] ISO 7730:1994 Moderate thermal environments – Determination of the PMV and PPD indices and specification of the conditions for thermal comfort.

[5] Van der Veken J.; Saelens D. et al. (2004) Comparison of steady-state and dynamic building energy simulation programs. Proceedings of the International Buildings IX ASHREA Conference; Clearwater Beach; Florida.

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