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Energy and exergy analyses of dual refrigerant system for liquefaction of natural gas

机译:用于天然气液化的双制冷剂系统的能量和火用分析

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Present study proceeds thermodynamic modelling, and analysis of dual refrigerant system for liquefaction of natural gas (LNG) that is one of the most important technologies in producing LNG. Using energy equations pressure, quality, enthalpy, entropy of natural gas and two refrigerants, i.e., methane and propane are specified. The effects of different cycle variables on the thermodynamic performance especially the coefficient of performance (COP) is studied. Using the second law of thermodynamic for the system components, the exergy destruction rates has been found. The exergy analysis results show that heat exchanger I (HX I), heat exchanger II (HX II) and turbine have the highest exergy destruction rate. Furthermore, results indicate that the total exergy destruction rate of studied cycle for generation of 1 kg/s LNG is 2,996 kW. Moreover, energy and exergy analysis show that important parameters such as propane mass flow rate has different effects on the COP and exergy destruction rate.
机译:目前的研究进行了热力学建模,并分析了用于液化天然气(LNG)的双制冷剂系统,这是生产LNG的最重要技术之一。使用能量方程式,可以确定天然气的压力,质量,焓,熵和两种制冷剂,即甲烷和丙烷。研究了不同循环变量对热力学性能,特别是性能系数(COP)的影响。使用热力学第二定律对系统组件进行研究,发现了本能破坏率。火用分析结果表明,热交换器I(HX I),热交换器II(HX II)和涡轮的火用破坏率最高。此外,结果表明,所研究的循环的总火用破坏率为产生1 kg / s LNG,为2,996 kW。此外,能量和火用分析表明,丙烷质量流量等重要参数对COP和火用破坏率的影响也不同。

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