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Analysis on feasibility of a novel cryogenic heat exchange network with liquid nitrogen regeneration process for onboard liquefied natural gas reliquefaction

机译:新型低温交换网络与液氮再生工艺的可行性分析,用于液化天然气分类

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Flexibility and compact multi-stream heat exchange process with cryogenic heat exchange network (CHEN) and liquid nitrogen regeneration refrigeration system (LN2 ReS) was proposed for onboard liquefed natural gas (LNG) reliquefaction. LNG circulates heat exchange with liquid nitrogen through recuperator, precooler, and subcooler successively in the CHEN to become supercooled LNG. Then it sprayed from the upper part into the storage tank to cool its boil off gas (BOG). To achieve the purpose of BOG reliquefaction in the tank. Based on the reverse Brayton nitrogen cycle, the nitrogen is regenerated into liquid nitrogen by an economizer, compressor, cooler, and expander in turn for storage and the next heat exchange. Measured the heat transfer result of 20 kW cold capacity, and found that the proposal has the characteristics of compact structure, no freezing, simple control logic, effcient pre-cooling liquefaction, etc. It only needs to control the design freedom of the ?ow rate of the LN2 ReS, which can be adapted to the LNG reliquefaction process. Besides, the exergy loss of the proposed CHEN accounts for 30.3% of the total, which is less than the proportion of the LN2 ReS. After process calculation, experimental case study, and exergy loss analysis, it proves the feasibility of the proposal and is particularly suitable for new energy ships.
机译:提出了具有低温热交换网络(Chen)和液氮再生制冷系统(LN2 RES)的灵活性和紧凑的多流热交换过程(LN2 RES),用于液化液化天然气(LNG)分类。 LNG通过恢复器,前冷器和过冷器循环与液氮的热交换,在陈中连续地将液压液体化变为Supercooled LNG。然后它从上部喷射到储罐中以冷却其沸腾的气体(沼泽)。达到罐中沼泽释放的目的。基于反向布莱顿氮循环,氮气通过经济化器,压缩机,冷却器再生成液氮,反过来恢复储存和下一个热交换。测量了20 kW冷容量的传热结果,发现该提案具有紧凑结构的特点,无冷冻,简单的控制逻辑,效率预冷液化等。它只需要控制设计自由LN2 RES的速率,可以适应LNG中取消过程。此外,拟议的陈的高度损失占总数的30.3%,低于LN2 Res的比例。在流程计算后,实验案例研究和漏洞损失分析,证明该提案的可行性,特别适用于新能源船。

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