Thermodynamics : Brayton cycle with regeneration, Brayton cycle with intercooling (32 of 51)

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0:01:09 - Example: Non-ideal Simple Brayton cycle
0:16:04 - Back-work ratio, boosting efficiency of gas turbine engines
0:20:35 - Introduction to Brayton cycle with regeneration
0:24:49 - Property diagrams for Brayton cycle with regeneration
0:28:17 - Thermodynamic efficiency and process equations for ideal Brayton cycle with regeneration
0:30:12 - Regenerator effectiveness for ideal Brayton cycle with regeneration
0:36:13 - Non-ideal Brayton cycle with regeneration
0:42:28 - Example: Revisit previous example problem with regeneration
0:48:32 - Introduction to Brayton cycle with intercooling, property diagrams
0:59:39 - Pressure ratio across each intercooling stage

This lecture series was recorded live at Cal Poly Pomona during Spring 2018. The textbook is Cengel & Boles, "Thermodynamics: An Engineering Approach (8th edition)."
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This channel is basically saving my life

hamzairfan
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What a knowledgeable, expert and generous professor. Thank you so much for sharing! That's really helpful.

leilikheirkhah
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in 8 hours, ill be having my exams and now i just learned about why are we squar rooting rp LOL thank you mr.! now i can sleep

a-kiespina
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Glad that question was asked about the Ts diagram. I’ve had the same question also in the reciprocating engine lectures. Really clears things up. But professor kind of shrugged it off as not a big deal lol

jktification
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Thank you for explaining the problems step by step. However, for the first example, Values of Pr1 and the rest of the values are from table A-22 not A-17.

faresaljawfi