Brief: This short presentation tells the story behind the design and its intended use cases. You'll see how the Turgo Turbine operates in high head, low flow conditions, with a detailed walkthrough of water flow from reservoir to power generation. The video demonstrates the turbine's inclined-jet mechanism, various shaft configurations, and precision engineering that enables 90%-95% efficiency for small hydropower stations.
Related Product Features:
Engineered for high head applications ranging from 20-300 meters with power output from 50kW to 20MW.
Features both vertical and horizontal shaft configurations with multiple speed regulation options including automatic, manual, and electric.
Inclined runner blade axis design creates angled water flow toward the unit axis for optimal energy transfer.
Precision-welded runner chamber constructed from die-forged stainless steel plates with finished inner surfaces.
45° inclined guide water mechanism with 24 guide blades featuring double-supported structure and symmetrical airfoils.
Welded inclined volute connects to cast-welded seat ring with twelve struts inclined at 35° to horizontal.
Delivers high efficiency conversion of water flow kinetic energy to mechanical energy for electricity generation.
Offers excellent adaptability with flexible installation locations and scalable equipment sizing for diverse regional requirements.
FAQs:
What water head range is the Turgo Turbine designed for?
The Turgo Turbine is specifically engineered for high head applications ranging from 20 to 300 meters, making it ideal for power stations operating with high head and low flow conditions.
What efficiency levels can be expected from this Francis Hydro Turbine?
This high efficiency turbine delivers 90%-95% efficiency in converting water flow kinetic energy into mechanical energy for electricity generation, ensuring long-term economic returns and high profitability.
What configuration options are available for the Turgo Turbine?
The turbine is available in both vertical and horizontal shaft configurations, featuring bearing shell structures with automatic, manual, and electric speed regulation options to suit various installation requirements.
How does the inclined jet design benefit turbine performance?
The inclined runner blade axis creates water flow that angles toward the unit axis, while the inclined volute and seat ring design creates a straight flow path to the draft tube, enhancing turbine efficiency while reducing the unit's overall footprint.