Lithium bromide absorption type heat exchange unit with externally-cooled solution
A lithium bromide absorption and external cooling technology, which is applied in the field of heat exchange units and lithium bromide absorption heat exchange units, can solve the problems of high manufacturing cost and large total area of absorption heat exchange units, and achieves convenient operation and maintenance, remarkable energy saving effect, Reliable effect of system performance
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specific Embodiment approach 1
[0008] Specific implementation mode 1: Combination figure 1 To illustrate this embodiment, the lithium bromide absorption heat exchange unit with external cooling of the solution described in this embodiment includes a generator 1, a condenser 2, an evaporator 3, an absorber 4, a solution pump 6, an external heat exchanger 7, and a section. Flow expansion device 8, concentrated solution cooler 9, primary water pipeline 10, secondary water first pipeline 11, secondary water second pipeline 12, secondary water third pipeline 13, first refrigerant steam pipe Path 14, refrigerant water path 15, second refrigerant water vapor pipe 16, concentrated solution pipe 17, and dilute solution pipe 18. The generator 1 is connected to the condenser 2 through the first refrigerant water vapor pipe 14, The condenser 2 is connected to the evaporator 3 through the refrigerant water passage 15, the evaporator 3 is connected to the absorber 4 through the second refrigerant water vapor line 16, and t...
specific Embodiment approach 2
[0009] Specific implementation manner two: combination figure 2 To illustrate this embodiment, the lithium bromide absorption heat exchange unit with external cooling of the solution described in this embodiment includes a generator 1, a condenser 2, an evaporator 3, an absorber 4, a solution pump 6, an external heat exchanger 7, a section Flow expansion device 8, concentrated solution cooler 9, primary water pipeline 10, secondary water first pipeline 11, secondary water second pipeline 12, secondary water third pipeline 13, first refrigerant steam pipe Path 14, refrigerant water path 15, second refrigerant water vapor pipe 16, concentrated solution pipe 17, and dilute solution pipe 18. The generator 1 is connected to the condenser 2 through the first refrigerant water vapor pipe 14, The condenser 2 is connected to the evaporator 3 through the refrigerant water passage 15, the evaporator 3 is connected to the absorber 4 through the second refrigerant water vapor line 16, and ...
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