Items with Index Term: embodied energy

Number of items: 108.

Aksoy Tırmıkçı, C and Yavuz, C (2019) Environmental life cycle analysis of a fixed PV energy system and a two-axis sun tracking PV energy system in a low-energy house in Turkey. Smart and Sustainable Built Environment, 8(5), pp. 391-399. ISSN 2046-6099

Anuradha, I G N; Perera, B A K S and Ekanayake, B J (2022) Significance of whole life embodied energy and embodied carbon of wall materials compared to their initial/maintenance costs. International Journal of Construction Management, 22(6), pp. 1090-1103. ISSN 1562-3599

Asif, M (2019) An empirical study on life cycle assessment of double-glazed aluminium-clad timber windows. International Journal of Building Pathology and Adaptation, 37(5), pp. 547-564. ISSN 23984708

Atmaca, N (2017) Life-cycle assessment of post-disaster temporary housing. Building Research & Information, 45(5), pp. 524-538. ISSN 0961-3218

Banteli, A; Stevenson, V and Patel, H (2020) Embodied energy considerations in a BIM-enabled building design process: An ethnographic case study. In: Scott, L and Neilson, C J (eds.) Proceedings of 36th Annual ARCOM Conference, 7-8 September 2020, Online Event, UK.

Bapat, H; Sarkar, D and Gujar, R (2021) Selection of sustainable materials for energy savings of infrastructure-transportation project in ahmedabad, India using BIM and FCM. Journal of Construction in Developing Countries, 26(2), pp. 135-161. ISSN 1823-6499

Bastos, J; Batterman, S A and Freire, F (2016) Significance of mobility in the life-cycle assessment of buildings. Building Research & Information, 44(4), pp. 376-393. ISSN 0961-3218

Ben-Alon, L (2020) Natural buildings: Integrating earthen building materials and methods into mainstream construction. PhD thesis, Carnegie Mellon University, USA.

Boardman, B (2007) Examining the carbon agenda via the 40% house scenario. Building Research & Information, 35(4), pp. 363-378. ISSN 0961-3218

Brocklesby, M (1999) The environmental impact of frame materials: an assessment of the embodied impacts for building frames in the UK construction industry. PhD thesis, University of Sheffield, UK.

Chen, W and Lai, J (2025) Performance assessment of residential building renovation: A scientometric analysis and qualitative review of literature. Smart and Sustainable Built Environment, 14(3), pp. 625-648. ISSN 2046-6099

Crawford, R H (2005) Validation of the use of input-output data for embodied energy analysis of the Australian construction industry. Journal of Construction Research, 6(1), pp. 71-90. ISSN 1609-9451

Davies, P J (2015) Assessing initial embodied energy in UK non-domestic construction projects. EngD thesis, Loughborough University, UK.

Davies, P J; Emmitt, S and Firth, S K (2014) Challenges for capturing and assessing initial embodied energy: A contractor's perspective. Construction Management and Economics, 32(3), pp. 290-308. ISSN 01446193

Densley Tingley, D (2013) Design for deconstruction: an appraisal. PhD thesis, University of Sheffield, UK.

Ding, G (2013) Demolish or refurbish: environmental benefits of housing conservation. Construction Economics and Building, 13(2), pp. 18-34. ISSN 2204-9029

Ding, G K C (2007) Life cycle energy assessment of Australian secondary schools. Building Research & Information, 35(5), pp. 487-500. ISSN 0961-3218

Dixit, M K (2017) Embodied energy and cost of building materials: Correlation analysis. Building Research & Information, 45(5), pp. 508-523. ISSN 0961-3218

Du Plessis, C; Irurah, D K and Scholes, R J (2003) The built environment and climate change in South Africa. Building Research & Information, 31(3-4), pp. 240-256. ISSN 0961-3218

Edike, U E; Ameh, O J; Adenuga, O A and Akintunde, O P (2024) Life cycle energy analysis of houses incorporating conventional and alternative masonry units. Architectural Engineering and Design Management, 20(5), pp. 1079-1099. ISSN 1745-2007

Elliot, C and Palmer, A (1996) Life cycle energy analysis of the building resource. Journal of Financial Management of Property and Construction, 1(2), pp. 5-16. ISSN 1366-4387

Emmer, M J (2009) A decision process model for closing the structural steel materials loop in construction. PhD thesis, University of Florida, USA.

Eufrasio Espinosa, R M (2015) A visio-spatial life cycle energy model of building materials within a bioregional context: Mapping the embodied energy of fired clay bricks in Cuitzeo, Mexico. PhD thesis, University of Sheffield, UK.

Fay, R; Treloar, G and Iyer-Raniga, U (2000) Life-cycle energy analysis of buildings: A case study. Building Research & Information, 28(1), pp. 31-41. ISSN 0961-3218

Forster, A M; Carter, K; Banfill, P F G and Kayan, B (2011) Green maintenance for historic masonry buildings: An emerging concept. Building Research & Information, 39(6), pp. 654-664. ISSN 0961-3218

Forsythe, P (2017) Quantifying the recurring nature of fitout to assist LCA studies in office buildings. International Journal of Building Pathology and Adaptation, 35(3), pp. 233-246.

Francis, A; Padmanabhan, V and Thomas, A (2025) A life cycle assessment-based case study analysis of the sustainability of "vernacular" versus contemporary construction techniques. Engineering, Construction and Architectural Management, 32(9), pp. 6187-6212. ISSN 0969-9988

Gama, E C M and Sloan, S C W B (2010) Environmental sustainability in the construction industry in developing countries: A study of embodied energy of low-cost housing. In: Egbu, C (ed.) Proceedings of 26th Annual ARCOM Conference, 6-8 September 2010, Leeds, UK.

Gao, J; Ren, H; Ma, X; Cai, W and Shi, Q (2019) A total energy efficiency evaluation framework based on embodied energy for the construction industry and the spatio-temporal evolution analysis. Engineering, Construction and Architectural Management, 26(8), pp. 1652-1671. ISSN 0969-9988

Garcia Punhagui, Katia Regina (2014) Potential reducing of CO2 emissions and embodied energy in housing construction in Brazil by increasing the use of wood. PhD thesis, Universidade de São Paulo, Brazil.

Georges, L; Haase, M; Houlihan Wiberg, A; Kristjansdottir, T and Risholt, B (2015) Life cycle emissions analysis of two nZEB concepts. Building Research & Information, 43(1), pp. 82-93. ISSN 0961-3218

Glass, A (2011) Analysis of building-integrated renewable energy systems in modern UK homes. EngD thesis, University of Manchester, UK.

Grant, E J (2020) Mainstreaming environmental education for architects: The need for basic literacies. Buildings & Cities, 1(1), pp. 538-549. ISSN 2632-6655

Grinnell, R C; Austin, S A and Dainty, A J (2011) Reconciling low carbon agendas through adaptable buildings. In: Egbu, C and Lou, E C W (eds.) Proceedings of 27th Annual ARCOM Conference, 5-7 September 2011, Bristol, UK.

Guo, S; Shen, G; Yang, J; Sun, B and Xue, F (2015) Embodied energy of service trading in Hong Kong. Smart and Sustainable Built Environment, 4(2), pp. 234-248. ISSN 2046-6099

Hamilton-MacLaren, F (2013) Alternative, more sustainable, wall construction techniques than brick and block, for new housing in England and Wales. PhD thesis, Loughborough University, UK.

Hamilton-MacLaren, F; Loveday, D and Mourshed, M (2009) The calculation of embodied energy in new build UK housing. In: Dainty, A R J (ed.) Proceedings of 25th Annual ARCOM Conference, 7-9 September 2009, Nottingham, UK.

Hernandez, P and Kenny, P (2010) Integrating occupant preference and life cycle energy evaluation: A simplified method. Building Research & Information, 38(6), pp. 625-637. ISSN 0961-3218

Hes, D; Morrison, A W and Bates, M (2005) Assessment and selection of materials for Melbourne city Council House 2. Construction Economics and Building, 5(2), pp. 8-19. ISSN 2204-9029

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

Hou, S (2015) An ontology-based holistic approach for multi-objective sustainable structural design. PhD thesis, Cardiff University, UK.

Hoxha, V (2020) Measuring embodied CO2 emission in construction materials in Kosovo apartments. International Journal of Building Pathology and Adaptation, 38(3), pp. 405-421. ISSN 23984708

Ilangakoon, I. W. M. A. D.; Soorige, S. D. A. and Gunatilake, S. (2026) A framework to reduce embodied energy in residential buildings in Sri Lanka. International Journal of Building Pathology and Adaptation, 44(3), pp. 599-617. ISSN 2398-4708

Ioannidou, D (2016) On sustainability aspects through the prism of stone as a material for construction. DSc thesis, ETH Zürich, Switzerland.

Irurah, D K and Holm, D (1999) Energy impact analysis of building construction as applied to South Africa. Construction Management and Economics, 17(3), pp. 363-374. ISSN 01446193

Itard, L and Klunder, G (2007) Comparing environmental impacts of renovated housing stock with new construction. Building Research & Information, 35(3), pp. 252-267. ISSN 0961-3218

Jonnalagadda, S (2016) Artificial neural networks, non linear auto regression networks (NARX) and causal loop diagram approaches for modelling bridge infrastructure conditions. PhD thesis, Clemson University, USA.

Keles, C and Yazicioglu, F (2023) Analyzing the environmental sustainability of primary schools' facades within the scope of life cycle assessment in Turkey and recommendations for improvement. Smart and Sustainable Built Environment, 12(2), pp. 298-324. ISSN 2046-6099

Kern, A P; Postay, R; Schneck, E R; Mancio, M; González, M A S and Guerra, G (2021) Cost and environmental impacts reduction through building compactness. Engineering, Construction and Architectural Management, 28(4), pp. 1176-1195. ISSN 0969-9988

Kim, S and Hammad, A (2024) Decision support system (DSS) for selecting sustainable insulation material using Pareto search and novel fuzzy-modified technique for order of preference by similarity to ideal solution (TOPSIS) approach. International Journal of Construction Management, 24(7), pp. 734-747. ISSN 1562-3599

Kolokotroni, M; Robinson-Gayle, S; Tanno, S and Cripps, A (2004) Environmental impact analysis for typical office facades. Building Research & Information, 32(1), pp. 2-16. ISSN 0961-3218

Kylili, A; Georgali, P Z; Christou, P and Fokaides, P (2024) An integrated building information modeling (BIM)-based lifecycle-oriented framework for sustainable building design. Construction Innovation, 24(2), pp. 492-514. ISSN 1471-4175

Lall, A B and Sethi, G (2024) Operationalising energy sufficiency for low-carbon built environments in urbanising India. Buildings & Cities, 5(1), pp. 645-661. ISSN 2632-6655

Langston, C; Chan, E H W and Yung, E H K (2018) Embodied carbon and construction cost differences between Hong Kong and Melbourne buildings. Construction Economics and Building, 18(4), pp. 84-102. ISSN 2204-9029

Langston, Y L and Langston, C (2007) Building energy and cost performance: An analysis of thirty Melbourne case studies. Construction Economics and Building, 7(1), pp. 1-18. ISSN 2204-9029

Langston, Y L and Langston, C (2009) The inherent building energy-cost relationship: An analysis of thirty Melbourne case studies. Construction Economics and Building, 9(1), pp. 9-18. ISSN 2204-9029

Langston, Y L and Langston, C A (2008) Reliability of building embodied energy modelling: An analysis of 30 Melbourne case studies. Construction Management and Economics, 26(2), pp. 147-160. ISSN 1466433X

Lawson, W R (1996) Life cycle energy analysis of buildings revisited. Journal of Financial Management of Property and Construction, 1(3), pp. 83-94. ISSN 1366-4387

Lützkendorf, T; Foliente, G; Balouktsi, M and Wiberg, A H (2015) Net-zero buildings: Incorporating embodied impacts. Building Research & Information, 43(1), pp. 62-81. ISSN 0961-3218

Ma, L (2022) A BIM-based life cycle assessment tool of embodied energy and environmental impacts of reinforced concrete tall buildings. PhD thesis, Illinois Institute of Technology, USA.

Marzouk, M and Ashmawy, M M (2021) Assessment of highways concrete and asphalt pavements using superiority inferiority ranking technique. Construction Innovation, 21(2), pp. 259-278. ISSN 1471-4175

Mastrucci, A and Rao, N D (2019) Bridging India's housing gap: Lowering costs and CO2 emissions. Building Research & Information, 47(1), pp. 8-23. ISSN 0961-3218

Mayer, M (2020) Material recovery certification for construction workers. Buildings & Cities, 1(1), pp. 550-564. ISSN 2632-6655

Mehrvarz, Nassim (2025) Optimising sustainability in building design from a life cycle perspective. PhD thesis, University of New South Wales, Australia.

Mollaei, A; Bachmann, C and Haas, C (2025) Evaluating the potential impact of building design strategies on material recovery during deconstruction. Journal of Construction Engineering and Management, 151(6): 04025065, ISSN 0733-9364

Monahan, J (2013) Housing and carbon reduction: can mainstream 'eco-housing' deliver on its low carbon promises? PhD thesis, University of East Anglia, UK.

Mpakati-Gama, E C; Brown, A and Sloan, B (2016) Embodied energy and carbon analysis of urban residential buildings in Malawi. International Journal of Construction Management, 16(1), pp. 1-12. ISSN 1562-3599

Nizam Shaikh, R (2019) BIM-based investigation of total energy consumption in delivering buildings as a product. PhD thesis, University of Liverpool, UK.

Nordby, A S (2011) Carbon reductions and building regulations: The case of Norwegian mountain cabins. Building Research & Information, 39(6), pp. 553-565. ISSN 0961-3218

Nouri, H; Safehian, M and Mir Mohammad Hosseini, S M (2023) Life cycle assessment of earthen materials for low-cost housing a comparison between rammed earth and fired clay bricks. International Journal of Building Pathology and Adaptation, 41(2), pp. 364-377. ISSN 23984708

Ogunkah, I (2015) Rethinking low-cost green building material selection process in the design of low-impact green housing developments. PhD thesis, University of Westminster, UK.

Onyenobi, T; Hudson, J and Ormerod, M (2006) Impact of building geometry on fire spread rate. In: Boyd, D (ed.) Proceedings of 22nd Annual ARCOM Conference, 4-6 September 2006, Birmingham, UK.

Pacheco-Torres, R; Etxebarria-Berrizbeitia, S and Gago, E J (2024) Influence of urban density on energy retrofit of building stock: Case study of Spain. Architectural Engineering and Design Management, 20(6), pp. 1832-1855. ISSN 1745-2007

Padala, S P S (2025) A BIM-integrated multi objective optimization model for sustainable building construction management. Construction Innovation, 25(6), pp. 1727-1751. ISSN 1471-4175

Pearlmutter, D; Freidin, C and Huberman, N (2007) Alternative materials for desert buildings: A comparative life cycle energy analysis. Building Research & Information, 35(2), pp. 144-155. ISSN 0961-3218

Peng, Z; Deng, W and Hong, Y (2019) Materials consumption, indoor thermal comfort and associated energy flows of urban residential buildings: Case studies from the cold climate zone of China. International Journal of Building Pathology and Adaptation, 37(5), pp. 579-596. ISSN 23984708

Peukes, I E; Francesco, P and D'Amico, B (2023) Life cycle assessment of 61 ducted gas heating upgrades in Australia. International Journal of Building Pathology and Adaptation, 41(1), pp. 143-169. ISSN 23984708

Pinky Devi, L and Palaniappan, S (2019) Life cycle energy analysis of a low-cost house in India. International Journal of Construction Education and Research, 15(4), pp. 256-275. ISSN 1557-8771

Rauf, A; Attoye, D E and Crawford, R H (2024) Evaluating the impact of material service life on embodied energy of residential villas in the United Arab Emirates. Engineering, Construction and Architectural Management, 31(13), pp. 244-270. ISSN 0969-9988

Resalati, S; Kendrick, C C and Hill, C (2020) Embodied energy data implications for optimal specification of building envelopes. Building Research & Information, 48(4), pp. 429-445. ISSN 0961-3218

Rosso, S (2007) Environmental life-cycle of domestic kitchen refurbishment. PhD thesis, University of Brighton, UK.

Saade, M R M; da Silva, M G; Gomes, V; Franco, H G; Schwamback, D and Lavor, B (2014) Material eco-efficiency indicators for Brazilian buildings. Smart and Sustainable Built Environment, 3(1), pp. 54-71. ISSN 2046-6099

Saeed, F; Mostafa, K; Rauch, C and Hegazy, T (2023) Environmental impact and cost assessment for reusing waste during end-of-life activities on building projects. Journal of Construction Engineering and Management, 149(10): 04023099, ISSN 0733-9364

Sami Kashkooli, A M (2013) A critical building lifecycle assessment framework for building designers and decision makers. PhD thesis, University of Sheffield, UK.

Sandberg, N H and Bratteb, H (2012) Analysis of energy and carbon flows in the future Norwegian dwelling stock. Building Research & Information, 40(2), pp. 123-139. ISSN 0961-3218

Sattary, S and Thorpe, D (2011) Reducing embodied energy in Australian building construction. In: Egbu, C and Lou, E C W (eds.) Proceedings of 27th Annual ARCOM Conference, 5-7 September 2011, Bristol, UK.

Sattary, S and Thorpe, D (2012) Optimizing embodied energy of building construction through bioclimatic principles. In: Smith, S D (ed.) Proceedings of 28th Annual ARCOM Conference, 3-5 September 2012, Edinburgh, UK.

Shaw, C (2023) Understanding the need for a comparative framework when selecting an appropriate building technology for sustainable human settlements in South Africa. PhD thesis, University of Pretoria, South Africa.

Shipworth, D (2002) A stochastic framework for embodied greenhouse gas emissions modelling of construction materials. Building Research & Information, 30(1), pp. 16-24. ISSN 0961-3218

Shrivastava, S and Chini, A (2012) Using building information modeling to assess the initial embodied energy of a building. International Journal of Construction Management, 12(1), pp. 51-63. ISSN 1562-3599

Sodagar, B; Rai, D; Jones, B; Wihan, J and Fieldson, R (2011) The carbon-reduction potential of straw-bale housing. Building Research & Information, 39(1), pp. 51-65. ISSN 0961-3218

Tam, V W Y; Liu, L and Le, K N (2023) Modelling and quantitation of embodied, operational and mobile energies of buildings: A holistic review from 2012 to 2021. Engineering, Construction and Architectural Management, 30(9), pp. 4045-4079. ISSN 0969-9988

Tennakoon, G A; Waidyasekara, A and Ekanayake, B J (2020) Revisiting the role of professionals in designing buildings with low embodied and operational energy. Built Environment Project and Asset Management, 10(1), pp. 110-123. ISSN 2044-124X

Thormark, C (2000) Including recycling potential in energy use into the life-cycle of buildings. Building Research & Information, 28(3), pp. 176-183. ISSN 0961-3218

Tighnavard Balasbaneh, A and Ramadan, B S (2026) Integrating three pillars of sustainability for evaluating the modular construction building. Construction Innovation, 26(2), pp. 328-352. ISSN 1471-4175

Tighnavard Balasbaneh, A.; Sher, W. and Ashour, A. (2026) Combining the circular economy and bio-based materials for alternative waste wood applications for the construction industry. Engineering, Construction and Architectural Management, 33(5), pp. 4257-4277. ISSN 0969-9988

Tokede, O; Boggavarapu, M K and Wamuziri, S (2023) Assessment of building retrofit scenarios using embodied energy and life cycle impact assessment. Built Environment Project and Asset Management, 13(5), pp. 666-681. ISSN 2044-124X

Treloar, G; Fay, R; Love, P E D and Iyer-Raniga, U (2000) Analysing the life-cycle energy of an Australian residential building and its householders. Building Research & Information, 28(3), pp. 184-195. ISSN 0961-3218

Treloar, G J (1998) A comprehensive embodied energy analysis framework. PhD thesis, Deakin University, Australia.

Treloar, G J (2000) Streamlined life cycle assessment of domestic structural wall members. Journal of Construction Research, 1(1), pp. 69-76. ISSN 1609-9451

Treloar, G J; Love, P E D and Holt, G D (2001) Using national input–output data for embodied energy analysis of individual residential buildings. Construction Management and Economics, 19(1), pp. 49-61. ISSN 01446193

Wan Omar, Sabki (2015) Analysis of embodied energy and carbon in Malaysian building construction using hybrid life cycle assessment. PhD thesis, Griffith University, Malaysia.

Wandahl, S; Pérez, C T; Salling, S; Neve, H H; Lerche, J and Petersen, S (2021) The impact of construction labour productivity on the renovation wave. Construction Economics and Building, 21(3), pp. 11-32. ISSN 2204-9029

Warrier, G A and Palaniappan, S (2025) Uncertainty in the embodied energy assessment of buildings: a case of EWS type low-cost house in India. International Journal of Construction Management, 25(8), pp. 911-922. ISSN 1562-3599

Yazdani Mehr, S and Wilkinson, S (2018) Technical issues and energy efficient adaptive reuse of heritage listed city halls in Queensland Australia. International Journal of Building Pathology and Adaptation, 36(5), pp. 529-542. ISSN 23984708

Yitmen, I; Al-Musaed, A and Yücelgazi, F (2022) Anp model for evaluating the performance of adaptive façade systems in complex commercial buildings. Engineering, Construction and Architectural Management, 29(1), pp. 431-455. ISSN 0969-9988

Zachariah, J-A L (2003) Towards sustainable homes through optimization: An approach to balancing life cycle environmental impacts and life cycle costs in residential buildings. PhD thesis, University of Toronto, Canada.

Zeng, R; Chini, A and Ries, R (2021) Innovative design for sustainability: Integrating embodied impacts and costs during the early design phase. Engineering, Construction and Architectural Management, 28(3), pp. 747-764. ISSN 0969-9988

This list was generated on Sat Aug 22 01:39:10 2026 UTC.