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作 者:Jun-sheng Feng Xin-ni Cheng Huan-huan Wang Liang Zhao Hui Dong
机构地区:[1]School of Environment and Energy Engineering,Anhui Jianzhu University,Hefei,230601,Anhui,China [2]School of Metallurgy,Northeastern University,Shenyang,110819,Liaoning,China
出 处:《Journal of Iron and Steel Research International》2023年第12期2378-2390,共13页
基 金:support for this work provided by the National Natural Science Foundation of China(51974087 and 51904074);Anhui Provincial Natural Science Foundation(1908085QE203);Natural Science Research Foundation of Anhui Province University(2022AH050262);Science Research Foundation of Anhui Jianzhu University(2020QDZ02).
摘 要:In order to improve the recovery and utilization rates of sinter waste heat effectively,the organic Rankine cycle(ORC)system with subcritical cycle was designed to recover the low-temperature sinter cooling flue gas waste heat in an annular cooler for power generation.The thermodynamic,economic and multi-objective optimization models of ORC system were established,and R600a was selected as the ORC working medium.Subsequently,the variations in system thermodynamic performance and economic performance with the ORC thermal parameters were discussed in detail,and the optimal ORC thermal parameters were determined.The results show that the system net output power increases with increasing the evaporation temperature and decreasing the condensation temperature and increases first and then,decreases with the increase in superheat degree for a given flue gas outlet temperature in the evaporator,while the heat transfer area per unit net output power appears different variation trends in various ranges of flue gas outlet temperature.Taking the sinter cooling flue gas waste heat of 160℃as the ORC heat source,the optimal thermal parameters of ORC system were the flue gas outlet temperature of 90℃,the evaporation temperature of 95℃,the superheat degree of 10℃,and the condensation temperature of 28℃.
关 键 词:Sinter.Waste heat recovery Organic Rankine cycle Performance analysis:Parameter optimization:Fluegasoutlettemperature
分 类 号:TK115[动力工程及工程热物理—热能工程]
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