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余热蒸汽循环载热的煤气甲烷化工艺 被引量:6
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作者 沈倩 陈建利 +1 位作者 夏素兰 朱家骅 《化工学报》 EI CAS CSCD 北大核心 2009年第9期2271-2275,共5页
对余热推动蒸汽循环载热煤气甲烷化节能工艺理论分析和计算表明,工艺气体载热能力正比于汽/气比H,通过蒸发/冷凝耦合的两相流传热传质可使H达3.0~4.0,使甲烷化反应绝热温升控制在300~400℃范围。该工艺节省了循环压缩机及其功耗,甲烷... 对余热推动蒸汽循环载热煤气甲烷化节能工艺理论分析和计算表明,工艺气体载热能力正比于汽/气比H,通过蒸发/冷凝耦合的两相流传热传质可使H达3.0~4.0,使甲烷化反应绝热温升控制在300~400℃范围。该工艺节省了循环压缩机及其功耗,甲烷化工艺的能量效率提高6%以上。现场单管试验初步证明,高汽/气比不影响甲烷化催化剂反应活性。 展开更多
关键词 煤气甲烷化 节能工艺 蒸汽循环 蒸发/冷凝耦合
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Coupling effect of evaporation and condensation processes of organic Rankine cycle for geothermal power generation improvement 被引量:4
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作者 YANG Hua MENG Nan LI Tai-lu 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第12期3372-3387,共16页
Organic Rankine cycle(ORC)is widely used for the low grade geothermal power generation.However,a large amount of irreversible loss results in poor technical and economic performance due to its poor matching between th... Organic Rankine cycle(ORC)is widely used for the low grade geothermal power generation.However,a large amount of irreversible loss results in poor technical and economic performance due to its poor matching between the heat source/sink and the working medium in the condenser and the evaporator.The condensing temperature,cooling water temperature difference and pinch point temperature difference are often fixed according to engineering experience.In order to optimize the ORC system comprehensively,the coupling effect of evaporation and condensation process was proposed in this paper.Based on the laws of thermodynamics,the energy analysis,exergy analysis and entropy analysis were adopted to investigate the ORC performance including net output power,thermal efficiency,exergy efficiency,thermal conductivity,irreversible loss,etc.,using geothermal water at a temperature of 120℃as the heat source and isobutane as the working fluid.The results show that there exists a pair of optimal evaporating temperature and condensing temperatures to maximize the system performance.The net power output and the system comprehensive performance achieve their highest values at the same evaporating temperature,but the system comprehensive performance corresponds to a lower condensing temperature than the net power output. 展开更多
关键词 Organic Rankine cycle geothermal power generation coupling effect of evaporation and condensation exergy analysis
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