A closed system consists of 2 kg of Carbon Dioxide. The gas is initially at state 1, where P1 = 1 bar and T1 = 300 K. The system undergoes a cycle consisting of the following processes: Process 1 2: Isochoric/Isometric process to P2 where P2/P1 = 4. Process 2 → 3: Expansion process with PV128 = constant Process 3 → 1: Isobaric process until the system reaches the initial state Data for CO2 are: R = 0.1889 kJ/kg.K, c, = 0.846 kJ/kg.K and cy= 0.657 kJ/kg. K Determine the volume at state 1, 2 and 3. Determine the temperature at state 2 and 3. i. ii. iii. Sketch the cycle on a P-V diagram
A closed system consists of 2 kg of Carbon Dioxide. The gas is initially at state 1, where P1 = 1 bar and T1 = 300 K. The system undergoes a cycle consisting of the following processes: Process 1 2: Isochoric/Isometric process to P2 where P2/P1 = 4. Process 2 → 3: Expansion process with PV128 = constant Process 3 → 1: Isobaric process until the system reaches the initial state Data for CO2 are: R = 0.1889 kJ/kg.K, c, = 0.846 kJ/kg.K and cy= 0.657 kJ/kg. K Determine the volume at state 1, 2 and 3. Determine the temperature at state 2 and 3. i. ii. iii. Sketch the cycle on a P-V diagram
Related questions
Question

Transcribed Image Text:A closed system consists of 2 kg of Carbon Dioxide. The gas is initially at state 1, where P1 = 1 bar and T1
= 300 K. The system undergoes a cycle consisting of the following processes:
Process 1 2: Isochoric/Isometric process to P2 where P2/P1 = 4.
Process 2 → 3: Expansion process with PV1.28 = constant
Process 3 1: Isobaric process until the system reaches the initial state
Data for CO2 are:
R = 0.1889 kJ/kg.K, c, = 0.846 kJ/kg.K and c, 0.657 kJ/kg. K
i.
Determine the volume at state 1, 2 and 3.
Determine the temperature at state 2 and 3.
Sketch the cycle on a P-V diagram
Determine the work done for each process
Determine the net work done for the cycle
i.
iii.
iv.
V.
Expert Solution

This question has been solved!
Explore an expertly crafted, step-by-step solution for a thorough understanding of key concepts.
Step by step
Solved in 4 steps with 4 images
