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Analysis and optimization of a cascading power cycle with liquefied natural gas (LNG) cold energy recovery

机译:液化天然气(LNG)冷能回收的级联功率循环的分析和优化

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The effective utilization of the cryogenic energy associated with LNG vaporization is quite important. In this paper a cascading power cycle with LNG directly expanding consisting of a Rankine cycle with ammonia-water as working fluid and a power cycle of combustion gas is proposed to recover cryogenic energy of LNG. Energy equilibrium equations and exergy equilibrium equations of each equipment in the cascading power cycle are established. Taken some operating parameters as key parameters, influences of these parameters on thermal efficiency and exergy efficiency of the cascading power cycle were analyzed. Optimization of the cascading power cycle with maximum economic benefits as objective function together with optimum variables and constraint conditions was solved. The optimum objective and variables were achieved.
机译:有效利用与LNG蒸发相关的低温能量非常重要。本文提出了一种以LNG直接扩展的级联功率循环,包括以氨水为工作液的兰金循环和燃气的功率循环,以回收LNG的低温能量。建立了各个设备在级联功率循环中的能量平衡方程和火用平衡方程。以一些运行参数为关键参数,分析了这些参数对级联功率循环的热效率和火用效率的影响。解决了以最大经济收益为目标函数以及最佳变量和约束条件的级联功率循环的优化问题。达到了最佳目标和变量。

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