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Knowledge based decision making method for the selection of mixed refrigerant systems for energy efficient LNG processes

机译:基于知识的节能LNG工艺混合制冷系统选择决策方法

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摘要

Mixed refrigerant (MR) systems are used in many industrial applications because of their high energy efficiency, compact design and energy-efficient heat transfer compared to other processes operating with pure refrigerants. The performance of MR systems depends strongly on the optimum refrigerant composition, which is difficult to obtain. This paper proposes a simple and practical method for selecting the appropriate refrigerant composition, which was inspired by (ⅰ) knowledge of the boiling point difference in MR components, and (ⅱ) their specific refrigeration effect in bringing a MR system close to reversible operation. A feasibility plot and composite curves were used for full enforcement of the approach temperature. The proposed knowledge-based optimization approach was described and applied to a single MR and a propane precooled MR system for natural gas liquefaction. Maximization of the heat exchanger exergy efficiency was considered as the optimization objective to achieve an energy efficient design goal. Several case studies on single MR and propane precooled MR processes were performed to show the effectiveness of the proposed method. The application of the proposed method is not restricted to lique-fiers, and can be applied to any refrigerator and cryogenic cooler where a MR is involved.
机译:与其他使用纯制冷剂的工艺相比,混合制冷剂(MR)系统具有高能效,紧凑设计和节能传热的特性,因而在许多工业应用中得到了使用。 MR系统的性能在很大程度上取决于难以获得的最佳制冷剂成分。本文提出了一种简单实用的方法来选择合适的制冷剂成分,这一方法的灵感来自(ⅰ)MR组件沸点差异的知识,以及(ⅱ)它们使MR系统接近可逆运行的特定制冷效果。可行性图和合成曲线用于完全逼近进场温度。描述了所提出的基于知识的优化方法,并将其应用于天然气的液化的单个MR和丙烷预冷MR系统。热交换器的火用效率最大化被认为是实现节能设计目标的最优化目标。对单个MR和丙烷预冷MR工艺进行了几个案例研究,以证明该方法的有效性。提出的方法的应用不限于液化器,并且可以应用于涉及MR的任何冰箱和低温冷却器。

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