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Structural, operational and economic optimization of cryogenic natural gas plant using NSGAII two-objective genetic algorithm

机译:基于NSGAII两目标遗传算法的低温天然气装置的结构,运行和经济优化。

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Combined pinch and exergy analysis is herein employed to design and optimize a complex integrated structure of cryogenic natural gas plant based on the dual mixed refrigerant refrigeration cycle. Exergy composite curves are applied to reveal possible process improvement. Process intensification can reduce the number of required equipment as well as energy consumption. This integrated structure has specific power of 0.339 (kWh/kg LNG) and exergy efficiency of 66.14%. Sensitivity analysis is used to identify-the important parameters affecting on the integrated processes and study behavior of the integrated structure against plant disturbances as well. After identifying important parameters, two single-objective and a NSGAII two-objective genetic algorithms are used to minimize thermodynamic properties and economic values of the integrated structure, simultaneously. Optimization procedure is conducted by structural and operational methods. The amounts of specific power and period of return are decreased by 6.68% and 5.65% by implementing the NSGAII two-objective genetic algorithm. (C) 2018 Elsevier Ltd. All rights reserved.
机译:基于双重混合制冷剂制冷循环,在本文中采用组合的捏和火用分析来设计和优化低温天然气厂的复杂整体结构。应用(火用)复合曲线揭示可能的工艺改进。强化工艺可以减少所需设备的数量以及能耗。这种集成结构的比功率为0.339(kWh / kg LNG),火用效率为66.14%。灵敏度分析用于识别影响集成过程的重要参数,并研究集成结构抵抗植物干扰的行为。在确定了重要的参数之后,使用了两个单目标遗传算法和一个NSGAII两个目标遗传算法来同时最小化集成结构的热力学性质和经济价值。优化过程通过结构和操作方法进行。通过实施NSGAII两目标遗传算法,比功率和回报期分别减少了6.68%和5.65%。 (C)2018 Elsevier Ltd.保留所有权利。

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