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Optimization of biomass waste gasification combined heat and power system

Fakhimghanbarzadeh, B ; Sharif University of Technology | 2010

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  1. Type of Document: Article
  2. DOI: 10.1109/EPEC.2010.5697239
  3. Publisher: 2010
  4. Abstract:
  5. The objective of the research done in this paper was to determine cost of the power and heat system with pressurized fluidized bed gasifier using exergoexonomic appraisal techniques. Exergetic efficiency maximization was approached with use of multi-objective evolutionary optimization methods which were designed such that the costs were minimized in line with the exergoeconomic plans. The results of this method were also compared to methods that employ iterative techniques. Results showed an almost 12.28% improvement in exergetic efficient that the system could reach through utilization of the multi-objective evolutionary algorithm
  6. Keywords:
  7. Econometrics ; Evolutionary algorithm ; Optimization ; Appraisal techniques ; Biomass wastes ; Combined heat and power system ; Econometrics ; Evolutionary optimization method ; Exergetic efficiency ; Fluidized bed gasifiers ; Heat systems ; In-line ; Iterative technique ; Multi objective ; Multi objective evolutionary algorithms ; Electric power supplies to apparatus ; Energy conservation ; Energy conversion ; Evolutionary algorithms ; Fluidization ; Fluidized beds ; Gasification ; Multiobjective optimization ; Smart power grids
  8. Source: EPEC 2010 - IEEE Electrical Power and Energy Conference: "Sustainable Energy for an Intelligent Grid", 25 August 2010 through 27 August 2010, Halifax, NS ; 2010 ; 9781424481880 (ISBN)
  9. URL: http://ieeexplore.ieee.org/document/5697239/?reload=true