Dynamic compressor | Mechanical engineering |
Автор: CORETEX CLASSES
Загружено: 20 апр. 2025 г.
Просмотров: 210 просмотров
Dynamic compressor | Mechanical engineering | #piping #equipment #mechanicalengineering
Dynamic Compressor – Description:
A dynamic compressor is a type of compressor that increases the pressure of a gas by imparting velocity (kinetic energy) to it and then converting that velocity into pressure energy through diffusion. Unlike positive displacement compressors, which trap and reduce the volume of gas, dynamic compressors rely on high-speed rotating elements to accelerate the gas.
Key Characteristics:
Working Principle: Based on dynamic action – gas is accelerated by a rotating impeller or blade and then decelerated in a diffuser to increase pressure.
Main Types:
Centrifugal compressors – use a rotating impeller to add velocity to the gas radially outward.
Axial compressors – compress gas by passing it through a series of rotating and stationary blades in a straight path.
High Flow Rates: Suitable for large volume flow with relatively steady pressure.
Continuous Operation: Provides smooth and continuous gas flow.
Common Applications: Gas turbines, petrochemical plants, HVAC systems, and turbochargers.
Advantages:
High efficiency at design conditions.
Compact and lightweight.
Fewer moving parts compared to positive displacement compressors.
Limitations:
Sensitive to changes in operating conditions (e.g., surge, choke).
Less efficient at part-load operations.
Requires complex control systems for stable operation.
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Industrial engineering course
1. Thermodynamics
2. Fluid mechanics
3. Heat transfer
4. Strength of materials
5. Machine design
6. Kinematics
7. Dynamics
8. Engineering drawing
9. CAD modeling
10. Manufacturing process
11. CNC machining
12. Materials science
13. Engineering mechanics
14. Stress analysis
15. Vibration analysis
16. Mechanical systems
17. Thermal engineering
18. Finite element analysis
19. Statics
20. Mechanics of solids
21. Robotics
22. Mechatronics
23. Engineering mathematics
24. Mechanical design
25. Maintenance engineering
26. Piping design
27. ASME B31.3
28. Pipe stress analysis
29. Isometric drawing
30. P&ID
31. Pipe supports
32. Valves
33. Fittings
34. Flanges
35. Pipe routing
36. Piping layout
37. Expansion loops
38. Pipe material specification
39. Pipe welding
40. Piping class
41. Line list
42. Pipe thickness calculation
43. Hydraulic calculations
44. Plot plan
45. 3D modeling
46. SP3D
47. PDMS
48. CAESAR II
49. Piping codes
50. ANSI standards
51. Gasket types
52. Piping fabrication
53. Pipe spool
54. Insulation
55. Corrosion protection
56. Pipe erection
57. Skid design
58. Isometric extraction
59. Pipe rack design
60. MTO (Material Take-Off)
61. Centrifugal pump
62. Reciprocating compressor
63. Rotary compressor
64. Blower
65. Gearbox
66. Motor
67. Turbine
68. Steam turbine
69. Gas turbine
70. Mechanical seal
71. Bearing
72. Coupling
73. Alignment
74. Pump curve
75. Compressor map
76. Impeller
77. Rotor dynamics
78. Shaft alignment
79. Lubrication system
80. Cooling system
81. Pump installation
82. Vibration monitoring
83. Condition monitoring
84. Maintenance planning
85. Overhaul
86. Dynamic balancing
87. Performance testing
88. Surge control
89. NPSH
90. Pump head
91. Seal system API Plan
92. VFD (Variable Frequency Drive)
93. Critical speed
94. Run-out
95. Suction pressure
96. Discharge pressure
97. Cavitation
98. Pump priming
99. Pump baseplate
100. Bearing house
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part 1 link : • Piping | Pipe Fittings | piping mater...
part 3 link : • Valve | Valve Types & Applications | ...
part 4 link : • Pump | types | efficiency | #pump #pi...
part 2 link : • Flanges | type | Applications | part ...
part 5 link: • Compressor|working|reciprocating comp...

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