New PDF release: Sustainable Resilience of Energy Systems
By naim Hamdia Afgan
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Extra resources for Sustainable Resilience of Energy Systems
The demonstration of assessment is presented by the analysis of the following cases. 1. CASE 1 Priority given to the following criteria: EcIC > EnIC = TIC = SIC 2. CASE 2 Priority given to the following criteria: EnIC > EcIC = TIC = SIC 3. CASE 3 Priority given to the following criteria: TIC > EcIC = EnIC = = SIC Energy System Resilience 39 4. CASE 4 Priority given to the following criteria: SIC > EcIC > EnIC = TIC The results are expressed in the value of agglomerated indicator for the power plant under consideration, table 2.
2001. Environment and development: sustainability science. Science 292, 641–642.  E. P. Dalziell, S. T. McManus, Resilience, Vulnerability, and Adaptive Capacity, Implications for System Performance Dept of Civil Engineering, University of Canterbury, New Zealand.. , Farrugia, N. and Vella, S. J. (eds) Building the Economic Resilience of Small States, Malta: Islands and Small States Institute and London: Commonwealth Secretariat: 265-287 Chapter 2 2. 1. INTRODUCTION The energy resilience is the ability of an energy system to provide and maintain an acceptable level of service in the face of various challenges to normal operation.
046 Energy System Resilience 37 cEuro/kWh while its minimal value is zero, meaning that there is no change of this indicator under this condition. It is of interest to recognize that the Electricity Cost is the representation of the economic value of the system. There is the possibility to use as the economic indicator the agglomerated combination of the different economic indicators: Investment Cost, Energy Demand and Energy Resources. In order to facilitate the simplicity of this analysis it is anticipated to use the single indicator Electricity Cost.
Sustainable Resilience of Energy Systems by naim Hamdia Afgan