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    • 4. 发明申请
    • WIND TURBINE ROTOR BLADE
    • 风力涡轮机叶片
    • US20140186189A1
    • 2014-07-03
    • US14088348
    • 2013-11-23
    • Jason Stege
    • Jason Stege
    • F03D1/06B29D99/00
    • F03D1/0675B29D99/0025F05B2230/23F05B2230/60F05B2240/302F05B2240/57Y02E10/721Y02P70/523
    • A wind turbine rotor blade is provided. The wind turbine rotor blade includes at least two blade sections and a connector for connecting adjacent blade sections, which connector has an inner connecting part of a first blade section and an outer connecting part of a second blade section, wherein the outer connecting part is adapted to enclose the inner connecting part; and a first seal arranged about a connecting part such that an outer surface of the inner connecting part, an inner surface of the outer connecting part, and the first seal form a mould; and an adhesive layer introduced to fill the mould. A wind turbine having a number of such rotor blades as well as a method of constructing such a wind turbine rotor blade are also provided.
    • 提供了一种风力涡轮机转子叶片。 风力涡轮机转子叶片包括至少两个叶片部分和用于连接相邻叶片部分的连接器,该连接器具有第一叶片部分的内部连接部分和第二叶片部分的外部连接部分,其中外部连接部分适于 以封闭内连接部分; 以及围绕连接部分布置的第一密封件,使得内部连接部分的外表面,外部连接部分的内表面和第一密封件形成模具; 以及引入以填充模具的粘合剂层。 还提供了具有若干这种转子叶片的风力涡轮机以及构造这种风力涡轮机转子叶片的方法。
    • 5. 发明申请
    • Method to determine a site for a wind turbine
    • 确定风力发电机场址的方法
    • US20120300986A1
    • 2012-11-29
    • US13472535
    • 2012-05-16
    • Jason Stege
    • Jason Stege
    • G06K9/00
    • F03D17/00F05B2260/80
    • According to the method an unmanned aerial vehicle is guided along a predetermined flight path. The flight-path is chosen in a way that high resolution images of the surrounding of a potential wind turbine site are gathered by the unmanned aerial vehicle. The images are used to obtain an actual digital surface model of the surrounding of the potential wind turbine site. The potential wind turbine site is evaluated based on the actual digital surface model to determine, if the potential wind turbine site is an optimum wind turbine site.
    • 根据该方法,沿着预定的飞行路径引导无人驾驶飞行器。 选择飞行路径,使得潜在风力涡轮机场周围的高分辨率图像由无人驾驶飞行器收集。 图像用于获得潜在风力涡轮机场周围的实际数字表面模型。 根据实际的数字表面模型对潜在的风力发电机场进行评估,以确定潜在的风力涡轮机位置是否是最佳的风力涡轮机位置。