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Difference Between Pelton, Francis and Kaplan Turbines

Difference Between Pelton, Francis and Kaplan Turbines

Difference Between Pelton, Francis and Kaplan Turbines

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The Pelton, Francis and Kaplan turbines are water turbines that are rotary machines which convert kinetic energy and the potential energy of the water into mechanical energy that rotates the shaft to produce electric energy.

Pelton turbine was developed by Lester Allan Pelton in the year 1870. A Kaplan turbine is a water turbine that was developed by Austrian Professor Viktor Kaplan in 1913 and Francis turbine was developed by James .B. Francis.

The basic difference between Pelton, Francis and Kaplan Turbines is explained in this article.

Sl. NoCriteriaPelton TurbineFrancis TurbineKaplan Turbine
1TypePelton turbine is an impulse type water turbineFrancis Turbine is an inward flow reaction turbine.Kaplan turbine is a propeller type reaction turbine.
2HeadIt is used for high heads ranging from 250 to 1000mThe operating water head of a Francis turbine ranges from 40 to 600m.It is used for low heads ranging from 10 to 70 metres
3RunnerThe diameter of the runner varies from 0.8 to 0.6mThe diameter of the runner varies between 0.91 to 10.6The diameter of the runner varies between 2 to 11 metres
4Direction of Flow of Water Through the BladesThe flow of water is tangential to the runner. Hence it is also called as tangential flow impulse turbinesThe flow of water through the blades combines both radial and axial flow.The flow of water is axial through the blades.
5Power GenerationPower generated is about 400MWThe power generated by a Francis turbine is about 800MWThe output power obtained varies from 5 to 200 MW
6SpeedThe rate of speed in a Pelton turbine changes from 65 to 800rpmThe speed of the turbine ranges from 75 to 1000rpmThe rotational speed varies from 69.2 to 429 rpm.
7Discharge RequiredThe required discharge for the working of a Pelton turbine is low.Medium discharge is required for the working of the Francis turbine.A Kaplan turbine requires high discharge for efficient working.
8Type of EnergyThe Pelton turbines uses kinetic energy and converts into mechanical energyThe Francis turbine converts potential energy into mechanical energyThe Kaplan Turbine uses both kinetic and potential energy, which then is converted into mechanical energy.
9EfficiencyThe efficiency of a Pelton turbine is about 85%The efficiency of a Francis turbine is about 90%.The Kaplan turbine gives higher efficiency about 90%

Table 1. Difference between Pelton, Kaplan and Francis Turbines

Features of Pelton, Kaplan and Francis Turbine

Features of Pelton Turbines

Also Read: Pelton Turbine - Components and Working Principle

Features of Kaplan Turbines

The important applications of Kaplan Turbines are:

  1. Electrical Power Production throughout the World.
  2. Suitable for lowest head hydro sites and high flow conditions.
  3. Kaplan turbines can work with as little as 0.3m head at a highly reduced performance given that sufficient flow exists.
  4. The design, manufacture, and installation is expensive but can operate for decades.
  5. Kaplan turbines designed individually for a site can give the highest possible efficiency of around 90%.

Also Read: Kaplan Turbines - Components and Working Principle

Features of Francis Turbines

Also Read: Francis Turbines - Components and Working Principle

Also Read: Factors Affecting the Selection of Hydraulic Machines

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