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Energy demand of liquefaction and regasification of natural gas and the potential of LNG for operative thermal energy storage

机译:天然气液化和再气化的能源需求以及液化天然气在热能存储方面的潜力

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摘要

The world trade volume of Liquefied Natural Gas (LNG) is increasing year by year. Unlike gaseous natural gas (NG), which is transported through a fixed network of pipelines, LNG offers more flexibility to both the exporters and the importers as it can be transported between any pair of exporting and receiving LNG terminals. The LNG process, consisting of liquefaction, transportation, storage, and regasification of LNG, is accompanied by certain energy demands. The paper focuses on the evaluation of the chain of energy transformations involved in the LNG process. Based on the review of existing information, the entire process is evaluated from the view of the potential use of LNG for direct storage of cold and indirect storage of power. The analysis of the existing data shows that the overall efficiency of using LNG for operative energy storage depends very much on the technologies involved and on the overall capacity of the particular technology. The combination of energy-efficient liquefaction technologies and regasification technologies with energy recovery makes it possible to employ LNG as an energy storage medium even when transported over large distances.
机译:液化天然气(LNG)的世界贸易量逐年增加。与通过固定管道网络运输的气态天然气(NG)不同,LNG为出口商和进口商提供了更大的灵活性,因为它可以在任何一对出口和接收LNG终端之间运输。由液化,运输,储存和再气化组成的液化天然气工艺伴随着一定的能源需求。本文着重于评估液化天然气工艺中涉及的能量转化链。基于对现有信息的审查,从可直接使用LNG和间接存储LNG的潜在用途的角度评估整个过程。对现有数据的分析表明,使用LNG进行有效能量存储的总体效率在很大程度上取决于所涉及的技术以及特定技术的整体能力。高效的液化技术和再气化技术与能量回收的结合,使得即使在远距离运输时,也可以将LNG用作能量存储介质。

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