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   Technical and Environmental Assessment of a Combined Heat and Power Rankine Cycle System Based on Natural Gas Boiler  
   
نویسنده hajinezhad ahmad ,yousefi hossein ,moltames rahim ,fattahi reza ,fathi amirhossein
منبع journal of energy management and technology - 2023 - دوره : 7 - شماره : 1 - صفحه:43 -48
چکیده    In this paper, a rankin cycle-based heat and power generation system is simulated. the input energy of the system is supplied by the combustion of natural gas in the boiler. condenser heat recovery is used to supply thermal energy and on the other hand, the power generated by the turbine is used to supply electricity demand. the first and second laws of thermodynamics and the law of conservation of mass are used to analyze the energy and exergy performance of the system. finally, the effect of changing each of the performance parameters on the energy and co2 emission of the system is investigated. according to the results, the turbine output power, net power production, electrical efficiency, energy efficiency, exergy efficiency, and co2 production is obtained as 354.63 kw, 353.53 kw, 24.23%, 94.92%, 74.38%, and 81.1 g/s, respectively. furthermore, the simulation results show that increasing the turbine inlet temperature increases electrical efficiency and exergy. increasing the condenser outlet temperature also reduces electrical and exergy efficiency. on the other hand, increasing natural gas consumption only increases co2 production and does not affect electrical, energy, and exergy efficiencies.
کلیدواژه Cogeneration system ,Rankine cycle ,energy and exergy analysis ,environment
آدرس university of tehran, faculty of new sciences and technologies, dept. of renewable energy and environmental eng., Iran, university of tehran, faculty of new sciences and technologies, dept. of renewable energy and environmental eng., Iran, university of tehran, faculty of new sciences and technologies, dept. of renewable energy and environmental eng., Iran, university of tehran, faculty of new sciences and technologies, dept. of renewable energy and environmental eng., Iran, shiraz university, school of mechanical engineering, Iran
 
     
   
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