Thermodynamic design data and performance evaluation of the water plus lithium bromide plus lithium iodide plus lithium nitrate plus lithium chloridesystem for absorption chiller
Hr. Lee et al., Thermodynamic design data and performance evaluation of the water plus lithium bromide plus lithium iodide plus lithium nitrate plus lithium chloridesystem for absorption chiller, APPL TH ENG, 20(8), 2000, pp. 707-720
Duhring (P-T-X) and enthalpy-concentration (H-X-T) diagrams of the H2O + Li
Br + LINO3 + LiI + LiCl (mole ratio of LiBr : LiNO3 : LiI :LiCl = 5: 1 : 1
:2) system were constructed by using the experimental data sets. Thermodyna
mic design data for a double-effect series-flow absorption chiller were cal
culated at various operating conditions [2 less than or equal to T(e)less t
han or equal to 14 degrees C, 30 less than or equal to T(a)less than or equ
al to 50 degrees C, 30 less than or equal to T(c)less than or equal to 50 d
egrees C, T-gh(COP = 0) less than or equal to T-gh less than or equal to T-
gh (crystallization limit)] by a computer simulation. The proposed working
fluid was found to be applicable to cycle operation of air-cooled absorptio
n chiller with no crystallization problem at higher absorber temperature. (
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