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    • 62. 发明申请
    • PLANETARY GEAR BOX
    • 行星齿轮箱
    • US20160033010A1
    • 2016-02-04
    • US14775182
    • 2014-03-11
    • ORBITAL 2 LIMITED
    • Vilem Rosko
    • F16H1/46F03D11/02F03D1/06
    • F16H1/46F03D1/06F03D15/00F03D15/10F03D80/85F16H1/22Y02E10/721Y02E10/722
    • A planetary gearbox (101) for a renewable energy turbine is disclosed. The gearbox comprises a planetary gearbox (101) and at least one service cable (110) extending through said planetary gearbox. For example, the service cable (110) may be for the supply of power to and/or data from a rotor of a turbine. The service cable (110) enters the gearbox (101) through a fixed planet stage (106c) of the gearbox and extends through a central shaft (130) to the stationary portion of a slip ring (120) assembly for providing, in use, a connection to a rotor of a turbine. The central shaft (130) may for example extend only partially through the gearbox. The service cable (110) may, for example, enter the output side of the gearbox at a location which is radially offset from the central axis of the gearbox.
    • 公开了一种用于可再生能源涡轮机的行星齿轮箱(101)。 齿轮箱包括行星齿轮箱(101)和延伸穿过所述行星齿轮箱的至少一个服务电缆(110)。 例如,服务电缆(110)可以用于向涡轮机的转子供应电力和/或数据。 服务电缆(110)通过齿轮箱的固定行星台(106c)进入齿轮箱(101),并通过中心轴(130)延伸到滑环(120)组件的固定部分, 与涡轮机的转子的连接。 中心轴(130)可以例如仅部分延伸穿过齿轮箱。 服务电缆(110)可以例如在从齿轮箱的中心轴线径向偏移的位置处进入齿轮箱的输出侧。
    • 63. 发明申请
    • Wind Turbine for Generating Electricity With Naval Technology
    • 风力发电与海军技术发电
    • US20160025072A1
    • 2016-01-28
    • US14773158
    • 2014-03-07
    • Marcelo MONTEIRO DE BARROS
    • Marcelo MONTEIRO DE BARROS
    • F03D11/02F03D9/00F03D1/06F03D11/00
    • F03D1/0658F03D9/11F03D9/25F03D9/257F03D15/00F03D80/60F03D80/70F03D80/88F05B2260/403Y02E10/721Y02E10/726
    • The present invention relates to a horizontal-shaft/vertical-transmission wind turbine for generating electricity, which may be on-shore or off-shore, with reduced materials and structures in the nacelle, mast and foundation, which moves much of the equipment to the base of the mast, thereby reducing capex, enabling significant reductions in the operation and maintenance costs of the turbines, and reducing the cost of the installed power (installed MW) in a wind farm. The mechanical energy coming from the rotor is transmitted by a vertical shaft system (6) along the mast, which incorporates naval technology, and which is based on platforms (1) to neutralize harmonics and is connected to H/Vst (3) and V/Hmvst (4) transmissions, coupled using contraction and expansion joints (2). In addition to this, the rotor orientation system (YAW control) (29), which is connected to the torque control of the transmissions, the brake control and the blade pitch control, enables the rotor to be properly positioned. The invention enables radio communication between masts and with a control center over an aerial interface, which increases the reliability and general safety of the system.
    • 本发明涉及一种用于发电的水平轴/垂直传动风力涡轮机,其可以是岸上或离岸的,其在机舱,桅杆和地基中的材料和结构被减少,这使得大部分设备移动到 桅杆的基座,从而减少资本支出,可显着降低涡轮机的运行和维护成本,并降低风力发电场中安装功率(安装MW)的成本。 来自转子的机械能通过垂直轴系(6)沿着桅杆传播,其结合海军技术,其基于平台(1)来中和谐波并连接到H / Vst(3)和V / Hmvst(4)传动,使用收缩和伸缩接头(2)联接。 除此之外,连接到变速器的转矩控制,制动控制和叶片桨距控制的转子定向系统(YAW控制)(29)使得转子能够被适当地定位。 本发明使天线之间的无线电通信与空中接口上的控制中心之间进行无线通信,这提高了系统的可靠性和一般安全性。
    • 66. 发明申请
    • HORIZONTALLY CHANNELED VERTICAL AXIS WIND TURBINE
    • 水平通道垂直轴风力涡轮机
    • US20150361953A1
    • 2015-12-17
    • US14738773
    • 2015-06-12
    • Imperial Wind Corporation
    • Ronald Eugene FreeseCassandra Anne Jory
    • F03D3/04F03D11/02F03D9/00F03D3/00F03D3/06
    • F03D3/04F03D1/04F03D3/005F03D9/25F03D15/00F03D15/10F03D80/70F05B2240/13Y02E10/72Y02E10/74
    • A horizontally channeled vertical axis wind turbine for electrical power generation is provided. The wind turbine may collect ambient wind speed from between 0-+/−50 ft. above ground level. The collected wind is accelerated and concentrated within horizontal laminar flow channels which direct the accelerated and concentrated wind up and through to a smaller exhaust and a series of turbine blades, located on a vertical axis turbine and shaft, which provides power to an electrical generator or alternator located below the wind turbine. The horizontally channeled vertical axis wind turbine may comprise an ambient wind scoop structure, a horizontal laminar flow channel support structure and a self-supporting turbine disk structure. The ambient wind scoop structure may gather ambient wind and then concentrate and accelerate the wind into two (2) horizontal laminar air flow channels in the horizontal laminar flow channel support structure which is supported by the self-supporting turbine disk structure.
    • 提供了用于发电的水平通道垂直轴风力涡轮机。 风力涡轮机可以从地平面以上0 - + / - 50英尺之间收集环境风速。 收集的风被加速并集中在水平层流通道内,其将加速和集中的风向上引导到较小的排气口和一系列涡轮机叶片,其位于垂直轴线的涡轮机和轴上,该涡轮机叶片向发电机或电力供应器 位于风力涡轮机下方的交流发电机。 水平通道的垂直轴风力涡轮机可以包括环境风铲结构,水平层流通道支撑结构和自支撑涡轮盘结构。 环境风斗结构可以聚集环境风,然后将风集中并加速到由自支撑涡轮盘结构支撑的水平层流通道支撑结构中的两(2)个水平层流气流通道中。
    • 68. 发明授权
    • Arrangement of components of a wind power plant
    • 风力发电厂组件的布置
    • US09206743B2
    • 2015-12-08
    • US13793187
    • 2013-03-11
    • REPOWER SYSTEMS SE
    • Hanno Schnetgoke
    • F03D1/06F02C7/20F03D11/00F03D11/02
    • F02C7/20F03D1/0658F03D15/00F03D80/88F05B2280/10302F05B2280/6011Y02E10/721Y02E10/722Y10T29/49229
    • An arrangement of components (12, 13, 30) for a wind power plant. A first component (12, 13) has a flange (15, 130) having a flange contact surface (121, 122, 133). A second component (30) has a flange-mounting surface (131, 132) for a flange (15, 130) of the first component (12, 13). Alternatively, the second component (12, 13) has a flange (15, 130) having a flange contact surface (122, 133) and the flange contact surface (122, 133) of the first component (12, 13) and the flange-mounting surface (131, 132) of the second component (30) are arranged opposite each other, or the flange contact surfaces (122, 121) of the components are arranged opposite each other. At least one flange contact surface (121, 122, 133) of a flange (15, 130) and/or the flange-mounting surface (131, 132) of the second component (30) has an outer coating made of a chrome-steel alloy.
    • 风力发电厂组件(12,13,30)的布置。 第一部件(12,13)具有凸缘(15,130),该凸缘具有凸缘接触表面(121,122,133)。 第二部件(30)具有用于第一部件(12,13)的凸缘(15,130)的凸缘安装表面(131,132)。 或者,第二部件(12,13)具有凸缘(15,130),该凸缘具有法兰接触表面(122,133)和第一部件(12,13)的凸缘接触表面(122,133)和凸缘 第二部件(30)的安装面(131,132)彼此相对布置,或者部件的凸缘接触表面(122,121)彼此相对布置。 凸缘(15,130)和/或第二部件(30)的凸缘安装表面(131,132)的至少一个凸缘接触表面(121,122,133)具有由铬 - 钢合金。
    • 69. 发明授权
    • Wind turbine nacelle
    • 风力发电机舱
    • US09163612B2
    • 2015-10-20
    • US13465178
    • 2012-05-07
    • Warren Smook
    • Warren Smook
    • F03D11/02F16H1/28F16H1/46
    • F03D11/02F03D13/20F03D15/00F03D15/10F03D80/70F03D80/88F05B2260/40311F16H1/28F16H1/46Y02E10/722Y02E10/726
    • A wind turbine nacelle (50) which comprises a frame (54) and a drive train which comprises a gearbox (55). The nacelle (50) has a rotor attached thereto and comprises a rotor hub (52), with one or more blades (53), which supported by a rotor bearing(s) (56) located on a tubular part (57) at an end of the frame (54) furthest from the tower (51). The gearbox (55) comprises a gearbox housing (58), not constituting part of the frame (54), which is rigidly and axially connected to the frame (54) by a gearbox flange (66) such that a side of the gearbox flange (66), furthest from the gearbox input side (I), is connected to an end of the frame flange (67) furthest away from the tower (51). An input shaft (76) of the gearbox (55) is connected to the rotor hub (52) via a separate connection part (77).
    • 一种风力涡轮机舱(50),其包括框架(54)和包括变速箱(55)的传动系。 机舱(50)具有附接到其上的转子,并且包括转子毂(52),其具有一个或多个叶片(53),所述叶片(53)由位于管状部件(57)上的转子轴承(56)支撑, 距离塔架(51)最远的框架(54)的端部。 齿轮箱(55)包括不构成框架(54)的一部分的齿轮箱壳体(58),其通过齿轮箱凸缘(66)刚性和轴向地连接到框架(54),使得齿轮箱凸缘 (66)离齿轮箱输入侧(I)最远的位置与最远离塔架(51)的框架法兰(67)的一端连接。 齿轮箱(55)的输入轴(76)通过单独的连接部分(77)连接到转子轮毂(52)。