Kaplan Turbine Pit Install Power Solution

Kaplan Hydro Turbine
December 30, 2025
Brief: This video demonstrates the setup, operation, and key moments during typical use of the Pit Installation Type Kaplan Hydro Turbine. You'll see how this stainless steel turbine with 0Cr13Ni14Mo blades efficiently converts water flow into renewable electricity, showcasing its installation process and operational capabilities for 2-50MW power generation.
Related Product Features:
  • Features high-quality stainless steel 0Cr13Ni14Mo blades for superior corrosion resistance and durability.
  • Offers flexible installation options including Bulb, Pit, or Tube Type configurations.
  • Vertical water inlet design ensures efficient water flow for optimal energy conversion.
  • Water-cooled cooling system maintains optimal operational temperatures and enhances lifespan.
  • Generator voltage of 6300V makes it suitable for various hydro power applications.
  • Robust runner design with 0.7-meter diameter efficiently converts kinetic energy to mechanical power.
  • Carbon steel hub construction provides strong support structure for blades under mechanical stress.
  • Rated power capacity from 2 MW to 50 MW adapts to various hydroelectric project scales.
FAQs:
  • What installation types are available for the Kaplan Hydro Turbine?
    The Kaplan Hydro Turbine offers flexible installation options including Bulb, Pit, or Tube Type configurations, making it adaptable to various site conditions and project requirements.
  • What materials are used in the turbine construction and why?
    The blades are made from high-quality stainless steel 0Cr13Ni14Mo for excellent corrosion resistance and durability, while the hub is constructed from carbon steel for strength and resilience against mechanical stresses.
  • What is the power capacity range and typical delivery time for this turbine?
    The Kaplan Hydro Turbine has a rated power capacity ranging from 2 MW to 50 MW, with a typical delivery time of approximately 6 months after order confirmation.
  • What cooling method does the turbine use and why is it beneficial?
    The turbine employs a water-cooled cooling system that effectively dissipates heat during operation, preventing overheating and ensuring stable performance under continuous load conditions.
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