Items with Index Term: passive house

Number of items: 20.

Brunklaus, B; Thormark, C and Baumann, H (2010) Illustrating limitations of energy studies of buildings with LCA and actor analysis. Building Research & Information, 38(3), pp. 265-279. ISSN 0961-3218

Cemesova, A (2013) Enhancing BIM-based data transfer to support the design of low energy buildings. PhD thesis, Cardiff University, UK.

Cuellar Franca, R M (2013) Sustainability assessment framework for the residential construction sector in the UK. PhD thesis, University of Manchester, UK.

Finegan, E; Kelly, G and O’Sullivan, G (2020) Comparative analysis of passivhaus simulated and measured overheating frequency in a typical dwelling in Ireland. Building Research & Information, 48(6), pp. 681-699. ISSN 0961-3218

Gholami, E (2017) Exploiting BIM in energy efficient domestic retrofit: evaluation of benefits and barriers. PhD thesis, University of Liverpool, UK.

Goncalves, V L; Costanzo, V; Fabbri, K and Rakha, T (2022) Overheating assessment in Passivhaus dwellings: The influence of prediction tools. Buildings & Cities, 3(1), pp. 153-167. ISSN 2632-6655

Hassan, O A B (2016) Effect of foundation designs of passive house on the thermal bridges at the ground. Journal of Engineering, Design and Technology, 14(3), pp. 602-613.

Himpe, E; Trappers, L; Debacker, W; Delghust, M; Laverge, J; Janssens, A; Moens, J and Van Holm, M (2013) Life cycle energy analysis of a zero-energy house. Building Research & Information, 41(4), pp. 435-449. ISSN 0961-3218

Koch, C and Bertelsen, N H (2011) The devil in the detail: The story of a sustainable trail blazer. In: Egbu, C and Lou, E C W (eds.) Proceedings of 27th Annual ARCOM Conference, 5-7 September 2011, Bristol, UK.

Kristjansdottir, T F; Heeren, N; Andresen, I and Brattebø, H (2018) Comparative emission analysis of low-energy and zero-emission buildings. Building Research & Information, 46(4), pp. 367-382. ISSN 0961-3218

Laganakou, G (2020) What feasible macro-scale interventions could stimulate a sustainable growth in the UK housing retrofit industry? An examination of the potential impact from supply-chain innovations on low energy retrofit of pre-1919 housing. PhD thesis, University of Northampton, UK.

Mlecnik, E (2013) Innovation development for highly energy-efficient housing: Opportunities and challenges related to the adoption of passive houses. PhD thesis, Delft University of Technology, Netherlands.

Mlecnik, E (2013) Improving passive house certification: Recommendations based on end-user experiences. Architectural Engineering and Design Management, 9(4), pp. 250-264. ISSN 1745-2007

Mlecnik, E (2014) Which factors determine the success of strategic niche developments? Reflections from the emergence of a passive house network. Construction Innovation, 14(1), pp. 36-51. ISSN 1471-4175

Mlecnik, E (2016) Activating the adoption of innovation: Lessons from a passive house network. Built Environment Project and Asset Management, 6(2), pp. 205-217. ISSN 2044-124X

Morgan, C; Foster, J A; Poston, A and Sharpe, T R (2017) Overheating in Scotland: Contributing factors in occupied homes. Building Research & Information, 45(1-2), pp. 143-156. ISSN 0961-3218

Royapoor, M (2015) An investigation into the energy and control implications of adaptive comfort in a modern office building. PhD thesis, University of Newcastle upon Tyne, UK.

Stojanovic, V; Falconer, R; Blackwood, D; Paterson, G; Fleming, M and Bell, S (2014) Interactive visualisation of heat loss and gain for early-stage energy appraisal of the built environment. In: Raiden, A and Aboagye-Nimo, E (eds.) Proceedings of 30th Annual ARCOM Conference, 1-3 September 2014, Portsmouth, UK.

Thomsen, J; Berker, T; Lappegard Hauge, Å; Denizou, K; Wågø, S and Jerkø, S (2013) The interaction between building and users in passive and zero-energy housing and offices:The role of interfaces, knowledge and user commitment. Smart and Sustainable Built Environment, 2(1), pp. 43-59. ISSN 2046-6099

Wågø, S and Berker, T (2014) Architecture as a strategy for reduced energy consumption? An in-depth analysis of residential practices' influence on the energy performance of passive houses. Smart and Sustainable Built Environment, 3(3), pp. 192-206. ISSN 2046-6099

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