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Achieve efficient irrigation with minimal maintenance requirements — the Casella 40 T - 50 T turbine drive hard hose irrigator utilizes water-powered rewinding technology for reliable operation across medium to large-scale applications. Engineered by Italy-based Casella, this system combines a high-efficiency gearbox with fully adjustable rewinding speeds up to 40 m/h (131 ft/h), eliminating the need for external power sources while delivering consistent performance across pressures from 3.5 to 8 Bar (51-116 PSI).
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The Casella 40 T - 50 T is a turbine-driven hard hose reel irrigator manufactured in Italy, designed to deliver efficient and reliable irrigation across medium to large-scale agricultural operations. This hard hose reel system utilises water flow through a turbine mechanism to power the hose rewinding process, eliminating the need for external power sources or hydraulic engines. The model designation indicates its capacity range, accommodating hose configurations from 40 mm diameter with up to 130 metres of hose, to 50 mm diameter with up to 170 metres, making it suitable for diverse field layouts and irrigation requirements.
What distinguishes the 40 T - 50 T within the Turbine Drive Hard Hose Irrigators category is its high-efficiency turbine and gearbox system that converts water pressure directly into mechanical rewinding power. Operating effectively with a minimum pressure of 3.5 Bar and maximum of 8 Bar, this system offers fully adjustable rewinding speeds from 0 to 40 metres per hour, providing precise control over irrigation application rates without consuming external energy. The compact chassis design features optimum weight distribution across the wheel assembly, while the integrated hoseguide ensures perfect hose rewinding alignment throughout operation, reducing wear and extending hose lifespan.
The Casella 40 T - 50 T employs a water-powered turbine drive system that harnesses irrigation water flow to generate mechanical power for hose rewinding. As pressurised water passes through the turbine assembly, it rotates precision-engineered blades that transmit torque through a high-efficiency gearbox to the hose reel drum. This direct conversion of hydraulic energy to mechanical rotation eliminates the need for electric motors, diesel engines, or PTO connections, providing completely energy-independent operation. The system maintains consistent rewinding speed and torque across the entire operating pressure range of 3.5 to 8 Bar, ensuring uniform irrigation application regardless of variations in water source pressure or hose length remaining on the reel.
Operational advantages of the turbine drive configuration include zero fuel consumption, minimal noise generation during operation, and significantly reduced maintenance requirements compared to engine-powered alternatives. The fully adjustable rewinding speed control allows operators to precisely match travel speed to crop water requirements and soil infiltration rates, optimising irrigation efficiency while preventing water waste through runoff. The automatic stop mechanism engages when the travelling trolley reaches the reel, eliminating the need for constant operator supervision and preventing hose over-rewinding. The compact chassis design with optimised weight distribution enhances field manoeuvrability while reducing soil compaction, and the integrated hoseguide ensures proper hose layering throughout rewinding cycles to extend hose service life and maintain consistent performance over multiple seasons.
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Reference: Washington State University