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7.2 Recommendations The results of this PhD thesis can be used for designing new multigeneration systems. These outcomes can assist designers in developing more energy efficient systems in an integration fashion. In this study, three multigeneration systems were analyzed and optimized. The results obtained from this thesis research also suggest several areas for future studies, as summarized below: To design and build multigeneration energy systems using different sources. To conduct experimental studies in order to enhance the body of knowledge. To use advanced exergy end exergoeconomic analysis to understand the effect of the avoidable and unavoidable parts of exergy destruction in each component and optimize based on minimization of the avoidable exergy destruction in each component. To perform the analyses for different climate and inflation rates and to investigate the effect of related parameters on optimized values. To apply other optimization techniques, like the particle swarm and ant colony methods, in order to compare results. To integrate a solid oxide fuel cell with gas turbine cycles for better fuel utilization and enhanced power production efficiency. To use coal gasification coupled to gas turbine generators, again for better power generation efficiency. 221PDF Image | Energy Systems for Multigeneration Purposes
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