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A novel vortex tube-based N2-expander liquefaction process for enhancing the energy efficiency of natural gas liquefaction

机译:基于涡旋管的N2膨胀器液化工艺,用于提高天然气液化的能效

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This research work unfolds a simple, safe, and environment-friendly energy efficient novel vortex tube-based natural gas liquefaction process (LNG). A vortex tube was introduced to the popular N2-expander liquefaction process to enhance the liquefaction efficiency. The process structure and condition were modified and optimized to take a potential advantage of the vortex tube on the natural gas liquefaction cycle. Two commercial simulators ANSYS? and Aspen HYSYS? were used to investigate the application of vortex tube in the refrigeration cycle of LNG process. The Computational fluid dynamics (CFD) model was used to simulate the vortex tube with nitrogen (N2) as a working fluid. Subsequently, the results of the CFD model were embedded in the Aspen HYSYS? to validate the proposed LNG liquefaction process. The proposed natural gas liquefaction process was optimized using the knowledge-based optimization (KBO) approach. The overall energy consumption was chosen as an objective function for optimization. The performance of the proposed liquefaction process was compared with the conventional N2-expander liquefaction process. The vortex tube-based LNG process showed a significant improvement of energy efficiency by 20% in comparison with the conventional N2-expander liquefaction process. This high energy efficiency was mainly due to the isentropic expansion of the vortex tube. It turned out that the high energy efficiency of vortex tube-based process is totally dependent on the refrigerant cold fraction, operating conditions as well as refrigerant cycle configurations.a These two authors contributed equally to this work.
机译:该研究工作展开了一种简单,安全,环保的节能新型涡旋管的天然气液化过程(LNG)。将涡流管引入流行的N2膨胀器液化过程中以增强液化效率。改变过程结构和条件,并优化以取代涡流管对天然气液化循环的潜在优势。两个商业模拟器ANSYS?和阿斯彭Hysys?用于研究涡旋管在LNG过程的制冷循环中的应用。计算流体动力学(CFD)模型用于模拟具有氮气(N2)作为工作流体的涡流管。随后,CFD模型的结果嵌入了Aspen Hysys中?验证所提出的LNG液化过程。使用基于知识的优化(KBO)方法进行了优化了所提出的天然气液化过程。选择整体能源消耗作为优化的客观函数。将所提出的液化过程的性能与常规的N 2膨胀器液化过程进行比较。与常规的N2膨胀器液化过程相比,涡旋管基LNG方法显示出高能量效率的显着提高20%。这种高能量效率主要是由于涡旋管的常见膨胀。事实证明,涡旋管的工艺的高能量效率完全取决于制冷剂的冷级分,操作条件以及制冷剂循环配置。这两位作者同等地贡献了这项工作。

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