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Amado, M. & Poggi, F. (2012). Towards Solar Urban Planning: A New Step for Better Energy Performance. Energy Procedia, 30, 1261–1273. doi: 10.1016/j.egypro.2012.11.13910.1016/j.egypro.2012.11.139Search in Google Scholar

Amado, M. & Poggi, F. (2014). Solar Urban Planning: A Parametric Approach. Energy Procedia, 48, 1539– –1548. doi: 10.1016/j.egypro.2014.02.17410.1016/j.egypro.2014.02.174Search in Google Scholar

Chwieduk, D. (2006). Modelowanie i analiza pozyskiwania oraz konwersji termicznej energii promieniowania słonecznego w budynku. Warszawa: Instytut Podstawowych Problemów Techniki PAN.Search in Google Scholar

Chwieduk, D. (2014). Solar Energy in Buildings: Thermal Balance for Efficient Heating and Cooling. Elsevier.Search in Google Scholar

Esch, M. M. E. van, Looman, R. H. J. & Bruin-Hordijk, G. J. de (2012). The effects of urban and building design parameters on solar access to the urban canyon and the potential for direct passive solar heating strategies. Energy and Buildings, 47, 189–200. doi: 10.1016/j.enbuild.2011.11.04210.1016/j.enbuild.2011.11.042Search in Google Scholar

Feist, W., Munzenberg, U. & Thumulla, J. (2009). Podstawy budownictwa pasywnego. Gdańsk: Polski Instytut Budownictwa Pasywnego.Search in Google Scholar

Grzymała, Z. (2016). Miasta ekologiczne – studia przypadków i perspektywy rozwoju [Eco-cities – case studies and development perspectives]. Research Papers of Wrocław University of Economics, 432, 61–66.10.15611/pn.2016.432.06Search in Google Scholar

Morganti, M., Salvati, A., Coch, H. & Cecere, C. (2017). Urban morphology indicators for solar energy analysis. Energy Procedia, 134, 807–814. doi: 10.1016/j.egypro.2017.09.53310.1016/j.egypro.2017.09.533Search in Google Scholar

Rozporządzenie Ministra Infrastruktury z dnia 12 kwietnia 2002 r. w sprawie warunków technicznych, jakim powinny odpowiadać budynki i ich usytuowanie. Dz.U. 2002 nr 75, poz. 690 [Regulation of the Minister of Infrastructure of 12 April 2002 on technical specifications for buildings and their location. Journal of Laws 2002 No 75, item 690].Search in Google Scholar

Sarralde, J. J., Quinn, D. J., Wiesmann, D. & Steemers, K. (2015). Solar energy and urban morphology: Scenarios for increasing the renewable energy potential of neigh-bourhoods in London. Renewable Energy, 73, 10–17. doi: 10.1016/j.renene.2014.06.02810.1016/j.renene.2014.06.028Search in Google Scholar

Skórzewski, W. (2019). Potential of using greenery to reduce overheating of buildings in Polish climate conditions. Scientific Review Engineering and Environmental Sciences, 28 (4), 619–631. doi: 10.22630/PNIKS.2019.28.4.5610.22630/PNIKS.2019.28.4.56Search in Google Scholar

Sobczyk, W. i Bracha, K. (2014). Słoneczne budownictwo pasywne jako alternatywa dla zużycia surowców kopalnych. Edukacja – Technika – Informatyka, 1 (5), 335–340.Search in Google Scholar

Stangel, M. (2013). Kształtowanie współczesnych obszarów miejskich w kontekście zrównoważonego rozwoju. Gliwice: Wydawnictwo Politechniki Śląskiej.Search in Google Scholar

Strømann-Andersen, J. & Sattrup, P. A. (2011). The urban canyon and building energy use: Urban density versus daylight and passive solar gains. Energy and Buildings, 43 (8), 2011–2020. doi: 10.1016/j.enbuild.2011.04.00710.1016/j.enbuild.2011.04.007Search in Google Scholar

Tong, S., Wong, N. H., Jusuf, S. K., Tan, C. L., Wong, H. F., Ignatius, M. & Tan, E. (2018). Study on correlation between air temperature and urban morphology parameters in built environment in northern China. Building and Environment, 127, 239–249. doi: 10.1016/j.buildenv.2017.11.01310.1016/j.buildenv.2017.11.013Search in Google Scholar

Wong, N. H., Jusuf, S. K., Syafii, N. I., Chen, Y., Hajadi, N., Sathyanarayanan, H. & Manickavasagam, Y. V. (2011). Evaluation of the impact of the surrounding urban morphology on building energy consumption. Solar Energy, 85 (1), 57–71. doi: 10.1016/j.solener.2010.11.00210.1016/j.solener.2010.11.002Search in Google Scholar

Zhou, Y., Zhuang, Z., Yang, F., Yu, Y. & Xie, X. (2017). Urban morphology on heat island and building energy consumption. Procedia Engineering, 205, 2401–2406. doi: 10.1016/j.proeng.2017.09.86210.1016/j.proeng.2017.09.862Search in Google Scholar

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