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    • 2. 发明授权
    • Floating underwater support structure
    • 浮动水下支撑结构
    • US08197208B2
    • 2012-06-12
    • US12968614
    • 2010-12-15
    • William G. SharplesChristopher H. Tracy
    • William G. SharplesChristopher H. Tracy
    • B63H1/38
    • F03D1/0608F05B2220/7066F05B2240/2213H02K7/088H02K7/1838H02K2213/12Y02E10/721Y02E10/725
    • A floating underwater support structure is disclosed. The underwater support structure includes a joint capable of rotation and angular movement along two or three axes coupled to a truss. The truss is capable of sustaining loads in tension, compression, and bending, and comprises one or more elongate, rigid members. The elongate, rigid members are capable of sustaining loads in at least tension and compression. A buoyant member positioned between or around the members of the truss at a predetermined distance below the water provides a buoyant force that typically exceeds the weight of the entire structure. In deeper water, cross bracing may be provided between the members of the truss, and in particularly deep water, a single tendon may connect between the joint, typically anchored to the floor of the body of water, and the truss. The support structure may be used to support wind turbines and other structures.
    • 公开了一种浮动水下支撑结构。 水下支撑结构包括能够沿着联接到桁架的两个或三个轴线旋转和角运动的关节。 桁架能够承受张力,压缩和弯曲的载荷,并且包括一个或多个细长的刚性构件。 细长的刚性构件能够承受至少张力和压缩的载荷。 定位在桁架构件之间或周围的预定距离处的预定距离处的浮力构件提供通常超过整个结构的重量的浮力。 在较深的水中,可以在桁架的构件之间提供交叉支撑,并且在特别深的水中,单个腱可以连接在通常锚定在水体的地板上的接头和桁架之间。 支撑结构可用于支撑风力涡轮机和其他结构。
    • 3. 发明申请
    • Floating Underwater Support Structure
    • 浮动水下支撑结构
    • US20110142683A1
    • 2011-06-16
    • US12968614
    • 2010-12-15
    • William G. SharplesChristopher H. Tracy
    • William G. SharplesChristopher H. Tracy
    • F04D29/00E02D5/54
    • F03D1/0608F05B2220/7066F05B2240/2213H02K7/088H02K7/1838H02K2213/12Y02E10/721Y02E10/725
    • A floating underwater support structure is disclosed. The underwater support structure includes a joint capable of rotation and angular movement along two or three axes coupled to a truss. The truss is capable of sustaining loads in tension, compression, and bending, and comprises one or more elongate, rigid members. The elongate, rigid members are capable of sustaining loads in at least tension and compression. A buoyant member positioned between or around the members of the truss at a predetermined distance below the water provides a buoyant force that typically exceeds the weight of the entire structure. In deeper water, cross bracing may be provided between the members of the truss, and in particularly deep water, a single tendon may connect between the joint, typically anchored to the floor of the body of water, and the truss. The support structure may be used to support wind turbines and other structures.
    • 公开了一种浮动水下支撑结构。 水下支撑结构包括能够沿着联接到桁架的两个或三个轴线旋转和角运动的关节。 桁架能够承受张力,压缩和弯曲的载荷,并且包括一个或多个细长的刚性构件。 细长的刚性构件能够承受至少张力和压缩的载荷。 定位在桁架构件之间或围绕桁架构件的预定距离处的浮力构件提供通常超过整个结构的重量的浮力。 在较深的水中,可以在桁架的构件之间提供交叉支撑,并且在特别深的水中,单个腱可以连接在通常锚定在水体的地板上的接头和桁架之间。 支撑结构可用于支撑风力涡轮机和其他结构。