Energy Systems for Multigeneration Purposes

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Energy Systems for Multigeneration Purposes ( energy-systems-multigeneration-purposes )

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c) To perform the exergy analysis of each multigeneration system.  Calculation of exergy flow rate of each stream of the systems.  Determination of exergy destruction rate and exergy efficiency of each component.  Calculation of various dimensionless exergy numbers such as the exergy destruction ratio, waste exergy ratio and exergy destruction factor. d) To conduct exergoeconomic analyses for each multigeneration system.  Calculation of equipment purchase cost for each system.  Calculation of total cost rate of each system. e) To perform the environmental impact assessment of the system  Calculation of CO2 emissions of the system.  Determination of sustainability index and finding the relation between exergy, economic and environmental impacts. f) To perform a complete parametric study and the performance assessment of the system.  A comprehensive parametric study of each system separately to understand the effects of design parameters on the system performance including exergy efficiency and environmental impacts.  Effect of environment condition on the performance assessment of each studied system. g) To perform an optimization of multigeneration energy systems using an evolutionary based algorithm developed in Matlab software to find the best design parameters.  Proposing various objective functions; exergy efficiency (to be maximized), total cost rate of the plant including damage cost of environmental impacts (to be minimized), and greenhouse gas emission (to be minimized).  Applying the optimization methods based on some reasonable constraints.  Finding the best decision variables using multi objective optimization code developed in Matlab software.  Conducting a comprehensive sensitivity analysis to observe the variation of each objective function by change in each decision variables. 35

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Energy Systems for Multigeneration Purposes

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