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The systems method as an educative tool for sustainable architecture design on the example of solar building design


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Altun, M.C., Tyurkay, A. (2006). Integrated Design Process in Architectural Education: The Construction Project Studio Experience. In: Building our Future 2006: International Conference on Integrated Design (ID@50). Bath, UK. Search in Google Scholar

Bala, H. A. (2010). Sustainability in the architectural design studio: a case study of designing on-campus academic staff housing in Konya and Izmir, Turkey. The International Journal of Art and Design Education, 29(3), 330–348. https://doi.org/10.1111/j.1476-8070.2010.01665.x10.1111/j.1476-8070.2010.01665.x Search in Google Scholar

di Battista, V. (2006). Towards a Systemic Approach to Architecture. In: Systemics of Emergence: Research and Development, 391-398. DOI: 10.1007/0-387-28898-8_2710.1007/0-387-28898-8_27 Search in Google Scholar

Filho, W.L., Pallant, E., Enete, A., Richte, B., Brandli L.L. Planning and implementing sustainability in higher education institutions: an overview of the difficulties and potential. International Journal of Sustainable Development & World Ecology, 25(8), 713–721. https://doi.org/10.1080/13504509.2018.146170710.1080/13504509.2018.1461707 Search in Google Scholar

Gürel, M.Ö. (2010). Explorations in teaching sustainable design: a studio experience in interior design/architecture. The International Journal of Art and Design Education, 29(2), 184–199. https://doi.org/10.1111/j.1476-8070.2010.01649.x10.1111/j.1476-8070.2010.01649.x Search in Google Scholar

Hills, P. (2001). Environmental education, community mobilization and sustainable development in Hongkong: a comparative perspective. International Journal of Sustainable Development & World Ecology, 8(2), 137–154. https://doi.org/10.1080/1350450010947007110.1080/13504500109470071 Search in Google Scholar

Iwaro, J., Mwasha A., Williams, R. G., Wilson W. (2015). The role of integrated performance model in sustainable envelope design and assessment. International Journal of Sustainable Engineering, 8(4–5), 294–316. https://doi.org/10.1080/19397038.2014.93021110.1080/19397038.2014.930211 Search in Google Scholar

Johannes, R. (1992). Architectural design: a systematic approach: part 1. Design Studies, 13(1), 71–86. https://doi.org/10.1016/0142-694X(92)80006-K10.1016/0142-694X(92)80006-K Search in Google Scholar

Kerdanghan, S., da Silva, J.L., Andres, L (2012). A systems approach to meeting the challenges of urban climate change. International Journal of Urban Sustainable Development, 4(2), 125–145. https://doi.org/10.1080/19463138.2012.71827910.1080/19463138.2012.718279 Search in Google Scholar

Laszlo, E. (1996). The Systems view of the World. A Holistic vision of our time. Hampton Press 2nd ed. Search in Google Scholar

Lee, Y,S. (2014). Sustainable design re-examined: integrated approach to knowledge creation for sustainable interior design. The International Journal of Art and Design Education, 33(1), 157–174. https://doi.org/10.1111/j.1476-8070.2014.01772.x10.1111/j.1476-8070.2014.01772.x Search in Google Scholar

Marchwiński, J. (2012). Fasady fotowoltaiczne. Technologia PV w architekturze. Warszawa: WSEiZ. Search in Google Scholar

Marchwiński, J. (2005). Rola pasywnych i aktywnych rozwiązań słonecznych w architekturze budynków biurowych i biurowo-przemysłowych, praca doktorska. Warszawa: WAPW. Search in Google Scholar

Marchwiński, J. (2021). Role and Factors of Solar Facades Shaping in Contemporary Architecture. Budownictwo i Architektura, 20(3), 43–56. https://doi.org/10.35784/bud-arch.264010.35784/bud-arch.2640 Search in Google Scholar

Marchwiński, J., Zielonko-Jung, K. (2005). Systematic approach to the evaluation of the solar measures’ role in creating the architecture of office and office-industrial buildings. In: The 2005 World Sustainable Building Conference in Tokyo. Search in Google Scholar

Mazur, M. (1976). Cybernetyka i Charakter. Warszawa: Państwowy Instytut Wydawniczy. Search in Google Scholar

Nikken Sekkei. (2000). Amity with Environment. Toward creation of sustainable cities and buildings, In: Sustainable Building 2000: information materials available on International Conference, Maastricht, the Netherlands 22–25 October 2000. Search in Google Scholar

Nsanbayeva, Nurgul. (2019). A systems approach to sustainability in higher education: Analysis of undergraduate architectural education in Kazakh Leading Academy of Architecture and Civil Engineering in Kazakhstan. Aalto University, School of Arts, Design and Architecture. Search in Google Scholar

Nyka, L. (2019). Bridging the gap between architectural and environmental engineering education in the context of climate change. World Trans. on Engng and Technol. Educ., 17(2), 204–209. Search in Google Scholar

Polański, Z. (1978). Współczesne metody badań doświadczalnych. Warszawa: Wiedza Powszechna. Search in Google Scholar

Poveda, C.A., Lipsett, M. G. (2014). An integrated approach for sustainability assessment: the Wa-Pa-Su project sustainability rating system. International Journal of Sustainable Development & World Ecology, 21(1), 85–98. https://doi.org/10.1080/13504509.2013.87667710.1080/13504509.2013.876677 Search in Google Scholar

Richter, B.W., De Sousa, L.O. (2019). The implementation of environmental education to promote sustainability: an overview of the processes and challenges. International Journal of Sustainable Development & World Ecology, 26(8), 721–732. https://doi.org/10.1080/13504509.2019.167222010.1080/13504509.2019.1672220 Search in Google Scholar

Sandri, O.J. (2013). Threshold concepts, systems and learning for sustainability. Environmental Education Research, 19(6), 810–822. https://doi.org/10.1080/13504622.2012.75341310.1080/13504622.2012.753413 Search in Google Scholar

Sevaldson, B. (2008). A system approach to design learning. In: System thinking and Integral Design. Offenbach: Achim Menges Ed. Search in Google Scholar

Shulla K., Filho W.L., Lardjane S., Sommer J.H., Borgemeister C.(2020). Sustainable development education in the context of 2030 Agenda for sustainable development. International Journal of Sustainable Development & World Ecology, 27(5), 458–468. https://doi.org/10.1080/13504509.2020.172137810.1080/13504509.2020.1721378 Search in Google Scholar

Stiny, G., Mitchell, W.J. (1978). The Palladian grammar. Environment and Planning B, 5, 5–18.10.1068/b050005 Search in Google Scholar

Szparkowski, Z. (1978). System ekologiczny architektury zakładu przemysłowego. Warszawa: OWPW. Search in Google Scholar

Togo, M., Lotz-Sisitka, H. (2013). Exploring a systems approach to mainstreaming sustainability in universities: a case study of Rhodes University in South Africa. Environmental Education Research, 19(5), 673–693. https://doi.org/10.1080/13504622.2012.74997410.1080/13504622.2012.749974 Search in Google Scholar

Wilisz, J. (2019). Argumenty uzasadniajace konieczność nauczania cybernetyki (Arguments for Necessity of Teaching Cybernethics). Edukacja-Technika-Informatyka, 2(28), 140–147.10.15584/eti.2019.2.20 Search in Google Scholar

Zielonko-Jung, K. (2019). Aerodynamics in the education of prospective architects. World Trans. on Engng and Technol. Educ., 17(4), 471–476. Search in Google Scholar

Zielonko-Jung, K. (2013). Kształtowanie architektury ekologicznej w strukturze miasta. Warszawa: OWPW. Search in Google Scholar

Zielonko-Jung, K., Marchwiński, J. (2017). Aspekty środowiskowe kształtowania zabudowy w przestrzeniach miejskich. In: Innowacyjne wyzwania techniki budowlanej. Problemy naukowe budownictwa. Collective work edited by L. Czarnecki, Krynica-Zdrój, 127–142. Search in Google Scholar