Diagnosing the Integration of Resilient City Pillars and Indicators with Urban Energy Systems

Authors

  • Aisha Alaa Saleh Al Nahrain University
  • Khalid Abdul Wahab Al-Mudares Architecture Eng. Dept., Al-Nahrain University

DOI:

https://doi.org/10.29194/NJES.2502A001

Keywords:

Resilient City, Environmental Resilience, Resilience of Urban Energy Systems, Renewable Energy, Adaptation to Global Climate Changes

Abstract

Contemporary urban discourse is paying increasing attention to the issue of urban resilience, due to the stresses, disasters and disturbances (natural and human) that the cities of the world are experiencing and facing, which confirms the need to be familiar with the concept of urban resilience, its dimensions, practices, and characteristics at different levels; In order to reach the aspects of developing the urban energy sector in them, and in a way that supports the preparedness of cities to face potential expected and unexpected disturbances in the future, as cities are usually formed from many main and sub-systems that are dynamically intertwined with each other, such as: the social and economic system, infrastructure systems, land use, and media Various transports, which have a high level of direct interactions with the natural environment; ; It is therefore necessary to understand how the city deals with the odds of threats and challenges in an integrated manner; To overcome its weaknesses and enhance its resilience of use, which aims to make cities more secure, resilient and sustainable in the future, as well as that requires rethinking the field of expanding the use of renewable energies and the general urban landscape. To become a search problem “Failure to exploit the potential of natural energies on the possibility of exploiting renewable natural energies with their components (active and passive) in the production of resilience urban formations in cities.” The aim of the research is to try to "extract an integrated theoretical framework on the characteristics of urban energy resilience from international and Arab experiences, and to diagnose its most important planning and design pillars and indicators, which can be adopted to evaluate the reality of urban energy resilience in local cities."

The research hypothesized that “the exploitation of energy systems produced from renewable natural resources, for the purposes of environmental treatments for resilient cities, especially in the buildings of housing projects and their urban surroundings, reduces the consumption of fossil energies for the city, frees its sites from linking to depleted energy transmission networks, and reduces potential environmental pollution problems, which contributes to in the production of flexible energy systems and helps in the generation of flexible cities." The descriptive analysis method was adopted.

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References

J. Rogelj, . M. den Elzen and H. ohne , "Paris Agreement climate proposals need a boost to keep warming well below 2?C.," 2016.

http://pure.iiasa.ac.at/id/eprint/13307/1/nature18307_proof1.pdf

S. Gößling-Reisemann, "Resilience – Preparing Energy Systems for the Unexpectedi," in IRGC (2016) Resource Guide on Resilience., Bremen, Faculty of Production Engineering; Institute for Advanced Energy Systems; Sustainability Research Center (artec), University of Bremen, 2016, p. 8.

https://irgc.org/wp-content/uploads/2016/08/G%C3%B6ssling-Reisemann-Resilience-Preparing-Energy-Systems-for-the-Unexpected-2.pdf

C. Holling, "Resilience and stability of ecological systems.," Annual Rev Ecol System, Lewes Pound, 1973.

https://www.zoology.ubc.ca/bdg/pdfs_bdg/2013/Holling%201973.pdf

UNISDR, "International Strategy for Disaster Reduction (2010). Making cities resilient: My city is getting ready," World Disaster Reduction Campaign., 2010.

L. Yanling and B. Zhaohong, "Study on the Resilience of the Integrated Energy System," 2016.

https://reader.elsevier.com/reader/sd/pii/S1876610216314783?token=3590656B40919A6288D4FA655CF14552516D8812CA038F8EF5595EFB7860090C260EE6C7B30E33540FFDD9268999CB6E&originRegion=eu-west-1&originCreation=20220514103904

G. Mutani and V. Todeschi, "Energy Resilience, Vulnerability and Risk in Urban Spaces," Journal of Sustainable Development of Energy, Water and Environment Systems, p. 16,2018.

https://hrcak.srce.hr/file/307480

A. Sharifi and Y. Yamagata, "Principles and criteria for assessing urban energy resilience: A literature review," 2016.

https://reader.elsevier.com/reader/sd/pii/S136403211600263X?token=A2090DE6A621EE14421B5D5BB26CFCA6B919771B908868751AE2A863362AC6DAFA109FFDED60C7348A3358F3842D4883&originRegion=eu-west-1&originCreation=20220112162423

J. Keirstead, M. Jennings and A. Sivakumar , "A review of urban energy system models: approaches, challenges and opportunities.," Renew Sustain Energy, 2012.

https://spiral.imperial.ac.uk/bitstream/10044/1/10206/4/review.pdf

I. Linkov, T. Bridges, F. Creutzig, J. Decker, Cate FoxLent, W. Kröger, J. H. Lambert, A. Levermann, B. Montreuil, J. Nathwani, R. Nyer, O. Renn, B. Scharte, A. Scheffler, M. Schreurs, T. T. Clemen, "Resilience management goes beyond risk management to address the complexities of large integrated systems and the uncertainty of future threats, especially those associated with climate change." Engineer Research and Development Center, Environmental Laboratory, Massachusetts, USA, 2014.

J. V. Nostrand, "Keeping the lights on during superstorm sandy :climate change and adaptation and the resiliency benefits of distributed generation.," NYU, USA, 2015.

https://www.nyuelj.org/wp-content/uploads/2015/09/VanNostrand_ready_for_website_1.pdf

G. Mavromatidis, K. Orehounig and J. Carmeliet, " A review of uncertainty characterisation approaches for the optimal design of distributed energy systems.," Renew Sustain Energy, 2018.

A. Wardekker, A. d. Jong, J. . M. Knoop and J. P. van der Sluijs, "Operationalising a resilience approach to adapting an urban delta to uncertain climate changes," Department of Science, Technology and Society, Copernicus Institute for Sustainable Development and Innovation, Utrecht University, Heidelberglaan, Utrecht, The Netherlands, 2010.

http://www.nusap.net/downloads/Wardekker_ea_2010_TFS.pdf

S. A. Ragheb, . H. . M. Ayad and R. A. Galil, "An Energy-Resililent City, An Appraisal Matrix for the Built Enviroment ," Department of Architecture Engineering and Environmental Design, College of Engineering, AAST, Egypt, Alexandria University, Egypt, 2017.

https://www.witpress.com/Secure/elibrary/papers/SDP17/SDP17058FU1.pdf

G. Mutani ? V. Todeschi? "Energy Resilience, Vulnerability and Risk in Urban Spaces?" Journal of Sustainable Development of Energy, Water, 6(4)2018, p694.

https://doi.org/10.13044/j.sdewes.d6.0203

V. M. Nik, A. Perera and D. Chen, "Towards climate resilient urban energy systems: a review," Sweden, Division of Building Physics, Department of Building and Environmental University, Lund, 2020, pp. 1-18.

https://pdfs.semanticscholar.org/5634/d1abaf9557108c1b101c8ee9103dbce7c134.pdf?_ga=2.20426744.1784358243.1642003942-593872687.1629368660

D. Ribeiro, . E. Mackres, R. Cluett, M. Jarrett, M. Kelly and S. Vaidyanathan, "Enhancing Community Resilience through Energy Efficiency," American Council for an Energy-Efficient Economy, Washington, DC, 2015.

https://eecoordinator.info/wp-content/uploads/2016/06/Community-Resiliency-EE.pdf

R. Gibson, "Sustainability Assessment:basic components of a practical approach.," Impact Assess Project Appraisal, 2006.

https://www.tandfonline.com/doi/pdf/10.3152/147154606781765147

Y. Jabareen, "Planning the resilient city: Concepts and strategies for coping with climate change and environmental risk," 2013.

https://isiarticles.com/bundles/Article/pre/pdf/255.pdf

K. C. Desouza and T. H. Flanery, "Designing, planning, and managing resilient cities: A conceptual framework," 2013.

https://doi.org/10.1016/j.cities.2013.06.003

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Published

19-07-2022

How to Cite

Diagnosing the Integration of Resilient City Pillars and Indicators with Urban Energy Systems. (2022). Al-Nahrain Journal for Engineering Sciences, 25(2), A001-A011. https://doi.org/10.29194/NJES.2502A001

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