1Srinophakun T, Laowithayangkul S, Ishida M. Simulation of power cycle with energy utilization diagram E J ]. En- ergy Conversion & Management, 2001,42 ( 12 ) : 1437 - 1456.
3Kim C W, Chang S D, Ro S T. Analysis of the power cycle utilizing the cold energy of LNG [J]. International Journal of Energy Research. 1995.19 ( 9 ) :741 - 749.
6Ishida M, Kawamra K. Energy and exergy analysis of a chemical process system with distributed parameters based on the energy-direction factor diagram [J]. Indus- trial Engineering & Chemistry Process Design and De- velopment 1982 ; 21 : 690 - 702.
7Mehrpooya M, Rosen M A. Energy and exergy analyses of a novel power cycle using the cold of LNG ( liquefied natural gas) and low-temperature solar energy[J].Ener- gy ,2016,95:324 - 345.
8Mehrpooya M, Kalhorzadeh M, Chahartaghi M. Investi- gation of novel integrated air separation processes, cold energy recovery of liquefied natural gas and carbon diox- ide power cycle[J].. Journal of Cleaner Production, 2016,113:411 -425.
9Gomez M R, G6mez J R, Lopez-Gonzalez L M, et al. Thermodynamic analysis of a novel power plant with LNG (liquefied natural gas ) cold exergy exploitation and CO2 capture[ J]. Energy ,2016,105:32 -44.
10Aspelund A, Berstad D O, Gundersen T. An extended pinch analysis and eesign procedure utilizing pressure based exergy for subambient cooling [ J ]. Applied Ther- mal Engineering ,2007,27 ( 16 ) :2633 - 2649.