1 |
Endorsing domestic energy saving behavior using micro-moment classification Alsalemi A, Ramadan M, Bensaali F, Amira A, Sardianos C, Varlamis I, Dimitrakopoulos G Applied Energy, 250, 1302, 2019 |
2 |
Taming the 'masculine pioneers'? Changing attitudes towards energy efficiency amongst private landlords and tenants in New Zealand: A case study of Dunedin Ambrose A, McCarthy L Energy Policy, 126, 165, 2019 |
3 |
The unlocked potential of solar home systems; an effective way to overcome domestic energy poverty in developing regions Zubi G, Fracastoro GV, Lujano-Rojas JM, El Bakari K, Andrews D Renewable Energy, 132, 1425, 2019 |
4 |
Computational tools for design, analysis, and management of residential energy systems Mahmud K, Amin U, Hossain MJ, Ravishankar J Applied Energy, 221, 535, 2018 |
5 |
The diffusion of domestic energy efficiency policies: A spatial perspective Morton C, Wilson C, Anable J Energy Policy, 114, 77, 2018 |
6 |
An assessment of biogas as a domestic energy source in rural Kenya: Developing a sustainable business model Hamid RG, Blanchard RE Renewable Energy, 121, 368, 2018 |
7 |
Domestic building fabric performance: Closing the gap between the in situ measured and modelled performance Marshall A, Fitton R, Swan W, Farmer D, Johnston D, Benjaber M, Ji Y Energy and Buildings, 150, 307, 2017 |
8 |
Energy monitoring as a practice: Investigating use of the iMeasure online energy feedback tool Foulds C, Robison RAV, Macrorie R Energy Policy, 104, 194, 2017 |
9 |
Measurement and analysis of household carbon: The case of a UK city Allinson D, Irvine KN, Edmondson JL, Tiwary A, Hill G, Morris J, Bell M, Davies ZG, Firth SK, Fisher J, Gaston KJ, Leake JR, McHugh N, Namdeo A, Rylatt M, Lomas K Applied Energy, 164, 871, 2016 |
10 |
High-resolution stochastic integrated thermal-electrical domestic demand model McKenna E, Thomson M Applied Energy, 165, 445, 2016 |