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thermodynamic evaluation of a novel geothermal and solar-driven multigeneration system for hydrogen and freshwater production
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نویسنده
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habibzadeh amin ,abbasalizadeh majid ,mirzaee iraj ,jafarmadar samad ,shirvani hassan
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منبع
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hydrogen, fuel cell and energy storage - 2023 - دوره : 10 - شماره : 1 - صفحه:51 -67
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چکیده
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In this study, a novel multigeneration cycle for hydrogen and freshwater production, including ptc and geothermal as the primary energy sources and kalina and orc cycles as the main power production cycles, has been proposed and analyzed from an energy and exergy point of view. the effect of important parameters, including solar irradiation, collector inlet temperature, collector volumetric flow, environment temperature, and geothermal temperature, on the amount of hydrogen production rate, freshwater production rate, and system efficiency have been investigated. the results show that the energy and exergy efficiency of the proposed system is 35.75 % and 18.39 %, respectively. moreover, the total power produced by the system is 1545 kw, the amount of hydrogen produced is 0.001175 g/s, and the freshwater production rate is 5.216 kg/s. furthermore, the results indicated that increasing geothermal temperature and solar collector inlet volumetric flow increases hydrogen production rate. in contrast, solar irradiation and environment temperature have no effects on the hydrogen production rate of the cycle. finally, it was found that geothermal temperature increase and collector volumetric flow show an optimum point for thermal efficiency and freshwater, respectively.
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کلیدواژه
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energy and exergy analysis ,ptc ,geothermal ,pem electrolyzer ,hydrogen production
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آدرس
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urmia university, faculty of engineering, mechanical engineering department, iran, urmia university, faculty of engineering, mechanical engineering department, iran, urmia university, faculty of engineering, mechanical engineering department, iran, urmia university, faculty of engineering, mechanical engineering department, iran, anglia ruskin university, faculty of science and engineering, uk
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پست الکترونیکی
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hassan.shirvani@aru.ac.uk
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Authors
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