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Features
- This unique free application is for all students across the world. It covers 125 topics of Fluid Machinery in detail. These 125 topics are divided in 5 units.
- Each topic is around 600 words and is complete with diagrams, equations and other forms of graphical representations along with simple text explaining the concept in detail.
- This USP of this application is "ultra-portability". Students can access the content on-the-go from anywhere they like.
- Basically, each topic is like a detailed flash card and will make the lives of students simpler and easier.
- Some of topics Covered in this application are:
- 1. Energy Equation
- 2. General Introduction
- 3. Momentum Transfer Principles
- 4. Euler Theory (Elementary)
- 5. Modern Theory of Turbomachines
- 6. Necessity for flow unsteadiness
- 7. Approximate calculation of deviation after Stodola
- 8. Some Practical Considerations (Actual Machine Design)
- 9. Coefficients and Efficiencies
- 10. Dimensional Analysis
- 11. Application of Dimensional Analysis on Turbomachines
- 12. Performance Curves
- 13. Reynolds Number Effect
- 14. Specific Speed
- 15. Hydraulic Turbines
- 16. Cascade Nomenclature
- 17. Lift and Drag
- 18. Cascades in Motion
- 19. Cascade Performance
- 20. Mach Number Effect
- 21. Ideal Characteristics
- 22. The Head-Capacity Curve of a Straight Cascade:
- 23. Radial Cascade
- 24. Singularity Method
- 25. Method of Solution for Single Airfoil
- 26. Conformal Transformation Method
- 27. Centrifugal Pumps (Radial)
- 28. Centrifugal Pump Actual Performance
- 29. Brake Horsepower and Efficiency Curves
- 30. Influence of Physical Properties on Performance
- 31. Leakage Calculation
- 32. Mechanical Seals
- 33. Axial Thrust
- 34. Impeller Design
- 35. Centrifugal Pump Types
- 36. Axial Pumps (Propeller Pumps)
- 37. Study of Flow Inside the Rotor (Radial Equilibrium)
- 38. Performance of Axial Flow Propeller Pumps
- 39. Pump Selection and Applications
- 40. Design of the Intake Chamber of Vertical Pumps
- 41. Pressure Surges (Water Hammer) in Piping Systems
- 42. Pump Installation
- 43. Impulse Turbines (Pelton Wheel)
- 44. Reaction Turbines
- 45. Head Delivered by Turbine and Draft Tube
- 46. Types of Draft Tube
- 47. Some Turbines Installations
- 48. Fluid Coupling
- 49. Equation of state
- 50. Laws of Thermodynamics
- 51. Compression of Gases
- 52. Plane Compressible Flow
- 53. Gothert's Rule
- 54. Fans
- 55. Head and Power
- 56. Coefficients and Specific Speed
- 57. Radial Type Impeller Design
- 58. Reciprocating Pumps
- 59. Instantaneous Rate of Flow
- 60. Rotary Pumps
- 61. Performance of Positive Pumps
- 62. INTRODUCTION OF PRESSURE RECOVERY DEVICES
- 63. Diffuser Types
- 64. Vaned Diffuser
- 65. Volute Type Diffuser
- 66. INTRODUCTION OF THEORY OF CAVITATION IN CENTRIFUGAL PUMPS
- 67. INCEPTION OF CAVITATION
- 68. SIGNS OF CAVITATION
- 69. MECHANISMS OF DAMAGE
- 70. THERMODYNAMIC EFFECTS ON PUMP CAVITATION
- 71. NET POSITIVE SUCTION HEAD
- 72. THOMA'S CAVITATION CONSTANT
- 73. SUCTION SPECIFIC SPEED
- 74. SOME DISCUSSIONS CONCERNING THE NPSH
- 75. CAVITATION NOISE IN CENTRIFUGAL PUMPS
- 76. Frequency behavior of cavitation noise
- 77. Estimation of erosion risk basing on fluid-borne noise
- 78. Relative erosion intensity
- 79. HOW TO PREVENT CAVITATION
- 80. Steam Turbine Power Plant
- 81. Combined Cycle Power Plants
- 82. Underground Power Station
- 83. Classification of Fluid Machines
- 84. Pumps (Axial and Radial)
- 85. Compressors (Axial and Radial)
- 86. Turbines
- 87. Euler's Theory Applied to Turbo Machines
- 88. Euler's Head & Euler's Equation in the Kinetic Form
- 89. Description of Pelton Turbine Installation
- 90. Analysis
- 91. Working Proportions for Design of Pelton Wheel
- 92. Regulation of Pelton Wheel
- 93. Regulating System of Pelton Wheel Power Station
- 94. Description of Francis Turbine
- 95. Draft Tube
- 96. Working Proportions of Francis Turbine
- 97. Specific Speed of Hydraulic Turbines
- 98. Regulation of Francis Turbine
- 99. Centrifugal Pump
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