1 |
Solar energy as a tool of renovating soviet-type multi apartment buildings Valancius K, Mikucioniene R Solar Energy, 198, 93, 2020 |
2 |
Economic feasibility of building retrofitting mitigation potentials: Climate change uncertainties for Swedish cities Mata E, Wanemark J, Nik VM, Kalagasidis AS Applied Energy, 242, 1022, 2019 |
3 |
Information needs for progressive BIM methodology supporting the holistic energy renovation of office buildings Stegnar G, Cerovsek T Energy, 173, 317, 2019 |
4 |
Refurbishing blocks of flats to very low or nearly zero energy level-technical and financial results plus co-benefits Rose J, Thomsen KE, Morck OC, Gutierrez MSM, Jensen SO Energy and Buildings, 184, 1, 2019 |
5 |
A comprehensive evaluation of a monthly-based energy auditing tool through dynamic simulations, and monitoring in a renovation case study Dermentzis G, Ochs F, Gustafsson M, Calabrese T, Siegele D, Feist W, Dipasquale C, Fedrizzi R, Bales C Energy and Buildings, 183, 713, 2019 |
6 |
Active surfaces selection method for building-integrated photovoltaics (BIPV) in renovation projects based on self-consumption and self-sufficiency Aguacil S, Lufkin S, Rey E Energy and Buildings, 193, 15, 2019 |
7 |
Investigations of 6-pane glazing: Properties and possibilities Kralj A, Drev M, Znidarsic M, Cerne B, Hafner J, Jelle BP Energy and Buildings, 190, 61, 2019 |
8 |
Analysing the house-owners' perceptions on benefits and barriers of energy renovation in Swedish single-family houses Azizi S, Nair G, Olofsson T Energy and Buildings, 198, 187, 2019 |
9 |
Evaluation of energy renovation strategies for 12 historic building types using LCC optimization Milic V, Ekelow K, Andersson M, Moshfegh B Energy and Buildings, 197, 156, 2019 |
10 |
Renovating a house to aim for net-zero energy, thermal comfort, energy self-consumption and behavioural adaptation: A method proposed for ENEMANE HOUSE 2017 Oki R, Tsuneoka Y, Yamaguchi S, Sugano S, Watanabe N, Akimoto T, Hayashi Y, Wakao S, Tanabe S Energy and Buildings, 201, 183, 2019 |