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Thermodynamic design of a cascade refrigeration system of liquefied natural gas by applying mixed integer non-linear programming 被引量:2
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作者 Meysam Kamalinejad Majid Amidpour S.M.Mousavi Naeynian 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2015年第6期998-1008,共11页
Liquefied natural gas(LNG) is the most economical way of transporting natural gas(NG) over long distances. Liquefaction of NG using vapor compression refrigeration system requires high operating and capital cost. Due ... Liquefied natural gas(LNG) is the most economical way of transporting natural gas(NG) over long distances. Liquefaction of NG using vapor compression refrigeration system requires high operating and capital cost. Due to lack of systematic design methods for multistage refrigeration cycles, conventional approaches to determine optimal cycle are largely trial-and-error. In this paper a novel mixed integer non-linear programming(MINLP)model is introduced to select optimal synthesis of refrigeration systems to reduce both operating and capital costs of an LNG plant. Better conceptual understanding of design improvement is illustrated on composite curve(CC) and exergetic grand composite curve(EGCC) of pinch analysis diagrams. In this method a superstructure representation of complex refrigeration system is developed to select and optimize key decision variables in refrigeration cycles(i.e. partition temperature, compression configuration, refrigeration features, refrigerant flow rate and economic trade-off). Based on this method a program(LNG-Pro) is developed which integrates VBA,Refprop and Excel MINLP Solver to automate the methodology. Design procedure is applied on a sample LNG plant to illustrate advantages of using this method which shows a 3.3% reduction in total shaft work consumption. 展开更多
关键词 Cascade refrigeration cycle synthesis CRYOGENIC Liquefied natural gas MINLP
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水平管内甲烷超临界压力加热的数值模拟
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作者 郑伟业 陈斌 +2 位作者 栾辉宝 夏晓宇 王崧 《化工机械》 CAS 2015年第3期429-431,共3页
以甲烷为研究对象,采用CFD数值模拟二维水平管内超临界压力甲烷加热情况下的传热性能,分析了热流密度、质量流速和进口温度对其传热性能的影响规律,结果表明:当进口温度和质量流速一定时,随着热流密度的增加壁温增大,而表面传热系数减小... 以甲烷为研究对象,采用CFD数值模拟二维水平管内超临界压力甲烷加热情况下的传热性能,分析了热流密度、质量流速和进口温度对其传热性能的影响规律,结果表明:当进口温度和质量流速一定时,随着热流密度的增加壁温增大,而表面传热系数减小;当进口温度和壁面热流密度一定时,表面传热系数随质量流速的增大而增大;当质量流速和壁面热流密度一定时,表面传热系数随进口温度的增大而增大。 展开更多
关键词 甲烷 液化-压缩天然气 超临界压力 数值模拟
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