Brief: See the solution in real use and note how it behaves under normal conditions. This video demonstrates the 1000KW Hydro Turbine Generator in action, showcasing its efficient conversion of hydraulic energy into electrical power. You'll see how the three-blade turbine design and water cooling system work together in hydropower plants, dams, and river sites to deliver reliable, sustainable electricity generation.
Related Product Features:
Features a three-blade turbine configuration optimized for maximum energy conversion efficiency from flowing water.
Utilizes a water cooling method to maintain optimal operating temperatures and ensure stable performance.
Delivers a rated power output of 1000 KW, suitable for medium-scale hydropower projects.
Designed for horizontal layout installation in hydropower plants, dams, and river sites.
Converts hydraulic energy into electrical energy through efficient electromagnetic induction.
Provides AC output type for integration with standard power grid systems.
Engineered for reliable operation under diverse water flow conditions and environmental settings.
Built with brushless excitation system for enhanced durability and reduced maintenance needs.
FAQs:
What is the rated power output of this hydro turbine generator?
The hydro turbine generator has a rated power output of 1000 KW, making it suitable for medium-scale hydropower projects and capable of meeting various industrial, commercial, and residential energy demands.
What cooling method is used in this hydro turbine generator?
It employs a water cooling system that effectively dissipates heat generated during energy conversion, ensuring prolonged equipment lifespan and stable performance even under continuous heavy-duty operation.
Where can this hydro turbine generator be installed?
This generator is designed for installation in hydropower plants, dams, and river sites, where it can efficiently harness the energy from flowing or stored water to generate electricity.
How many blades does the turbine have and why?
The turbine features three blades that are meticulously engineered to maximize kinetic energy conversion efficiency while reducing vibrations and mechanical stress, resulting in enhanced durability and lower maintenance requirements.