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Dynamic simulation of fuel tank aging for LNG‐fueled ship apparatus in an X‐DF Otto cycle engine

机译:X-DTO螺旋循环发动机中LNG燃料船舶设备燃料箱老化动态仿真

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摘要

Abstract The increased density in a liquefied natural gas (LNG) tank caused by boil‐off gas (BOG) is a key factor to consider for LNG‐fueled ships with Otto cycle engines. This study conducted dynamic simulation using Aspen HYSYS to solve LNG aging in the fuel gas supply system (FGSS) of an extra‐long stroke dual fuel (X‐DF) engine. The aging phenomenon is severe in the Otto cycle internal combustion engine because heavy hydrocarbon (HHC) components must be removed during the process to satisfy the methane number (MN) requirement. HHC components such as ethane, propane, butane are separated in the HHC removal process so that HHC can be returned to the LNG storage or fuel tank without increased risk of equipment failure relative to steady‐state design conditions. Dynamic process simulations for four cases were conducted to verify the behavior of LNG aging for two fuel compositions and two fuel tank capacities. The results indicate that the different composition of LNG affects the pump duty, the duty of heat exchanger and BOG compressor in steady‐state simulation. Additionally, based on the analysis results, solutions to the problem caused by LNG aging for the FGSS in an X‐DF engine were provided.
机译:摘要引起蒸发气体(BOG)液化天然气(LNG)储罐增加密度是考虑LNG为燃料的船舶与奥托循环发动机的关键因素。本研究中进行的使用Aspen HYSYS解决LNG在超长冲程双燃料(X-DF)发动机的燃料气体供给系统(FGSS)老化动态模拟。老化现象是在奥托循环内燃机严重,因为重质烃(HHC)组件必须的过程中被移除以满足甲烷数(MN)的要求。 HHC组分,例如乙烷,丙烷,丁烷在所述HHC移除过程分离,使得HHC可以不相对于稳定状态的设计条件的设备故障的风险增加返回到LNG存储或燃料箱。四种情况的动态过程仿真,以验证LNG的老化两个燃料组合物和两个燃料箱的容量的行为。结果表明,LNG的不同组成影响泵负荷,热交换器以及压缩机BOG的稳态仿真的任务。此外,根据分析结果,已提供给老化的X-DF发动机FGSS造成LNG解决问题的办法。

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