Solar energy is to be used to operate a lithium bromide - water absorption system shown below. The capacity is 3 Tons. Find: (a) thermodynamic conditions of all points, (0) refrigerant flow rate if

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Solar energy is to be used to operate a lithium bromide – water absorption system
shown below. The capacity is 3 Tons. Find: (a) thermodynamic conditions of all points, (0)
refrigerant flow rate , if
Condenser temperature = 38 °C.
Evaporator temperature = 4.5 °C.
Temperature of strong solution leaving the absorber = 41 °C.
Temperature of strong solution entering the generator = 85 °C.
Generator temperature = 95 °C.
TE n6 x
%3D
85
Sכ'
Generatór
Condenser
4
Heat Exchanger
Exp. valve
6.
Pump
2
Abserber
4.5
Evaporator
3.
Transcribed Image Text:Solar energy is to be used to operate a lithium bromide – water absorption system shown below. The capacity is 3 Tons. Find: (a) thermodynamic conditions of all points, (0) refrigerant flow rate , if Condenser temperature = 38 °C. Evaporator temperature = 4.5 °C. Temperature of strong solution leaving the absorber = 41 °C. Temperature of strong solution entering the generator = 85 °C. Generator temperature = 95 °C. TE n6 x %3D 85 Sכ' Generatór Condenser 4 Heat Exchanger Exp. valve 6. Pump 2 Abserber 4.5 Evaporator 3.
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