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Development of partial liquefaction system for liquefied natural gas carrier application using exergy analysis

机译:利用(火用)分析开发液化天然气载体的部分液化系统。

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摘要

The cargo handling system, which is composed of a fuel gas supply unit and cargo tank pressure control unit, is the second largest power consumer in a Liquefied Natural Gas (LNG) carrier. Because of recent enhancements in ship efficiency, the surplus boil-off gas that remains after supplying fuel gas for ship propulsion must be reliquefied or burned to regulate the cargo tank pressure. A full or partial liquefaction process can be applied to return the surplus gas to the cargo tank. The purpose of this study is to review the current partial liquefaction process for LNG carriers and develop new processes for reducing power consumption using exergy analysis. The developed partial liquefaction process was also compared with the full liquefaction process applicable to a LNG carrier with a varying boil-off gas composition and varying liquefaction amounts. An exergy analysis showed that the Joule–Thomson valve is the key component needed for improvements to the system, and that the proposed system showed an 8% enhancement relative to the current prevailing system. A comparison of the study results with a partial/full liquefaction process showed that power consumption is strongly affected by the returned liquefied amount.
机译:货物处理系统由燃料气体供应单元和液货舱压力控制单元组成,是液化天然气(LNG)载体中的第二大用电设备。由于最近提高了船舶效率,因此必须重新液化或燃烧后再供应或燃烧燃烧剩余的蒸发气体,以调节液货舱压力。可以应用全部或部分液化过程,以将多余的气体返回到液货舱。这项研究的目的是回顾当前液化天然气运输船的部分液化过程,并开发利用能值分析的降低能耗的新工艺。还对已开发的部分液化过程与适用于具有不同蒸发气体组成和液化量的LNG载体的完全液化过程进行了比较。火用分析表明,焦耳-汤姆逊阀是系统改进所需的关键组件,并且所提出的系统相对于当前的主流系统提高了8%。研究结果与部分/完全液化过程的比较表明,功耗受返回液化量的强烈影响。

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