The Green Economy, Metropolitan City, Technological Design: the future of the three in Italy
DOI:
https://doi.org/10.6093/2531-9906/5137Keywords:
Green Economy, City Future, Technological Design, Energy-environmental question, Metropolitan CityAbstract
The number of inhabitants living in urban areas – currently already equal to half the Earth’s population compared to a quarter one century ago – will experience a major increase over the next twenty-five years, reaching six billion people which will be equal to about two-thirds of the world’s population in just a quarter of a century’s time. The challenges that are threatening to squash today’s metropolis are the extremely radicalised ones that were, in essence, already present in 20th-century urbanisation: the challenges of being safe, equal and fair, of offering work, of providing open spaces, places for recreational activities, meeting people and entertainment, of granting economic opportunities and of ensuring compliance with the meta principle of accessibility, which now seems to represent, when present, the greatest wealth; physical and immaterial accessibility to all parts of the metropolis, to community comforts and services, to education and healthcare, to drinking water and clean air. Smart grid and smart cities are, at the present time, appearing on contemporary scenarios in an explosive and innovative manner, yet one that is too fast and technologically advanced to be absorbed and endorsed by the increasingly complex urban governance management processes. The energy-environment category of problematic observations undoubtedly represents the key issue of today’s metropolis, which will strongly come to the fore when looking at the observations in this article below concerning the specific characteristics of the 'Italian metropolis'.Downloads
References
Alberti, M., Coe, S., & Hepinstall-Cymerman, H. (2009). Using Urban Landscape Trajectories to Develop a Multi-Temporal Land Cover Database to Support Ecological Modeling. Seattle, US: Remote Sensing.
Armstrong, R. (2012). Living Architecture. How Synthetic Biology Can Remake Our Cities and Reshape Our Lives. US: TED Books.
Battisti, A., Endres, E., Santucci, D., & Tucci, F. (2015). Energie: Bedrohung oder Chance für die europäische Stadtlandschaft? | Energia: Occasione o minaccia per il paesaggio urbano europeo?, Munich, DE: Technische Universität München Verlag.
Brown, G.Z., & De Kay, M. (2014). Sun, Wind & Light. New Jersey, US: John Wiley & Sons.
Ceruti, M. (2009). Il vincolo e la possibilità. Milano, IT: Raffaello Cortina Editore.
Daniels, K., & Hammann, R. (2009). Energy Design for Tomorrow, Kornwestheim, DE: Axel Menges.
European Commission (2014). “Technology readiness levels (TRL), Horizon 2020 – Work programme 2014-2015”, in General Annexes, Bruwelles, BE: European Commission Editions, part. 19.
Funtowicz, S. and Ravetz, J.R. (2012), Environmental problems, post-normal science and estended peer communities, Paris, FR: Etud. Rech. Syst. Agraires Dév.
Gardi, C., Dall’Olio, N., & Salata, S. (2013). L’insostenibile consumo di suolo. Monfalcone, IT: EdicomEdizioni
Geoff, H., & Craig, J. (2008). Inventory of Carbon & Energy (ICE), Version 1.6a. Proc. Inst. Civil Engrs.: Energy. Bath, UK: University of Bath.
Gleick, J. (2011). Chaos: Making a New Science, New York, US: Open Road Media.
Haken, H. (2003). Advanced Synergetics: Instability Hierarchies of Self-Organizing Systems and Devices. New York, US: Springer-Verlag.
Hausladen, G., Liedl, P., & De Saldanha, M. (2014). Building to Suit the Climate. Munich, DE: Birkhäuser Verlag.
Herzog, T. (2005). Architecture + Technologie. Munich, DE: Prestel Verlag.
Jourda, F.H. (2010). Petit Manuel de la Conception Durable. Paris, FR: Archibooks + Sautereau Editeur.
Klingele, M. (2014). Architektur und Energie. Heidelberg, DE: C. F. Muller Verlag.
Lynch, K. (1984). A Theory of Good City Form. Boston, US: MIT Press.
Matteoli, L., & Pagani, R. (eds.) (2010). City Futures, Architettura Design Tecnologia per il futuro della città. Milano, IT: Hoepli.
Sarja, A. (ed.) (2006). Predictive and Optimised Life Cycle Management Buildings and infrastructure, pp. 6-144. Oxon, UK: Taylor & Francis.
Sieverts, T., Koch, M., Stein, U., & Steinbusch, M., (2005). Zwischenstadt – inzwischen Stadt? Wuppertal, DE: Müller und Busmann.
Tiezzi, E. (2007). La soglia della sostenibilità. Roma, IT: Donzelli Editore.
Tucci, F. (2011). Efficienza ecologica ed energetica in Architettura | Energy and ecological efficiency in Architecture. Firtenze, IT: Alinea Editrice.
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