Problem
On the - diagram, draw a Carnot cycle between two isotherms ( and ) and two adiabatics, indicating the direction of travel if the machine is a heat engine. Show qualitatively where the heat enters, where leaves, and which area corresponds to the net work. Finally, draw on the same diagram how the cycle changes if it is reversed to make a refrigerator.
Solution
Structure of the cycle. The Carnot cycle consists of four alternating reversible stages: two isotherms (hyperbolas , a hot one at , a cold one at ) and two adiabatics (), steeper than the isotherms because .
Engine (clockwise direction). Travelling A→B→C→D→A clockwise, the net work is the enclosed area and is positive ():
- A→B isothermal expansion at : the gas absorbs (in contact with the hot source);
- B→C adiabatic expansion: , the gas cools from to ;
- C→D isothermal compression at : the gas releases to the cold source;
- D→A adiabatic compression: , the gas heats from to .
Carnot cycle clockwise (engine): the enclosed area is the positive net work.
Refrigerator (reversed direction, anticlockwise). Travelling the same cycle in reverse, A→D→C→B→A anticlockwise, the net work changes sign (): now work is spent from outside. The gas absorbs from the cold source (along the cold isotherm, now travelled from D to C) and releases to the hot source: heat is “pumped” from cold to hot.
The curve in the - plane is the same: only the direction of travel changes. Engine and refrigerator are the same Carnot cycle travelled in the two opposite directions.
Links
Topics: Heat engines Concepts: Carnot cycle · Refrigerator and heat pump · Thermodynamic transformations Skills: Reading graphs Methods: P-V and ln P – ln V diagram Objects: Heat engine · Refrigerator