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Gandhinagar Institute
of technology
AlA Presentation
Subject:- RAC (2161908)
Topic name:- VCR – Effect of
parameter
Prepared by:- jani Parth
(150120119051)
 Contents
1.Introduction
2.VCRS on p-h chart
3.Factor affecting on VCRS
I. Effect of suction pressure
II.Effect of delivery pressure
III.Effect of superheating
IV.Effect of sub-cooling of liquid
1. introduction
Principle:- During evaporation, it absorb heat from the
cold body. This heat is used as its latent heat for
converting it from the liquid to vapour. In condensing, it
reject heat to external body, thus creating a cooling effect
in working fluid.
It is the most practical from of refrigeration In simple VCRS
fun
Fundamental processes are completed in one cycle
1.Compression
2.Condensation
3.Expansion
2. VCRS on p-h chart
 The dry saturated vapour (at state 2) is drawn by the
compressor from evaporator at lower pressure p1 and
then it is compressed isentropically to the upper pressure
p2.
 The isentropic compression is shown by the line 2-3. Since
the vapour is dry and saturated at the start of compression
it becomes superheated at the end of compression as
given by point 3
 The process of condensation which takes place at
constant pressure is given by the line 3-4
 The vapour now reduced to saturated liquid is throttled
through the expansion valve and the process is show by
…
3. Factor affecting on VCRS
ii. Effect of delivery pressure
iii. Effect of superheating
 The effect of superheating is to increase the refrigerating effect
but this increase in refrigerating effect but this increasing effect
is at the cost of increase in amount of work spent to attain the
upper pressure limit.
iv. Effect of sub-cooling of liquid
 Sub-cooling is process of cooling the liquid refrigerant below the
condensing temperature for given pressure. In the fig. the process of
sub-cooling is shown by 4-4’. As is evident from the figure the effect
of sub-cooling is to increase the refrigerating effect. thus result in
increase of COP provided that no further energy has to be spent to
obtain the extra cold coolant required.
Vapor-compression refrigeration – Effect of parameter

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Vapor-compression refrigeration – Effect of parameter

  • 1. Gandhinagar Institute of technology AlA Presentation Subject:- RAC (2161908) Topic name:- VCR – Effect of parameter Prepared by:- jani Parth (150120119051)
  • 2.  Contents 1.Introduction 2.VCRS on p-h chart 3.Factor affecting on VCRS I. Effect of suction pressure II.Effect of delivery pressure III.Effect of superheating IV.Effect of sub-cooling of liquid
  • 3. 1. introduction Principle:- During evaporation, it absorb heat from the cold body. This heat is used as its latent heat for converting it from the liquid to vapour. In condensing, it reject heat to external body, thus creating a cooling effect in working fluid. It is the most practical from of refrigeration In simple VCRS fun Fundamental processes are completed in one cycle 1.Compression 2.Condensation 3.Expansion
  • 4. 2. VCRS on p-h chart  The dry saturated vapour (at state 2) is drawn by the compressor from evaporator at lower pressure p1 and then it is compressed isentropically to the upper pressure p2.  The isentropic compression is shown by the line 2-3. Since the vapour is dry and saturated at the start of compression it becomes superheated at the end of compression as given by point 3  The process of condensation which takes place at constant pressure is given by the line 3-4  The vapour now reduced to saturated liquid is throttled through the expansion valve and the process is show by
  • 5.
  • 7. ii. Effect of delivery pressure
  • 8. iii. Effect of superheating  The effect of superheating is to increase the refrigerating effect but this increase in refrigerating effect but this increasing effect is at the cost of increase in amount of work spent to attain the upper pressure limit.
  • 9. iv. Effect of sub-cooling of liquid  Sub-cooling is process of cooling the liquid refrigerant below the condensing temperature for given pressure. In the fig. the process of sub-cooling is shown by 4-4’. As is evident from the figure the effect of sub-cooling is to increase the refrigerating effect. thus result in increase of COP provided that no further energy has to be spent to obtain the extra cold coolant required.