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300W Q Type Wind Turbine
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300W Q Type Wind Turbine

300W Q Type Wind Turbine

Minimal running vibration; small volume; lovely shape; low beginning wind speed; wind energy use.
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product-721-619

product-750-378

product-729-594

 

Feature
  • Minimal running vibration, compact size, attractive design, low initial wind speed requirements, and efficient wind energy utilization.
  • Equipment installation, maintenance, and overhaul are made simple through human-centered design.
  • The rotor's power-producing capability is enhanced by utilizing aluminum alloy, optimized for both aerodynamic shape and structural design.
  • The generator employs patented permanent magnet rotor AC technology, with a stator featuring a unique design that reduces resistance torque while enhancing machine characteristics and operational reliability.

product-800-800

Characteristics Of The Generation Curve:

The characteristics of the generation curve include a lower initial wind speed requirement compared to other types of wind turbines, with a relatively gradual increase in power output.

As a result, its power output is 10% to 30% higher than that of other types of wind turbines in the wind speed range of 5 to 8 m/s.

 

Off-grid Connection:

product-950-488

 

On-grid Connection:

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The application of wind turbine

Modern wind turbines can be classified based on their location and how they are connected to the grid:

 

Land-based Wind:

Land-based wind turbines range in size from 100 kilowatts to several megawatts. Larger wind turbines are more cost-effective and are often grouped into multiple wind farms, providing significant power to the grid.

 

Offshore Wind:

Offshore wind turbines are often bulky and taller than the Statue of Liberty. They do not face the transportation challenges of onshore installations since large components can be transported by ship rather than by road. These turbines harness strong sea breezes, yielding substantial energy output.

 

Distributed Wind:

When wind turbines of any size are installed on the "customer" side of the meter or in proximity to where the energy they generate will be used, they are referred to as "distributed wind." Many of the generators used in distributed applications are small wind turbines. Individual small wind turbines, typically less than 100 kW, are commonly deployed for residential, agricultural, and small commercial and industrial purposes. These small generators can also be integrated into hybrid energy systems alongside other distributed energy sources such as microgrids powered by diesel generators, batteries, and photovoltaics. Such systems, known as mixed-wind systems, are frequently employed in remote off-grid locations and are increasingly utilized in grid-connected applications to enhance resilience.

product-1000-750

product-720-269

 

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