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Energy-efficient process design and optimization of dual-expansion systems for BOG (Boil-off gas) Re-liquefaction process in LNG-fueled ship

机译:LNG燃料船舶沼泽(蒸发气体)重新液化过程的双膨胀系统的节能工艺设计与优化

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摘要

Energy efficiency of the conventional boil-off gas re-liquefaction process in the LNG-fueled ships, which is based on a single expander cycle, can be improved with structural modifications, such as a dual expander cycle. Herein, a structural optimization framework concept is proposed to systematically screen a wide range of configurational options for dual expander processes, and to evaluate their techno-economic impacts in a holistic manner. Ten possible process configurations are embedded in the framework, with which the strategic use of design options, including splitting and/or mixing of streams, and introduction of extra hot stream in the exchanger, are fully investigated. Furthermore, a cascaded cycle is compared as a possible candidate for improving the energy efficiency of the single expander process. The optimum process design is investigated by optimizing process variables to achieve maximum energy efficiency with aid of GA (Genetic Algorithm). The optimized performance of the dual-expander process is 23% better than the single expander system in terms of energy efficiency. The advantage of the proposed modeling and optimization framework is its adaptability to other liquefaction processes.
机译:可以提高基于单膨胀机循环的LNG燃料船中的传统蒸发气体再液化过程的能量效率可以通过结构修改,例如双膨胀机循环。这里,提出了一种结构优化框架概念,用于系统地筛选各种配置选项,用于双膨胀工艺,并以整体方式评估它们的技术经济影响。在框架中嵌入了十种可能的过程配置,其中设计选项的战略使用包括分裂和/或流的混合,并在交换器中引入额外的热流。此外,将级联循环与用于提高单膨胀工艺的能量效率的可能的候选者进行比较。通过优化工艺变量来研究最佳过程设计,以借助Ga(遗传算法)来实现最大能量效率。在能效方面,双膨胀工艺的优化性能比单个扩展系统更好。所提出的建模和优化框架的优点是其对其他液化过程的适应性。

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