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  2. Evolution from Francis turbine to Kaplan turbine - Wikipedia

    en.wikipedia.org/wiki/Evolution_from_Francis...

    A Kaplan turbine has fewer runner blades than a Francis turbine because a Kaplan turbine's blades are twisted and cover a larger circumference. Friction losses in a Kaplan turbine are less. The shaft of a Francis turbine is usually vertical (in many of the early machines it was horizontal), whereas in a Kaplan turbine it is always vertical.

  3. Francis turbine - Wikipedia

    en.wikipedia.org/wiki/Francis_turbine

    Francis inlet scroll at the Grand Coulee Dam Side-view cutaway of a vertical Francis turbine. Here water enters horizontally in a spiral-shaped pipe (spiral case) wrapped around the outside of the turbine's rotating runner and exits vertically down through the center of the turbine. The Francis turbine is a type of water turbine.

  4. Kaplan turbine - Wikipedia

    en.wikipedia.org/wiki/Kaplan_turbine

    The Kaplan turbine was an evolution of the Francis turbine. Its invention allowed efficient power production in low-head applications which was not possible with Francis turbines. [2] The head ranges from 10 to 70 metres (33 to 230 ft) and the output ranges from 5 to 200 MW. Runner diameters are between 2 and 11 metres (6 ft 7 in and 36 ft 1 in).

  5. Rainpower - Wikipedia

    en.wikipedia.org/wiki/Rainpower

    Rainpower AS is a Norwegian company which develops, designs, manufactures and sells equipment for hydropower electricity generation. The company provides Pelton, Francis, and Kaplan turbines, as well as pump turbines, small hydropower plants, turbine governor, oil pressure systems, valve controllers, exciters, valves, gates, pipes, and other products and services related to the hydropower ...

  6. Specific speed - Wikipedia

    en.wikipedia.org/wiki/Specific_speed

    Well-designed efficient machines typically use the following values: Impulse turbines have the lowest n s values, typically ranging from 1 to 10, a Pelton wheel is typically around 4, Francis turbines fall in the range of 10 to 100, while Kaplan turbines are at least 100 or more, all in imperial units. [7]

  7. James B. Francis - Wikipedia

    en.wikipedia.org/wiki/James_B._Francis

    The two engineers worked on improving the turbine. And in 1848, Francis and Boyden successfully improved the turbine with what is now known as the Francis turbine. Francis's turbine eclipsed the Boyden turbine in power by 90%. In 1855, Francis published these findings in the "Lowell Hydraulic Experiments". [8]

  8. Category:Turbomachinery - Wikipedia

    en.wikipedia.org/wiki/Category:Turbomachinery

    Turbomachinery describes machines that transfer energy between a rotor ... Turbines (6 C, 27 P) ... Evolution from Francis turbine to Kaplan turbine; F. Fan (machine) G.

  9. Viktor Kaplan - Wikipedia

    en.wikipedia.org/wiki/Viktor_Kaplan

    This turbine was used until 1955 and today is exhibited at the Technisches Museum Wien. After the success of the first Kaplan turbines they started being used worldwide and remain one of the most widely used kinds of water turbines. In 1926 and 1934 Kaplan received honorary doctorates. He died of a stroke in 1934 at Unterach am Attersee, Austria.