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Pelton turbine
 It was invented by Lester Allan Pelton in the 1870s.
 The Pelton wheel extracts energy from the impulse of
moving water,as
opposed to water's
dead weight
Francis turbine
 The Francis turbine was developed by James B.
Francis in 1849
Kaplan turbine
 The Kaplan turbine is a propeller-type water
turbine which has adjustable blades. It was developed
in 1913 by the Austrian professor Viktor Kaplan
Difference between Pelton ,Francis
and Kaplan Turbine
 Type of turbine
 Disposition of shafts
 Number of vanes
 Head
 Flow rate
 Specific speed
 Efficiency
 Power output
Type of turbine
 Pelton wheel is an impulse type turbine while Francis
and Kaplan are inward flow reaction turbine
 In Kaplan turbine, the water flow is axial and in
Francis turbine it is radial.
Disposition of shafts
Number of vanes
 The runner blades in the Kaplan turbine is less in
number.
 Kaplan turbine has 3-8 vanes while Francis turbine has
16-24 vanes while the vanes for Pelton turbine are
generally greater than 15.
Head
 Pelton wheel > Francis Turbine > Kaplan turbine
 Pelton wheel requires a very high head as it is an
impulse turbine .kaplan turbine can operate at very
low heads of 2m
 Typical operating speeds
 Kaplan turbine 20 < H < 40
• Francis turbine 40 < H < 600
[6
• Pelton wheel 50 < H < 1300
Flow rate
 Pelton wheel < Francis Turbine < Kaplan turbine
Specific speed
 The specific speed is the speed with which the turbine
turns for a particular discharge Q, with unit head and
thereby is able to produce unit power.
 Specific speed of Kaplan turbine is 2 to 3 times that of
Fancis turbine.
Efficiency
 Efficiency of Kaplan hydro power turbine is higher
Power output
 Maximum Power is obtained by Francis turbine
followed by pelton wheel followed by Kaplan turbine.
Pelton wheel Francis turbine Kaplan turbine
Type of turbine Impulse turbine Inward Flow
reaction turbine
Partial Axial Flow
Disposition of
shafts
horizontal Vertical or
horizontal
Only vertical
Number of vanes >15 16-24 3-8
Head High(20-2000 m) Medium(10-700
m)
Low(0-30)
Flow rate Low(4-15 m³/s) Medium(4-55
m³/s)
very large(1-350
m³/s)
Specific speed 10-40 50-250 250-850
Maximum
Efficiency
90% 92% in laboratory 95%
Power output 200 MW 750 MW 120 MW
Type of runner
vanes
Fixed double
cupped
Non adjustible adjustible
Thank you

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Fluid machines turbines

  • 1.
  • 2. Pelton turbine  It was invented by Lester Allan Pelton in the 1870s.  The Pelton wheel extracts energy from the impulse of moving water,as opposed to water's dead weight
  • 3. Francis turbine  The Francis turbine was developed by James B. Francis in 1849
  • 4. Kaplan turbine  The Kaplan turbine is a propeller-type water turbine which has adjustable blades. It was developed in 1913 by the Austrian professor Viktor Kaplan
  • 5. Difference between Pelton ,Francis and Kaplan Turbine  Type of turbine  Disposition of shafts  Number of vanes  Head  Flow rate  Specific speed  Efficiency  Power output
  • 6. Type of turbine  Pelton wheel is an impulse type turbine while Francis and Kaplan are inward flow reaction turbine  In Kaplan turbine, the water flow is axial and in Francis turbine it is radial.
  • 8. Number of vanes  The runner blades in the Kaplan turbine is less in number.  Kaplan turbine has 3-8 vanes while Francis turbine has 16-24 vanes while the vanes for Pelton turbine are generally greater than 15.
  • 9. Head  Pelton wheel > Francis Turbine > Kaplan turbine  Pelton wheel requires a very high head as it is an impulse turbine .kaplan turbine can operate at very low heads of 2m  Typical operating speeds  Kaplan turbine 20 < H < 40 • Francis turbine 40 < H < 600 [6 • Pelton wheel 50 < H < 1300
  • 10. Flow rate  Pelton wheel < Francis Turbine < Kaplan turbine
  • 11. Specific speed  The specific speed is the speed with which the turbine turns for a particular discharge Q, with unit head and thereby is able to produce unit power.  Specific speed of Kaplan turbine is 2 to 3 times that of Fancis turbine.
  • 12. Efficiency  Efficiency of Kaplan hydro power turbine is higher
  • 13. Power output  Maximum Power is obtained by Francis turbine followed by pelton wheel followed by Kaplan turbine.
  • 14. Pelton wheel Francis turbine Kaplan turbine Type of turbine Impulse turbine Inward Flow reaction turbine Partial Axial Flow Disposition of shafts horizontal Vertical or horizontal Only vertical Number of vanes >15 16-24 3-8 Head High(20-2000 m) Medium(10-700 m) Low(0-30) Flow rate Low(4-15 m³/s) Medium(4-55 m³/s) very large(1-350 m³/s) Specific speed 10-40 50-250 250-850 Maximum Efficiency 90% 92% in laboratory 95% Power output 200 MW 750 MW 120 MW Type of runner vanes Fixed double cupped Non adjustible adjustible