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    • 4. 发明公开
    • PERMANENT-MAGNET DIRECT-DRIVE WIND POWER GENERATOR, SYSTEM AND STATOR THEREOF
    • 永磁体直驱风力发电机,系统和定子
    • EP3252930A1
    • 2017-12-06
    • EP15879709.2
    • 2015-11-17
    • Xinjiang Goldwind Science & Technology Co., Ltd.
    • WANG, DongMA, ShengjunLI, YanhuiLIU, ChengqianZHAO, Xiang
    • H02K5/10H02K1/12
    • H02K9/04F03D9/25F03D80/60F05B2220/7068H02K1/187H02K1/20H02K5/10H02K5/20H02K7/1838H02K9/02H02K15/125Y02E10/725
    • Disclosed are a permanent-magnet direct-drive wind power generator, a system and a stator thereof, wherein the stator comprises a stator bracket (1), a stator iron core (8) arranged on the peripheral wall of the stator bracket and a paddle side tooth pressing plate (6). The paddle side tooth pressing plate is arranged on a paddle side axial end face of the stator iron core. At least one first air hole (2) is formed in the peripheral wall of the stator bracket. At least one second air hole (5) is formed in the paddle side tooth pressing plate. The stator further comprises at least one air flow passage (9) used for linking the first air holes with the second air holes. The air flow passage penetrates through the interior of the stator iron core. The electric motor can self-adaptively dry itself, the service life of permanent magnet poles is prolonged, an "insulation level reduction" of components inside the electric motor is prevented, the risk that the electric motor is corroded by severe air flow is lowered, and insulation reliability is improved.
    • 本发明公开了一种永磁直驱风力发电机,其系统及其定子,其中,定子包括定子支架(1),设置在定子支架周壁上的定子铁芯(8) 侧齿压板(6)。 桨侧齿压板布置在定子铁心的桨侧轴向端面上。 至少一个第一气孔(2)形成在定子支架的周壁中。 至少一个第二气孔(5)形成在桨侧齿压板中。 定子还包括至少一个用于连接第一气孔和第二气孔的气流通道(9)。 气流通道贯穿定子铁芯的内部。 电动机能够自适应地自身干燥,延长永磁极的使用寿命,防止电动机内部的部件“绝缘水平降低”,电动机被严重气流腐蚀的风险降低, 绝缘可靠性提高。
    • 6. 发明公开
    • INDEPENDENT POWER VERTICAL AXIS WIND TURBINE SYSTEM
    • VERTIKALACHS-WINDTURBINENSYSTEM MITUNABHÄNGIGERLEISTUNG
    • EP3042074A4
    • 2017-10-04
    • EP14842683
    • 2014-09-05
    • VERT WIND ENERGY LLC
    • ARANOVICH JORGECOOPER FRANK WVILLORIA JOSE JORGE GAYARRE
    • F03D3/02F03D7/06F03D13/20F03D80/50
    • F03D15/05F03D3/005F03D3/02F03D3/062F03D9/002F03D9/25F03D13/20F03D15/20F03D80/50F05B2220/7066F05B2220/7068H02K13/003Y02E10/74
    • A vertical axis wind turbine system having a vertical mast with one or more turbine units supported thereon. The turbine units are of modular construction for assembly around the foot of the mast; are vertically moveable along the height of the mast by a winch system; and are selectively interlocking with the mast to fix the turbine units in parked positions. The turbine system and each turbine unit includes a network of portals and interior rooms for the passage of personnel through the system, including each turbine unit. The electrical generators, and other sub-components, in the turbine units are of modular construction that permits the selective removal and replacement of component segments, including the transport of component segments through the portals and interior rooms of the turbine system while the turbine units remain supported on the mast. The electrical generators are also selectively convertible between AC generators and DC generators.
    • 一种垂直轴风力涡轮机系统,其具有支撑在其上的一个或多个涡轮机单元的垂直桅杆。 涡轮机单元为模块化结构,用于在桅杆脚下组装; 通过绞车系统沿着桅杆的高度可垂直移动; 并且选择性地与桅杆联锁以将涡轮机单元固定在停放位置。 涡轮机系统和每个涡轮机单元包括用于人员通过系统(包括每个涡轮机单元)的入口和内室的网络。 涡轮机单元中的发电机和其他子部件是模块化构造,其允许选择性地移除和替换部件段,包括通过涡轮机系统的入口和内部室传输构件段,同时保持涡轮机单元 支撑在桅杆上。 发电机还可以选择性地在交流发电机和直流发电机之间转换。
    • 7. 发明授权
    • Minimising wind turbine generator air gap with a specific shaft bearing arrangement
    • 用特定的轴承布置最大限度地减少风力发电机气隙
    • EP2014917B1
    • 2017-08-30
    • EP07013519.9
    • 2007-07-10
    • Siemens Aktiengesellschaft
    • Stiesdal, Henrik
    • F03D9/00F03D80/00
    • H02K7/1838F03D9/25F03D15/20F03D80/70F05B2220/7066F05B2220/7068F16C2360/31H02K7/083H02K2201/03Y02E10/725Y02P70/523
    • The invention concerns a wind turbine (1, 50) comprising a bedplate (5, 55), a main shaft (9, 59) and a direct drive generator (2, 52) comprising a rotor (18, 68) and a stator (19, 69) containing a hollow part like housing substantially arranged around the rotor (18, 68) and containing a first endplate (28, 78), a second endplate (29, 79) and a casing element (32, 82) connecting the first (28, 78) and the second (29, 79) endplate to each other, wherein the main shaft (9, 59) is pivoted relatively to the bedplate (5, 5) by a first (7, 57) and a second (8, 58) bearing, the first endplate (28, 78) of the stator (19, 69) is supported on the rotor (18, 68) by a third bearing (27, 77) and the second endplate (29, 79) of the stator (19, 69) is at least indirectly attached to the bedplate (5, 55). The invention concerns moreover a method for the mounting of the wind turbine (1) in particular for the mounting of the direct drive generator (2) and a method for the adjustment of the air gap (34) between the rotor (18) and the stator (19) of the generator (2) of the wind turbine (1) by adjusting at least one arrest and/or adjustment element (35).
    • 本发明涉及包括底板(5,55),主轴(9,59)和直接驱动发电机(2,52)的风力涡轮机(1,50),所述主轴包括转子(18,68)和定子 包括围绕转子(18,68)基本上布置并包含第一端板(28,78),第二端板(29,79)和壳体元件(32,82)的基本上围绕转子(18,68)设置的中空部分的壳体元件 其特征在于,所述主轴(9,59)相对于所述台板(5,5)通过第一(7,57)和第二(7,57)枢轴相对于所述台板 (8,58)轴承,定子(19,69)的第一端板(28,78)通过第三轴承(27,77)支撑在转子(18,68)上,并且第二端板(29,79) )定子(19,69)至少间接连接到台板(5,55)。 此外,本发明还涉及一种用于安装风力涡轮机(1)的方法,特别是用于安装直接驱动发电机(2)的方法以及一种用于调节转子(18)与转子(18)之间的气隙 通过调节至少一个制动和/或调节元件(35)来调节风力涡轮机(1)的发电机(2)的定子(19)。