Mid-term and long-term changes in building airtightness: A field study on low-energy houses

Energy and Buildings - Tập 250 - Trang 111257 - 2021
Bassam Moujalled1, Valérie Leprince2, Sylvain Berthault3, Andrés Litvak4, Nolwenn Hurel2
1CEREMA, Project-team BPE, 46 Rue St Théobald, F-38081 L'Isle d'Abeau, France
2PLEIAQ, 84C Av de la liberation, F-69330 Meyzieu, France
3Cerema, Direction Centre-Est, Boulevard Giberstein – BP 141, F-71405 Autun, France
4Cerema, Direction Sud-Ouest, Rue Pierre Ramond – CS 60013, F-33166 Saint-Médard-en-Jalles, France

Tài liệu tham khảo

Ng, 2015, IAQ and energy impacts of ventilation strategies and building envelope airtightness in a big box retail building, Build. Environ., 92, 627, 10.1016/j.buildenv.2015.05.038 Cuce, 2017, Role of airtightness in energy loss from windows: experimental results from in-situ tests, Energy Build., 139, 449, 10.1016/j.enbuild.2017.01.027 Richieri, 2016, Airtightness impact on energy needs and airflow pattern: a numerical evaluation for mechanically ventilated dwellings in France, Int. J. Vent., 15, 134 Airaksinen, 2004, Microbial contamination of indoor air due to leakages from crawl space: a field study: Microbial contamination of indoor air, Indoor Air, 14, 55, 10.1046/j.1600-0668.2003.00210.x Janssens, 2003, Interstitial condensation due to air leakage: a sensitivity analysis, J. Therm. Envel. Build. Sci., 27, 15, 10.1177/1097196303027001002 Leprince, 2017, Impact of energy policies on building and ductwork airtightness, AIVC Mélois, 2019, Improving building envelope knowledge from analysis of 219,000 certified on-site air leakage measurements in France, Build. Environ., 159, 106145, 10.1016/j.buildenv.2019.05.023 Feijó-Muñoz, 2019, Airtightness of residential buildings in the Continental area of Spain, Build. Environ., 148, 299, 10.1016/j.buildenv.2018.11.010 Love, 2017, Hitting the target and missing the point’: analysis of air permeability data for new UK dwellings and what it reveals about the testing procedure, Energy Build., 155, 88, 10.1016/j.enbuild.2017.09.013 NF EN ISO 9972. Thermal performance of buildings - Determination of air permeability of buildings - Fan presurization method, 2015. FD P50-784. Thermal performance of buildings - Implementation guide for NF EN ISO 9972, 2016. B. Moujalled, V. Leprince, A. Bailly Mélois, French database of building airtightness, statistical analyses of about 215,000 measurements: impacts of buildings characteristics and seasonal variations, in: Proc. 39th AIVC Conf. Smart Vent. Build., Antibes Juan-Les-Pins, France, 2018. B. Cope, Statistics, analysis and conclusions from 250,000 blower door tests, including ventilation types, in: Proc. 39th AIVC Conf. Smart Vent. Build., Antibes Juan-Les-Pins, France, 2018. Bracke, 2016, Durability and measurement uncertainty of airtightness in extremely airtight dwellings, Int. J. Vent., 14, 383 C. Delmotte, J. Laverge, Interlaboratory tests for the determination of repeatability and reproducibility of buildings airtightness measurements, in: Proc. 32nd AIVC Conf. Optim. Airtightness Perform., Brussels, Belgium, 2011: p. 10. T. Brennan, G. Nelson, C. Olson, Repeatability of Whole-Building Airtightness Measurements: Midrise Residential Case Study, in: Washington D.C., 2013: p. 5. https://www.aivc.org/resource/repeatability-whole-building-airtightness-measurements-midrise-residential-case-study. Carrié, 2016, Uncertainties in building pressurisation tests due to steady wind, Energy Build., 116, 656, 10.1016/j.enbuild.2016.01.029 Carrié, 2020, Modelling building airtightness pressurisation tests with periodic wind and sharp-edged openings, Energy Build., 208, 109642, 10.1016/j.enbuild.2019.109642 Delmotte, 2021, Airtightness of buildings – assessment of leakage-infiltration ratio and systematic measurement error due to steady wind and stack effect, Energy Build., 241, 110969, 10.1016/j.enbuild.2021.110969 Zheng, 2020, Airtightness measurement of an outdoor chamber using the Pulse and blower door methods under various wind and leakage scenarios, Build. Environ., 179, 106950, 10.1016/j.buildenv.2020.106950 Carrié, 2021, Building airtightness measurement uncertainty due to steady stack effect, Energy Build., 237, 110807, 10.1016/j.enbuild.2021.110807 Prignon, 2019, A method to quantify uncertainties in airtightness measurements: zero-flow and envelope pressure, Energy Build., 188–189, 12, 10.1016/j.enbuild.2019.02.006 Prignon, 2020, On the impact of regression technique to airtightness measurements uncertainties, Energy Build., 215, 109919, 10.1016/j.enbuild.2020.109919 Kölsch, 2020, Improving air leakage prediction of buildings using the fan pressurization method with the Weighted Line of Organic Correlation, Build. Environ., 181, 107157, 10.1016/j.buildenv.2020.107157 V. Leprince, B. Moujalled, A. Litvak, Durability of building airtightness, review and analysis of existing studies, in: Proc. 38th AIVC Conf. Vent. Healthy Low-Energy Build., Nottingham, UK, 2017: p. 14. G. Proskiw, in: Proc. Therm. Perform. Exter. Envel. Build. VII, ASHRAE, The variation of airtightness of wood frame houses over an 11 year period 1998 Florida, USA 745 751. M. Hansen, P. Ylmen, Changes in air tightness for six single family houses after 10-20 years, in: Proc. TightVent-AIVC Int. Workshop Achiev. Relev. Durable Airtightness Levels Status Options Prog. Needed, Brussels, Belgium, 2012: pp. 67–75. http://tightvent.eu/wp-content/uploads/2012/01/Proceedings.pdf. J. Novak, Assessment of durability of airtightness by means of repeated testing of 4 passive houses, in: Proc. 39th AIVC Conf. Smart Vent. Build., Antibes Juan-Les-Pins, France, 2018. Verbeke, 2020, A prospective study on the evolution of airtightness in 41 low energy Dwellings, E3S Web Conf., 172, 05005, 10.1051/e3sconf/202017205005 Wingfield, 2011 Feist, 2016 Chan, 2015, Durable airtightness in single-family dwellings – field measurementsand analysis, Int. J. Vent., 14, 27 ADEME, QUELLE PÉRENNITÉ DE LA PERMÉABILITÉ À L’AIR des maisons individuelles BBC en Normandie ?, ADEME, 2016. https://www.ademe.fr/sites/default/files/assets/documents/perennite_permeabilite_a_lair_maisons_bbc_normandie_8917.pdf (accessed June 5, 2020). Antonsson, 2015 Gullbrekken, 2019, Durability of traditional clamped joints in the vapour barrier layer: experimental and numerical analysis, Can. J. Civ. Eng., 46, 996, 10.1139/cjce-2018-0593 V. Leprince, F.-R. Carrié, Comparison of building preparation rules for airtightness testing in 11 European countries, in: Poznań, Poland, 2014: p. 9. Hurel, 2021, VIP 41: Impact of wind on the airtightness test results, AIVC, 22 P. Wahlgren, Seasonal variation in airtightness, in: Poznań, Poland, 2014: p. 8. Cardoso, 2020, Reliability of quantitative and qualitative assessment of air leakage paths through reductive sealing, Build. Environ., 183, 107151, 10.1016/j.buildenv.2020.107151