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New cold-level utilization scheme for cascade three-level rankine cycle using the cold energy of liquefied natural gas

机译:液化天然气冷能用于级联三能级朗肯循环的新冷能利用方案

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The topic of this study is the intermediate fluid vaporizer gasification system for a liquefied natural gas floating storage regasification unit. To reduce the loss of heat exchange, the primary distributary cascade three-level Rankine cycle is optimised based on the cascade three-level Rankine cycle that uses the cold energy of liquefied natural gas to generate power. The optimized primary distributary cascade three-level Rankine cycle is then compared with the original cascade three Rankine cycle established under the same conditions. Then, a secondary distributary cascade three-level Rankine cycle is proposed. Results show that under a liquefied natural gas flow of 175 t/h, the primary distributary cascade three-level Rankine cycle system exhibits a maximum net output power of 4130.72 kW and an exergy efficiency of 23.78%, which is higher than that of the typical cascade three-level Rankine cycle. Moreover, the net output power and exergy efficiency of the primary distributary cascade three-level Rankine cycle system increased by 3.71% and by 3.84%, respectively. The secondary distributary cascade three-level Rankine cycle system exhibits a maximum net output power of 4143.75 kW and an exergy efficiency of 23.85%.
机译:这项研究的主题是用于液化天然气浮动存储再气化装置的中间流体气化器气化系统。为了减少热交换的损失,在使用液化天然气的冷能发电的级联三能级兰金循环的基础上优化了初级分配级联三能级兰金循环。然后将优化的主分配级联三级兰金循环与在相同条件下建立的原始级联三级兰金循环进行比较。然后,提出了二级分配级联三级朗肯循环。结果表明,在液化天然气流量为175 t / h的情况下,一次分配级联三级朗肯循环系统最大净输出功率为4130.72 kW,火用效率为23.78%,高于典型值。级联三级兰金循环。此外,初级分配级联三级朗肯循环系统的净输出功率和火用效率分别提高了3.71%和3.84%。二级分配级联三级朗肯循环系统的最大净输出功率为4143.75 kW,火用效率为23.85%。

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