Which of the following are true for the limitations and impracticalities of the compressor of the Carnot vapour cycle? Difficulty in controlling the condensation process to desired quality at pump inlet Difficulty in designing a compressor that handles two phases Incident of wear and corrosion on device blades. s. Difficulty in accomplishing a working fluid in a single phase at a high temperature. Limitation in reaching a suitable maximum temperature. Limitation of the thermal efficiencies due to operation temperature. The challenge of device that can handle steam with high moisture content For the same compression ratio O a. Thermal efficiency of Otto cycle may be greater or lesser than that of Diesel cycle Os. Thermal efficiency of Otto cycle cannot be predicted Oc. Thermal efficiency of Otto cycle is same as that of Diesel cycle Od Thermal efficiency of Otto cycle is greater than that of Diesel cyde O. All the statements Or Thermal efficiency of Otto cycle is less than that of Diesel cycle O None of the statements Which of the following are true for the limitations and impracticalities of the evaporator of the Carnot vapour cycle? a Limitation of the thermal efficiencies due to operation temperature Limitation in reaching a suitable maximum temperature. Incident of wear and corrosion on device blades. Difficulty in accomplishing a working fluid in a single phase at a high temperature The challenge of device that can handle steam with high moisture content. Difficulty in designing a compressor that handles two phases. Difficulty in controlling the condensation process to desired quality at pump inlet Which of the following are true for the limitations and impracticalities of the turbine of the Carnot w Da. The challenge of device that can handle steam with high moisture content. Incident of wear and corrosion on device blades. De Limitation of the thermal efficiencies due to operation temperature Difficulty in controlling the condensation process to desired quality at pump inlet Limitation in reaching a suitable maximum temperature. 1. Difficulty in designing a compressor that handles two phases. Difficulty in accomplishing a working fluid in a single phase at a high temperature. The thermal efficiency of theoretical Otto cycle s increases with increase in compression ratio b. decreases with increase in compression ratio increases with increase in adiabatic index d. decreases with increase in adiabatic index decreases with increase in pressure ratio increases with increase in pressure ratio None of the statements

Refrigeration and Air Conditioning Technology (MindTap Course List)
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Author:John Tomczyk, Eugene Silberstein, Bill Whitman, Bill Johnson
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Chapter47: High-pressure, Low-pressure, And Absorption Chilled-water Systems
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Problem 13RQ: The subcooling temperature in a condenser can be measured by taking the difference between the A....
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Which of the following are true for the limitations and impracticalities of the compressor of the Carnot vapour
cycle?
Difficulty in controlling the condensation process to desired quality at pump inlet
b. Difficulty in designing a compressor that handles two phases
c. Incident of wear and corrosion on device blades.
d. Difficulty in accomplishing a working fluid in a single phase at a high temperature.
Limitation in reaching a suitable maximum temperature.
Limitation of the thermal efficiencies due to operation temperature.
The challenge of device that can handle steam with high moisture content
For the same compression ratio
O a. Thermal efficiency of Otto cycle may be greater or lesser than that of Diesel cycle
Os Thermal efficiency of Otto cycle cannot be predicted
Oc. Thermal efficiency of Otto cycle is same as that of Diesel cycle
Od Thermal efficiency of Otto cycle is greater than that of Diesel cycle
O All the statements
Or Thermal efficiency of Otto cycle is less than that of Diesel cycle
O None of the statements
Which of the following are true for the limitations and impracticalities of the evaporator of the Carnot vapour
cycle?
a. Limitation of the thermal efficiencies due to operation temperature
Limitation in reaching a suitable maximum temperature.
Incident of wear and corrosion on device blades.
Difficulty in accomplishing a working fluid in a single phase at a high temperature
☐. The challenge of device that can handle steam with high moisture content.
□ Difficulty in designing a compressor that handles two phases.
g. Difficulty in controlling the condensation process to desired quality at pump inlet
Which of the following are true for the limitations and impracticalities of the turbine of the Carnot
a. The challenge of device that can handle steam with high moisture content.
b. Incident of wear and corrosion on device blades.
Limitation of the thermal efficiencies due to operation temperature.
□ Difficulty in controlling the condensation process to desired quality at pump inlet
D. Limitation in reaching a suitable maximum temperature.
1. Difficulty in designing a compressor that handles two phases.
□ Difficulty in accomplishing a working fluid in a single phase at a high temperature.
The thermal efficiency of theoretical Otto cycle
☐s increases with increase in compression ratio
6. decreases with increase in compression ratio
e increases with increase in adiabatic index
decreases with increase in adiabatic index
decreases with increase in pressure ratio
increases with increase in pressure ratio
None of the statements
Transcribed Image Text:Which of the following are true for the limitations and impracticalities of the compressor of the Carnot vapour cycle? Difficulty in controlling the condensation process to desired quality at pump inlet b. Difficulty in designing a compressor that handles two phases c. Incident of wear and corrosion on device blades. d. Difficulty in accomplishing a working fluid in a single phase at a high temperature. Limitation in reaching a suitable maximum temperature. Limitation of the thermal efficiencies due to operation temperature. The challenge of device that can handle steam with high moisture content For the same compression ratio O a. Thermal efficiency of Otto cycle may be greater or lesser than that of Diesel cycle Os Thermal efficiency of Otto cycle cannot be predicted Oc. Thermal efficiency of Otto cycle is same as that of Diesel cycle Od Thermal efficiency of Otto cycle is greater than that of Diesel cycle O All the statements Or Thermal efficiency of Otto cycle is less than that of Diesel cycle O None of the statements Which of the following are true for the limitations and impracticalities of the evaporator of the Carnot vapour cycle? a. Limitation of the thermal efficiencies due to operation temperature Limitation in reaching a suitable maximum temperature. Incident of wear and corrosion on device blades. Difficulty in accomplishing a working fluid in a single phase at a high temperature ☐. The challenge of device that can handle steam with high moisture content. □ Difficulty in designing a compressor that handles two phases. g. Difficulty in controlling the condensation process to desired quality at pump inlet Which of the following are true for the limitations and impracticalities of the turbine of the Carnot a. The challenge of device that can handle steam with high moisture content. b. Incident of wear and corrosion on device blades. Limitation of the thermal efficiencies due to operation temperature. □ Difficulty in controlling the condensation process to desired quality at pump inlet D. Limitation in reaching a suitable maximum temperature. 1. Difficulty in designing a compressor that handles two phases. □ Difficulty in accomplishing a working fluid in a single phase at a high temperature. The thermal efficiency of theoretical Otto cycle ☐s increases with increase in compression ratio 6. decreases with increase in compression ratio e increases with increase in adiabatic index decreases with increase in adiabatic index decreases with increase in pressure ratio increases with increase in pressure ratio None of the statements
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