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Energy Systems for Multigeneration Purposes

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

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References 1. Dincer I: Renewable energy and sustainable development: a crucial review. Renewable and Sustainable Energy Reviews 2000, 4:157-175. 2. Ozgur Colpan C, Dincer I, Hamdullahpur F: The reduction of greenhouse gas emissions using various thermal systems in a landfill site. International Journal of Global Warming 2009, 1:89-105. 3. Spahni R, Chappellaz J, Stocker TF, Loulergue L, Hausammann G, Kawamura K, Flückiger J, Schwander J, Raynaud D, Masson-Delmotte V: Atmospheric methane and nitrous oxide of the late Pleistocene from Antarctic ice cores. Science 2005, 310:1317- 1321. 4. Ahmadi P, Dincer I: Exergoenvironmental analysis and optimization of a cogeneration plant system using Multimodal Genetic Algorithm (MGA). Energy 2010, 35:5161-5172. 5. Al-Sulaiman FA, Dincer I, Hamdullahpur F: Exergy analysis of an integrated solid oxide fuel cell and organic Rankine cycle for cooling, heating and power production. Journal of power sources 2010, 195:2346-2354. 6. Ahmadi P, Rosen MA, Dincer I: Greenhouse gas emission and exergo-environmental analyses of a trigeneration energy system. International Journal of Greenhouse Gas Control 2011, 5:1540-1549. 7. Dincer I, Zamfirescu C: Renewable‐energy‐based multigeneration systems. International Journal of Energy Research 2012. 8. Ahmadi P, Rosen MA, Dincer I: Multi-objective exergy-based optimization of a polygeneration energy system using an evolutionary algorithm. Energy 2012, 46:21-31. 9. Khaliq A, Kumar R, Dincer I: Performance analysis of an industrial waste heat‐based trigeneration system. International journal of energy research 2009, 33:737-744. 10. Havelský V: Energetic efficiency of cogeneration systems for combined heat, cold and power production. International Journal of Refrigeration 1999, 22:479-485. 11. Horlock JH: Advanced gas turbine cycles. Pergamon Press; 2003. 12. Haseli Y, Dincer I, Naterer G: Thermodynamic modeling of a gas turbine cycle combined with a solid oxide fuel cell. International Journal of hydrogen energy 2008, 33:5811- 5822. 13. Ratlamwala T, Dincer I, Gadalla M: Energy and exergy analyses of an integrated solar‐ based desalination quadruple effect absorption system for freshwater and cooling production. International Journal of Energy Research 2012. 14. Srinivas N, Deb K: Muiltiobjective optimization using nondominated sorting in genetic algorithms. Evolutionary computation 1994, 2:221-248. 15. Huangfu Y, Wu J, Wang R, Xia Z: Experimental investigation of adsorption chiller for Micro-scale BCHP system application. Energy and buildings 2007, 39:120-127. 16. Mago PJ, Hueffed A, Chamra LM: Analysis and optimization of the use of CHP–ORC systems for small commercial buildings. Energy and Buildings 2010, 42:1491-1498. 17. Mago PJ, Smith AD: Evaluation of the potential emissions reductions from the use of CHP systems in different commercial buildings. Building and Environment 2012, 53:74- 82. 18. Mago PJ, Hueffed AK: Evaluation of a turbine driven CCHP system for large office buildings under different operating strategies. Energy and Buildings 2010, 42:1628-1636. 222

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