Thermodynamics - Turbines, Compressors, and Pumps in 9 Minutes!

  Рет қаралды 21,219

Less Boring Lectures

Less Boring Lectures

Күн бұрын

Enthalpy and Pressure
Turbines
Pumps and Compressors
Mixing Chamber
Heat Exchangers
Pipe Flow
Duct Flow
Nozzles and Diffusers
Throttling Device
0:00 Devices That Produce or Consume Work
1:00 Turbines
2:16 Compressors
3:23 Pumps
5:15 Turbine and Throttling Device Example
6:01 Solution - Throttling Device
6:36 Solution - Turbine
Example 1: • Open Systems - Compres...
Example 2: • Turbine Exit Saturated...
Example 3: • Steady State Device - ...
Previous Lecture:
16. Pipe Flow, Nozzles, Diffusers, and Throttling Devices:
• Pipe Flow, Nozzles, Di...
Next Lecture:
18. Mixing Chambers and Heat Exchangers:
• Heat Exchangers and Mi...
_______________________________________
Other Thermodynamics Lectures:
1. Thermodynamics Intro and Units Review: • THERMODYNAMICS Basic U...
2. Zeroth Law of Thermodynamics: • ZEROTH LAW of Thermody...
3. Closed vs. Open Systems & Intensive vs. Extensive Properties: • CONTROL VOLUMES - Clos...
4. First Law and Energy Types: • Energy Conservation Eq...
5. Efficiency in Thermodynamic Systems: • EFFICIENCY of Thermody...
6. Five Regions of T-v Diagrams: • T-v Diagrams and PROPE...
7. Interpolating and Quality Derivation: • INTERPOLATION for Ther...
8. Enthalpy and Internal Energy: • ENTHALPY and INTERNAL ...
9. Compressed Liquid Properties: • Thermodynamics COMPRES...
10. Ideal Gas and Compressibility Factor: • Ideal Gas Equation and...
11. Specific Heats: • Thermodynamics SPECIFI...
12. Specific Heat Relationships of Ideal Gases and Incompressible Substances: • Specific Heat and Ener...
13. Polytropic Process Work: • Work Expressions for P...
14. Mass and Volumetric Flow Rate: • Volumetric and MASS FL...
15. Flow Work and Energy Conservation in Open Systems: • FLOW WORK & Energy Con...
16. Pipe Flow, Nozzles, Diffusers, and Throttling Devices: • Pipe Flow, Nozzles, Di...
17. Turbines, Compressors, and Pumps: • Thermodynamics - Turbi...
18. Mixing Chambers and Heat Exchangers: • Heat Exchangers and Mi...
19. Transient Systems:
20. Second Law Intro and Power Cycles: • 2nd Law Intro and POWE...
21. Refrigerators and Heat Pumps: • REFRIGERATION and Heat...
22. Carnot Cycles and Reversible Processes: • Reversible Processes a...
23. Entropy as a Thermodynamic Property: • Thermodynamics - ENTRO...
24. Reference Entropy and Specific Heats: • REFERENCE ENTROPY and ...
25. Isentropic Efficiency: • Turbines, Compressors,...
26. Brayton Cycle: • Ideal BRAYTON CYCLE Ex...
27. Intercooling, Reheating, and Regenerators: • Regeneration, Intercoo...
28. Otto Cycle:
29. Standard Diesel Cycle:
30. Rankine Cycle:
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________________________________________
Other Engineering Courses (Playlists):
/ lessboringlectures
Statics: • Statics: Engineering M...
Mechanics of Materials: • Mechanics of Materials
Machine Design: • Mechanical Engineering...
SolidWorks (CAD): • SolidWorks (CAD)
Fluid Mechanics: • Fluid Mechanics

Пікірлер: 6
@muhandez6484
@muhandez6484 9 ай бұрын
9 minutes of pure knowledge conductivity I appreciate your work sir
@Guitar40193
@Guitar40193 5 ай бұрын
Super helpful, thanks!
@kormybeats
@kormybeats 2 жыл бұрын
At 1:50, How is the velocity higher at p1 than p2 when p1 is higher in pressure than p2 ?
@ec6895
@ec6895 10 ай бұрын
Why is it that we assume the mass flow rate at the inlet and exit to be the same?
@mechanicalkiller1061
@mechanicalkiller1061 9 ай бұрын
steady state ( open Sys)
@jds_1866
@jds_1866 7 ай бұрын
If we assume we are in a steady state then the net mass flow will be zero so mi-me=0, which means mi=me=m
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