Have a personal or library account? Click to login
Agriculture as a Catalyst for New Forms of Urban Habitat in Residential Architecture. A Case of Multi-Family and Mixed Housing Estates from 2010–2021 – European, American and Asian Context
Nadal, A., Llorach-Massana, P., Cuerva, E., López-Capel, E., Montero, J.I., Josa, A., Rieradevall, J. & Royapoor, M. (2017). Building-integrated rooftop greenhouses: an energy and environmental assessment in the mediterranean context. Applied Energy, 187(1), 338–351.
Munoz-Liesa, J., Royapoor, M., Lopez-Capel, E., Cuerva, E., Gasso-Domingo, S. & Josa, A. (2020). Improving urban metabolism: Bi-directional energy and environmental benefits of rooftop greenhouse and building integration. In V. Corrado, E. Fabrizio, A. Gasparella & F. Patuzzi (Eds), Proceedings of the 16th IBPSA Conference, Rome, Italy, Sept. 2–4, 2019. Rome: International Building Performance Simulation Association, 5097–5104.
Gould, D. & Caplow, T. (2012). 8 – Building-integrated agriculture: a new approach to food production. In F. Zeman (Ed), Woodhead Publishing Series in Energy, Metropolitan Sustainability. Philadelphia: Woodhead Publishing, 147–170.
Nowysz, A. (2021). Modernist Projects of Community-Based Urban Farms in Residential Areas – A Review of Agrarian Cooperatives in the Context of Contemporary Urban Development. Buildings, 11(8), 369.
Research Center ICTA-ICP UAB / H Arquitectes + DATAAE (2015). Retrieved from https://www.archdaily.com/636587/research-center-icta-icp-uab-h-arquitectes-dataae.
Sanyé-Mengual, E., Oliver-Solà, J., Montero, J.I. & Rieradevall J. (2015). An environmental and economic life cycle assessment of rooftop greenhouse (RTG) implementation in Barcelona, Spain. Assessing new forms of urban agriculture from the greenhouse structure to the final product level. The International Journal of Life Cycle Assessment, 20(3), 350–366.
Ercilla-Montserrat, M., Izquierdo, R., Belmonte, J., Montero, J.I., Muñoz, P., De Linares, C. & Rieradevall, J. (2017). Building-integrated agriculture: A first assessment of aerobiological air quality in rooftop greenhouses (i-RTGs). Science of The Total Environment, 598(15), 109–120.
Balas, M.M., Nicolic, J., Lile, R., Popa, M. & Beiu, R. (2019). Intelligent rooftop greenhouses and green skyline cities. SWS Journal of EARTH and PLANETARY SCIENCES, 1(2), 15–28.
Kleszcz, J. (2020). Bio-polis. Wizja miasta nieantropocentrycznego (Bio-polis. The vision of a non-anthropocentric city.). Zielona Góra: Uniwersytet Zielonogórski, 149–152.
Tserng, H.P., Chou, C.-M. & Chang, Y.-T. (2021). The Key Strategies to Implement Circular Economy in Building Projects – A Case Study of Taiwan. Sustainability, 13(2), 754.
SYSTEMIQ (Okatz, J., O’Connor, S., Vincent, A.) (2020). Edgar Erdwich Resource Efficiency and Climate Change: Material Efficiency Strategies for a Low-Carbon Future Implications for Business Leaders in Housing and Mobility. Paris: International Resource Panel, United Nations Environment Program, 33. Retrieved from https://www.resourcepanel.org/sites/default/files/documents/document/media/resource_efficiency_and_climate_change_implications_business.pdf.
Roesler, S. & Kobi, M. (2020). Urban Climate Indoors: Rethinking Heating Infrastructure in China's Non-Heating Zone / Intérieurs urbains: repenser les infrastructures de chauffage dans la zone non chauffée de la Chine. ABE Journal, 17, 1–28.
Immeubles-Villas (1922). Retrieved from http://www.fondationlecorbusier.fr/corbuweb/morpheus.aspx?sysId=13&IrisObjectId=5879&sysLanguage=en-en&itemPos=22&itemCount=215&sysParentName=Home&sysParentId=65.
Abdel, H. (2022). Taisugar Circular Village / Bio-architecture Formosana. Retreived from https://www.archdaily.com/974658/taisugar-circular-village-bio-architecture-formosana.
Januszewski, S., Napierała, P. & Łykowska, M. (2017). Blok Evergreen 365 w Poznaniu (Evergreen 365 housing block in Poznan). Architektura-murator, 04. Retrieved from https://architektura.muratorplus.pl/technika/warsztat/blok-evergreen-365-w-poznaniu_7318.html.