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A radial turbine is a turbine in which the flow of the working fluid is radial to the shaft. The difference between axial and radial turbines consists in the way the fluid flows through the components (compressor and turbine). Whereas for an axial turbine the rotor is 'impacted' by the fluid flow, for a radial turbine, the flow is smoothly orientated perpendicular to the rotation axis, and it drives the turbine in the same way water drives a watermill. The result is less mechanical stress (and less thermal stress, in case of hot working fluids) which enables a radial turbine to be simpler, more robust, and more efficient (in a similar power range) when compared to axial turbines. When it comes to high power ranges (above 5 MW) the radial turbine is no longer competitive (due to its heavy a

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  • Turbina radial (es)
  • ラジアルタービン (ja)
  • Radial turbine (en)
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  • Una turbina radial es una turbomáquina en la que el flujo del fluido de trabajo es radial al eje de rotación. La diferencia entre turbinas axiales y radiales consiste en la forma en que el fluido fluye a través de los componentes (compresor y turbina). Mientras que para una turbina axial, el rotor es 'impactado' por el flujo de fluido, para una turbina radial, el flujo está orientado suavemente perpendicular al eje de rotación, y acciona la turbina de la misma manera que el agua impulsa un molino de agua. (es)
  • ラジアルタービン(英語:Radial turbine)は、タービンの一形式。 (ja)
  • A radial turbine is a turbine in which the flow of the working fluid is radial to the shaft. The difference between axial and radial turbines consists in the way the fluid flows through the components (compressor and turbine). Whereas for an axial turbine the rotor is 'impacted' by the fluid flow, for a radial turbine, the flow is smoothly orientated perpendicular to the rotation axis, and it drives the turbine in the same way water drives a watermill. The result is less mechanical stress (and less thermal stress, in case of hot working fluids) which enables a radial turbine to be simpler, more robust, and more efficient (in a similar power range) when compared to axial turbines. When it comes to high power ranges (above 5 MW) the radial turbine is no longer competitive (due to its heavy a (en)
foaf:depiction
  • http://commons.wikimedia.org/wiki/Special:FilePath/Enthalpy-entropy_diagram_for_flow_through_an_IFR_turbine_stage.jpg
  • http://commons.wikimedia.org/wiki/Special:FilePath/Losses_in_the_rotor_of_an_IFR_turbine_stage.jpg
  • http://commons.wikimedia.org/wiki/Special:FilePath/Ninety_degree_inward-flow_radial_turbine_stage.jpg
  • http://commons.wikimedia.org/wiki/Special:FilePath/Radial_turbine.jpg
  • http://commons.wikimedia.org/wiki/Special:FilePath/Variation_of_stage_efficiency_of_an_IFR_turbine_with_blade-to-isentropic_gas_speed_ratio.jpg
  • http://commons.wikimedia.org/wiki/Special:FilePath/Variation_of_the_degree_of_reaction_with_flow_coefficient_and_air_angle_at_rotor_entry.jpg
  • http://commons.wikimedia.org/wiki/Special:FilePath/Velocity_triangles_for_an_inward-flow_radial_(IFR)_turbine_stage_with_cantilever_blades.jpg
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  • Una turbina radial es una turbomáquina en la que el flujo del fluido de trabajo es radial al eje de rotación. La diferencia entre turbinas axiales y radiales consiste en la forma en que el fluido fluye a través de los componentes (compresor y turbina). Mientras que para una turbina axial, el rotor es 'impactado' por el flujo de fluido, para una turbina radial, el flujo está orientado suavemente perpendicular al eje de rotación, y acciona la turbina de la misma manera que el agua impulsa un molino de agua. (es)
  • A radial turbine is a turbine in which the flow of the working fluid is radial to the shaft. The difference between axial and radial turbines consists in the way the fluid flows through the components (compressor and turbine). Whereas for an axial turbine the rotor is 'impacted' by the fluid flow, for a radial turbine, the flow is smoothly orientated perpendicular to the rotation axis, and it drives the turbine in the same way water drives a watermill. The result is less mechanical stress (and less thermal stress, in case of hot working fluids) which enables a radial turbine to be simpler, more robust, and more efficient (in a similar power range) when compared to axial turbines. When it comes to high power ranges (above 5 MW) the radial turbine is no longer competitive (due to its heavy and expensive rotor) and the efficiency becomes similar to that of the axial turbines. (en)
  • ラジアルタービン(英語:Radial turbine)は、タービンの一形式。 (ja)
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