Size Optimization of a Solar-wind Hybrid Energy System Using Two Simulation Based Optimization Techniques
Orhan Ekren, Banu Yetkin
Abstract
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Orhan Ekren, Banu Yetkin
Abstract
Open-access reader
Solar thermal 4.1 15 66 244 480 Photovoltaic 0.1 2 24 221 784 Solar thermal electricity 0.1 0.4 3 16 68 Marine(tidal/wave/ocean) 0.05 0.1 0.4 3 20 Total renewable energy consumption 1,365.5 1,745.5 2,964.44,289 6,351 Renewable energy source consumption (%) 13.6 16.6 23.6 34.7 47.7 How to reference In order to correctly reference this scholarly work, feel free to copy and paste the following: Orhan Ekren and Banu Yetkin Ekren (2011).Size Optimization of a Solar-wind Hybrid Energy System Using Two Simulation Based Optimization Techniques, Fundamental and Advanced Topics in Wind Power, Dr. Rupp Carriveau (Ed.),
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Solar thermal 4.1 15 66 244 480 Photovoltaic 0.1 2 24 221 784 Solar thermal electricity 0.1 0.4 3 16 68 Marine(tidal/wave/ocean) 0.05 0.1 0.4 3 20 Total renewable energy consumption 1,365.5 1,745.5 2,964.44,289 6,351 Renewable energy source consumption (%) 13.6 16.6 23.6 34.7 47.7 How to reference In order to correctly reference this scholarly work, feel free to copy and paste the following: Orhan Ekren and Banu Yetkin Ekren (2011).Size Optimization of a Solar-wind Hybrid Energy System Using Two Simulation Based Optimization Techniques, Fundamental and Advanced Topics in Wind Power, Dr. Rupp Carriveau (Ed.),
Key concepts: System optimization, Computer science, Environmental science, Mathematical optimization, Mathematics