“…Finite-time thermodynamics optimization [1][2][3][4][5][6] have been developed to evaluate and enhance the efficiency of this absorption system for cooling application operating between three temperature levels, and a lot of results, which are different from those obtained by using the classical thermodynamics, have been derived. Yan et al [7][8][9], Goktun [10], Bejan et al [11,12], Chen et al [13], Baustita et al [14,15], Grosu et al [16], Wei Han et al [17], Kodal et al [18] and Wu et al [19] analyzed the performance of the three-heat-reservoir endoreversible [7-9, 11, 12, 14] and irreversible [10,13,[15][16][17][18][19] absorption refrigeration cycles with linear heat transfer lawQα (T ). Real heat transfers between heat reservoirs and working substance do not always obey linear (Newtonian) heat transfer lawQα (T ).…”