The SWT-3.0-101 wind turbine incorporates a rotor with a diameter of 101 m and functions utilizing a patented IntegralBlade technology. The single piece designed blades weigh 10.3 t.
The turbine incorporated in the ENERCON E-82 wind turbine is a gearless model with variable speed and variable pitch control. This wind turbine deploys a self-governing pitch system for each of the rotor blade with apportioned emergency power supply.
The L90 -2.5 MW direct drive wind turbine features a hallow main shaft to provide direct access to the hub. This feature makes the design of the hub lighter but strong enough to withstand high velocity wind loads.
The exterior shield of this wind turbine is roofed with small surface extensions to transfer the generated heat to the cool air thus avoiding the need of a separate cooling system. The rotor diameter of this wind turbine is 115 m, the length of the blade is 55 m and the generator diameter is 5.3 m.
The rotor incorporated in the S88-2.1 MW wind turbine measures 88 m in diameter, offers a swept area of 6082 m² and utilizes an electrically regulated full-span blade pitch system allowing faster and efficient pitching of blades.
The MWT 1000A wind turbine incorporates a three stage (1 planetary and 2 parallel) gear box with a gear ratio of 1:92/1:76 at 60 Hz and 50 Hz.
The nacelle of this N90 2.5 wind turbine is provided out with a two-stage planetary gearbox with one spur-gear stage or differential gear box.
Siemens can supply the SWT-3.6-107 model wind turbine which is suitable for offshore and onshore applications. The rotor of this wind turbine incorporates a cantilevered construction upwind type three blade rotor measuring 107 m with a swept area of 9,000 m².
Energy utility Puget Sound Energy has commenced the first phase of construction on its Lower Snake River Wind Project located in Garfield County, Washington.
Research and Markets has announced the addition of Frost & Sullivan's new report "Global Outlook for Electric Drives in the Wind Power Industry" to their offering.
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