A method of AC
systems for
automobiles
ByBy
JOEL P JOHNJOEL P JOHN
Mechanical Dept. [3rMechanical Dept. [3rdd
yr]yr]
Pydah Kaushik CollegePydah Kaushik College
Introduction
• Cars got to have AC which also must be
eco-green
• Traditional AC is designed to maximize
capacity but not efficiency
• VARS above VCRS can provide engine
life overcoming fuel consumption
• The engine waste heat comes into play
Vapour Compression Refrigeration System
The refrigerant absorbs heat,
evaporates, compresses,
condenses in this
refrigeration cycle
• Compressors run on electrical energy
• Moving parts increases heat load
• Condenser balances heat input
Vapour Absorption Refrigeration System
• Energy can be used from exhaust,
steam or engine muda
• Moving parts are only in the pump
•Heated ammonia-water refrigerant is
absorbed by desiccants
•Ammonia usage is non- toxic, emits
leakage & ecogreen
Ammonia-Vapor Absorption Machine
• Lithium molybdate used as corrosion
inhibitor
• Water over CFC as refrigerants
• No moving parts (no dynamic load)
Absorption Systems: Compression Systems:
1. Low grade energy with
I.C. Engines
1. High-grade energy like
mechanical work
2. Operation is smooth 2. More wear, tear and
noise
3. Works at lower
evaporator pressures
3. COP decreases
considerably with
decrease in evaporator
pressure.
4. Moving parts present only
in the pump
4. Moving parts are present
in the Compressors
5. Hydrogen is reutilized 5.Toxic Carbons are emitted
Advantages involved
•Method of Compression
•Power consumption
•Type of Energy
•Refrigerant used
•Moving parts
•Greenhouse effect
Disadvantages
• Initial capital cost
• Low working pressures
• Corrosive nature of refrigerants
• Coefficient of performance (COP)
• Higher heat rejection
The VARS applies to all the
conditions like CWHR and CWHC.
It also meets the demand for
heat exchanges and durability. So
such a system using combination of
exhaust heat and ammonia vapor is
proposed and can be applied for
our car in the near-future
A method of AC systems for automobiles
A method of AC systems for automobiles

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A method of AC systems for automobiles

  • 1. A method of AC systems for automobiles ByBy JOEL P JOHNJOEL P JOHN Mechanical Dept. [3rMechanical Dept. [3rdd yr]yr] Pydah Kaushik CollegePydah Kaushik College
  • 2. Introduction • Cars got to have AC which also must be eco-green • Traditional AC is designed to maximize capacity but not efficiency • VARS above VCRS can provide engine life overcoming fuel consumption • The engine waste heat comes into play
  • 4. The refrigerant absorbs heat, evaporates, compresses, condenses in this refrigeration cycle
  • 5. • Compressors run on electrical energy • Moving parts increases heat load • Condenser balances heat input
  • 7. • Energy can be used from exhaust, steam or engine muda • Moving parts are only in the pump
  • 8. •Heated ammonia-water refrigerant is absorbed by desiccants •Ammonia usage is non- toxic, emits leakage & ecogreen
  • 9. Ammonia-Vapor Absorption Machine • Lithium molybdate used as corrosion inhibitor • Water over CFC as refrigerants • No moving parts (no dynamic load)
  • 10. Absorption Systems: Compression Systems: 1. Low grade energy with I.C. Engines 1. High-grade energy like mechanical work 2. Operation is smooth 2. More wear, tear and noise 3. Works at lower evaporator pressures 3. COP decreases considerably with decrease in evaporator pressure. 4. Moving parts present only in the pump 4. Moving parts are present in the Compressors 5. Hydrogen is reutilized 5.Toxic Carbons are emitted
  • 11. Advantages involved •Method of Compression •Power consumption •Type of Energy •Refrigerant used •Moving parts •Greenhouse effect
  • 12. Disadvantages • Initial capital cost • Low working pressures • Corrosive nature of refrigerants • Coefficient of performance (COP) • Higher heat rejection
  • 13. The VARS applies to all the conditions like CWHR and CWHC. It also meets the demand for heat exchanges and durability. So such a system using combination of exhaust heat and ammonia vapor is proposed and can be applied for our car in the near-future