Simulation and optimization of refrigeration cycle in NGL recovery plants with exergy-pinch analysis
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Aphornratana, 1995, Thermodynamic analysis of absorption refrigeration cycles using the second law of thermodynamic method, International Journal of Refrigeration, 18, 244, 10.1016/0140-7007(95)00007-X
Arnold, 1999
Bejan, 1997
Cerci, 2000, The minimum work requirement for distillation process
Chebbi, 2008, Study compares C2-recovery for conventional turboexpander, GSP, Oil & Gas Journal, 106, 50
Chebbi, 2010
Fabrega, 2010, Exergetic analysis of the refrigeration system in ethylene and propylene production process, International Journal of Refrigeration, 35, 1224
Gaggioli, 1998, Available energy and exergy, International Journal of Applied Thermodynamics, 1, 1
GPSA, 2004, Engineering data book
Kanoglu, 2002, Exergy analysis of multistage cascade refrigeration cycle used for natural gas liquefaction, International Journal of Energy Research, 26, 763, 10.1002/er.814
Kidnay, 2006
Kotas, 1995
Linnhoff, 1992, Shaft work targets for low temperature process design, Chemical Engineering Science, 4, 2081, 10.1016/0009-2509(92)80324-6
Mafi, 2008, Exergy analysis of multistage cascade low temperature refrigeration systems used in olefin plants, International Journal of Refrigeration, 32, 279, 10.1016/j.ijrefrig.2008.05.008
Manning, 1991
Mehrpooya, 2006, Simulation and exergy-method analysis of an industrial refrigeration cycle used in NGL recovery units, International Journal of Energy Research, 30, 1336, 10.1002/er.1256
Moran, 1982
Russel, 1977, Straight refrigeration still offers processing flexibility, Oil & Gas Journal, 75, 66
Wu, G.D., 2000. Design and retrofit of integrated refrigeration systems, PhD Thesis. UMIST, UK.