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Presentation On Evaporators
(Refrigeration & Air Conditioning
Lab)
Definition :
The evaporator is a heat transfer system, and is that part of a
refrigeration cycle in which liquid refrigerant is evaporated for the
purpose of removing heat from the refrigerated space or product.
Responsible for absorbing heat into the refrigeration system
The evaporator is maintained at a temperature that is lower than the
medium being cooled
The capacity of any evaporator or cooling coil is the rate at which
heat will pass through the evaporator walls from the refrigerated
space to the vaporizing liquid
Removes both latent and sensible heat from the air in the
refrigerated box
Latent heat is in the form of moisture
Sensible heat reduces air and product temperature.
Types Of Evaporators
Based on their construction the various types of
evaporators are:
1. Bare Tube Evaporators :
a) The bare tube evaporators are made up of copper tubing or steel
pipes
b) The copper tubing is used for small evaporators where the
refrigerant other than ammonia is used
c) the steel pipes are used with the large evaporators where
ammonia is used as the refrigerant.
d) the atmospheric air flows over the bare tube evaporator and the
chilled air leaving it used for the cooling purposes..
e) The bare tube evaporators are usually used for liquid chilling
2) Plate Type of Evaporators
a) the coil usually made up of copper or
aluminum is embedded in the plate so as so
to form a flat looking surface.
b) the plate type of evaporator looks like a
single plate, but inside it there are several
turns of the metal tubing through which the
refrigerant flows.
c) advantage of the plate type
of evaporators is that they are more rigid as
the external plate provides lots of safety.
d) This type of evaporator is widely used in
domestic refrigeration.
e) The plates can also be welded together
forming the bank of the plate type of
evaporators that can be used the
larger evaporators of higher capacities.
3) Finned Evaporators
a) Are the bare tube type
of evaporators covered with the fins
b) he fluid tends to move between the
open spaces of the tubing and does
not come in contact with the surface
of the coil, thus the bare
tube evaporators are less effective.
c) the finned evaporators are more
effective than the bare
tube evaporators.
d) are most commonly used in the air
conditioners of almost all types like
window, split, packaged and the
central air conditioning systems.
4) Shell and Tube types of Evaporators
a) Are used in the large refrigeration and central air conditioning
systems.
b) comprise of large number of the tubes that are inserted inside the
drum or the shell.
c) Depending on the direction of the flow of the refrigerant in the
shell and tube type of evaporator, they are classified into two
types: dry expansion type and flooded type of evaporator.
1. Dry expansion evaporator: In dry expansion evaporators the
refrigerant flows along the tube side and the fluid to be chilled
flows along the shell side.
2. Flooded evaporator : In case of the flooded type
of evaporators the refrigerant flows along the shell side and fluid
to be chilled flows along the tube.
Presentation on evaporators
5) SHELLAND COIL EVAPORATOR
1. Shell and Coil evaporators have one or more spiral shaped, bare
tube coils enclosed in a welded steel shell.
2. They are generally dry expansion type with refrigerant in coils
and chilled liquid in the shell.
3. They have thermal capacity for application for high but
infrequent loads.
4. They are used for chilling of drinking water and other aspects
where cleanliness is a factor, e.g. Bakeries and Photographic
Laboratories.
According to mode of heat transfer
 Natural Convection Evaporators :
a) are often used in applications where low speed air desirable or
damage dehydration product possible.
b) The greater the temperature difference will produce higher rates
of air circulation, because the difference between the density of
warm and cold air increases.
c) Cold air is denser than warm air. Therefore, the natural circulation
evaporators, usually mounted high above the floor die refrigerated
Cabinet.
Forced convection evaporator :
a) High velocity air over a closely finned coil can increase heat
transfer.
b) The use of forced draught can reduce the overall size and weight of
the evaporator which can reduce purchasing and installation costs.
c) Forced draught also gives:-
 more rapid cooling
 even temperatures
 good humidity control
 easy defrosting.
The fins on a forced draught evaporator are very closely spaced which
gives a high capacity rating.
Presentation on evaporators
THANK YOU

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Presentation on evaporators

  • 2. Definition : The evaporator is a heat transfer system, and is that part of a refrigeration cycle in which liquid refrigerant is evaporated for the purpose of removing heat from the refrigerated space or product.
  • 3. Responsible for absorbing heat into the refrigeration system The evaporator is maintained at a temperature that is lower than the medium being cooled The capacity of any evaporator or cooling coil is the rate at which heat will pass through the evaporator walls from the refrigerated space to the vaporizing liquid Removes both latent and sensible heat from the air in the refrigerated box Latent heat is in the form of moisture Sensible heat reduces air and product temperature.
  • 4. Types Of Evaporators Based on their construction the various types of evaporators are: 1. Bare Tube Evaporators : a) The bare tube evaporators are made up of copper tubing or steel pipes b) The copper tubing is used for small evaporators where the refrigerant other than ammonia is used c) the steel pipes are used with the large evaporators where ammonia is used as the refrigerant. d) the atmospheric air flows over the bare tube evaporator and the chilled air leaving it used for the cooling purposes.. e) The bare tube evaporators are usually used for liquid chilling
  • 5. 2) Plate Type of Evaporators a) the coil usually made up of copper or aluminum is embedded in the plate so as so to form a flat looking surface. b) the plate type of evaporator looks like a single plate, but inside it there are several turns of the metal tubing through which the refrigerant flows. c) advantage of the plate type of evaporators is that they are more rigid as the external plate provides lots of safety. d) This type of evaporator is widely used in domestic refrigeration. e) The plates can also be welded together forming the bank of the plate type of evaporators that can be used the larger evaporators of higher capacities.
  • 6. 3) Finned Evaporators a) Are the bare tube type of evaporators covered with the fins b) he fluid tends to move between the open spaces of the tubing and does not come in contact with the surface of the coil, thus the bare tube evaporators are less effective. c) the finned evaporators are more effective than the bare tube evaporators. d) are most commonly used in the air conditioners of almost all types like window, split, packaged and the central air conditioning systems.
  • 7. 4) Shell and Tube types of Evaporators a) Are used in the large refrigeration and central air conditioning systems. b) comprise of large number of the tubes that are inserted inside the drum or the shell. c) Depending on the direction of the flow of the refrigerant in the shell and tube type of evaporator, they are classified into two types: dry expansion type and flooded type of evaporator. 1. Dry expansion evaporator: In dry expansion evaporators the refrigerant flows along the tube side and the fluid to be chilled flows along the shell side. 2. Flooded evaporator : In case of the flooded type of evaporators the refrigerant flows along the shell side and fluid to be chilled flows along the tube.
  • 9. 5) SHELLAND COIL EVAPORATOR 1. Shell and Coil evaporators have one or more spiral shaped, bare tube coils enclosed in a welded steel shell. 2. They are generally dry expansion type with refrigerant in coils and chilled liquid in the shell. 3. They have thermal capacity for application for high but infrequent loads. 4. They are used for chilling of drinking water and other aspects where cleanliness is a factor, e.g. Bakeries and Photographic Laboratories.
  • 10. According to mode of heat transfer  Natural Convection Evaporators : a) are often used in applications where low speed air desirable or damage dehydration product possible. b) The greater the temperature difference will produce higher rates of air circulation, because the difference between the density of warm and cold air increases. c) Cold air is denser than warm air. Therefore, the natural circulation evaporators, usually mounted high above the floor die refrigerated Cabinet.
  • 11. Forced convection evaporator : a) High velocity air over a closely finned coil can increase heat transfer. b) The use of forced draught can reduce the overall size and weight of the evaporator which can reduce purchasing and installation costs. c) Forced draught also gives:-  more rapid cooling  even temperatures  good humidity control  easy defrosting. The fins on a forced draught evaporator are very closely spaced which gives a high capacity rating.