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Steady Flow Systems - Turbines and Compressors | Thermodynamics | (Solved Examples)
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Building upon the knowledge of the previous video, we dive into turbines and compressors, the energy balance equations associated with them, and how to solve problems involving both turbines and compressors.
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Intro (00:00)
Refrigerant-134a enters an adiabatic compressor as saturated vapor (02:42)
Helium is to be compressed from 105 kPa and 295 K to 700 kPa and 460 K (05:00)
Steam flows steadily into a turbine with a mass flow rate of (06:43)
Books used:
📘Çengel Yunus A. and M. A. Boles, Thermodynamics: an engineering approach. New York, NY: McGraw-Hill Education, 2016.
📘C. Borgnakke and R. E. Sonntag, Fundamentals of thermodynamics. Hoboken, NJ: Wiley, 2019.
If you found these videos helpful and would like to support the channel, please see the following links.
Donate:
Intro (00:00)
Refrigerant-134a enters an adiabatic compressor as saturated vapor (02:42)
Helium is to be compressed from 105 kPa and 295 K to 700 kPa and 460 K (05:00)
Steam flows steadily into a turbine with a mass flow rate of (06:43)
Books used:
📘Çengel Yunus A. and M. A. Boles, Thermodynamics: an engineering approach. New York, NY: McGraw-Hill Education, 2016.
📘C. Borgnakke and R. E. Sonntag, Fundamentals of thermodynamics. Hoboken, NJ: Wiley, 2019.
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