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Fluid Machinery

SKU: B00KNP4KBC (Updated 2022-02-21)
Price: US$ 0.00
 
 
Description

 
Features & details

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


Manufacturer: Ashish Kumar


Brand: Ashish Kumar
 
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