Brief: Watch this overview to discover why many professionals pay attention to this approach. In this video, we demonstrate the Francis Hydro Turbine's operation across a 375-1000 RPM speed range, showcasing its vertical/horizontal shaft configurations and dual bearing system. You'll see how this hydro power generator efficiently converts water energy into electricity for projects ranging from a few kW to several hundred MW.
Related Product Features:
Operates across a wide speed range from 375 to 1000 RPM for flexible power generation.
Features both vertical and horizontal shaft configurations to suit various installation requirements.
Equipped with two high-quality bearings for enhanced durability and stable operation.
Designed for automatic, unattended operation with an efficient control system.
Offers power output ranging from a few kilowatts to several hundred megawatts.
Features a vertical layout pattern for compact installation and optimized flow dynamics.
Suitable for various hydro power applications including Francis, Pelton, Turgo, and Kaplan turbine types.
Provides reliable energy conversion with low to moderate maintenance requirements.
FAQs:
What is the power output range of the Francis Hydro Turbine?
The Francis Hydro Turbine offers a versatile power output range from a few kilowatts to several hundred megawatts, making it suitable for both small-scale installations and large hydro power plants.
What shaft configurations are available for installation?
This turbine can be configured with either vertical or horizontal shaft types, allowing for customized installation based on specific site requirements and space constraints.
How does the bearing system contribute to turbine performance?
The turbine features two high-quality bearings that minimize friction and wear, maintaining shaft alignment and balance for smooth operation, reduced downtime, and extended equipment longevity.
What maintenance requirements does this hydro turbine have?
The Francis Hydro Turbine requires low to moderate maintenance depending on the specific design, which helps reduce operational costs and ensures reliable long-term performance.