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    • 3. 发明申请
    • ROTOR BLADE FOR A WIND POWER PLANT, WIND POWER PLANT AND METHOD FOR THE PRODUCTION OF A ROTOR BLADE
    • 用于风力发电厂的转子叶片,风力发电厂和用于生产转子叶片的方法
    • US20110211971A1
    • 2011-09-01
    • US13032261
    • 2011-02-22
    • Urs BendelEnno Eyb
    • Urs BendelEnno Eyb
    • F03D11/02
    • F03D1/0683B29L2031/085F03D1/0675F05B2280/6003Y02E10/721Y02P70/523
    • A rotor blade (1) for a wind power plant that extends from a rotor blade root (2) substantially to a rotor blade tip (3), including a one-part or multi-part shell (10, 10′, 14) that is produced at least partially from a fiber reinforced composite material, and at least one belt (9-9′″) that is disposed in the rotor blade (1) substantially in the direction of a longitudinal extension of the rotor blade (1), wherein the at least one belt (9-9′″) has layers composed of a fiber reinforced composite material having fibers aligned unidirectionally in the direction of a longitudinal extension of the belt (9-9′″). Further, a wind power plant and a method for the production of a rotor blade (1) for a wind power plant is described.
    • 一种用于风力发电厂的转子叶片(1),其从转子叶片根部(2)基本上延伸到转子叶片尖端(3),包括一部分或多部分壳体(10,10',14),所述转子叶片 至少部分地由纤维增强复合材料制成,以及至少一个沿转子叶片(1)的纵向延伸方向设置在转子叶片(1)中的至少一个带(9-9“”) 其中所述至少一个带(9-9'“)具有由纤维增强复合材料组成的层,所述纤维增强复合材料具有沿着带(9-9'”)的纵向延伸方向单向排列的纤维。 此外,还描述了风力发电厂和用于生产用于风力发电厂的转子叶片(1)的方法。
    • 6. 发明授权
    • Rotor blade with drainage bore hole
    • 转子叶片带排水孔
    • US08678765B2
    • 2014-03-25
    • US12915239
    • 2010-10-29
    • Urs BendelLenz Simon Zeller
    • Urs BendelLenz Simon Zeller
    • F03D1/00
    • F03D1/0675F03D13/10F03D80/30F05B2260/64Y02E10/721Y02P70/523Y10T29/49336Y10T29/49893
    • A method for the production of a rotor blade (1) for a wind power plant, wherein the produced rotor blade (1) in its longitudinal extension, which extends from a rotor blade root (2) essentially to a rotor blade tip (3), has at least one area, in which the rotor blade has an aerodynamic blade section (4, 4′, 4″), which has a leading edge (5) and a trailing edge (6), which are connected via a suction side (7) and a pressure side (8) of the blade section (4, 4′, 4″), wherein at least a first and at least a second molded part (11, 12) manufactured in the longitudinal direction of the rotor blade (1) are provided for a suction side (7) and a pressure side (8) of the rotor blade (1), which are to be connected with each other in the areas of the leading edge (5) and the trailing edge (6). A corresponding rotor blade (1) for a wind power plant and a wind power plant with a corresponding rotor blade (1).
    • 一种用于生产用于风力发电设备的转子叶片(1)的方法,其中所产生的转子叶片(1)在其纵向延伸部中从转子叶片根部(2)基本上延伸到转子叶片尖端(3) 具有至少一个区域,其中转子叶片具有空气动力叶片部分(4,4',4“),其具有前缘(5)和后缘(6),其经由吸力侧 (7)和叶片部分(4,4',4“)的压力侧(8),其中至少第一和至少第二模制部件(11,12)沿转子叶片的纵向方向制造 (1)设置用于在前缘(5)和后缘(5)的区域中彼此连接的转子叶片(1)的吸力侧(7)和压力侧(8) 6)。 用于风力发电设备的相应的转子叶片(1)和具有相应的转子叶片(1)的风力发电设备。
    • 8. 发明授权
    • Rotor blade of a wind energy unit
    • 风力发电机组的转子叶片
    • US08052394B2
    • 2011-11-08
    • US12296745
    • 2007-03-28
    • Marc PetscheUrs Bendel
    • Marc PetscheUrs Bendel
    • F04D29/38B64C11/16F01D5/14
    • F03D1/0641F05B2240/301F05B2240/31Y02E10/721Y02P70/523Y10T29/49337
    • The invention relates to a rotor blade (60) of a wind energy plant with a top side (suction side) and a bottom side (pressure side) wherein profiles (21, 22, 23, 24, 25) with a front edge and a back edge (62) in cross-section are designed along a longitudinal axis between a rotor blade root and a rotor blade tip, one designed-based direction of air inflow (31, 32, 33, 34, 35) is predetermined for each profile (21, 22, 23, 24, 25) and the profiles (21, 22, 23, 24, 25) in the outer area facing the rotor blade tip are designed with a relative thickness of less than 30%. The rotor blade (60) is characterized in that an attached device (51), which has an attached-device inflow surface as well as a start point (41, 42, 43) facing the front edge of the attached-device inflow surface (52) and an end point facing the back edge (62) of the attached-device inflow surface (52), is arranged along the longitudinal axis in the inner area dedicated to the rotor blade root to profiles (21, 22, 23, 24, 25) with a relative thickness of more than 30% on the pressure side.
    • 本发明涉及具有顶侧(吸入侧)和底侧(压力侧)的风力发电设备的转子叶片(60),其中具有前边缘和第二边缘的轮廓(21,22,23,24,25) 沿着沿着转子叶片根部和转子叶片尖端之间的纵向轴线设计横截面的后边缘(62),对于每个轮廓预先确定一个基于设计的空气流入方向(31,32,33,34,35) (21,22,23,24,25)和面向转子叶片尖端的外部区域中的轮廓(21,22,23,24,25)被设计成具有小于30%的相对厚度。 转子叶片(60)的特征在于,具有附接装置流入表面的附接装置(51)以及面向附接装置流入表面的前边缘的起点(41,42,43) 52),并且面向附接装置流入表面(52)的后边缘(62)的端点沿着纵向轴线布置在专用于转子叶片根部的内部区域中,以形成轮廓(21,22,23,24) ,25),在压力侧具有大于30%的相对厚度。
    • 9. 发明申请
    • ROTOR BLADE WITH DRAINAGE BORE HOLE
    • 带排水孔的转子叶片
    • US20110103963A1
    • 2011-05-05
    • US12915239
    • 2010-10-29
    • Urs BendelLenz Simon Zeller
    • Urs BendelLenz Simon Zeller
    • F04D29/38
    • F03D1/0675F03D13/10F03D80/30F05B2260/64Y02E10/721Y02P70/523Y10T29/49336Y10T29/49893
    • The invention relates to a method for the production of a rotor blade (1) for a wind power plant, wherein the produced rotor blade (1) in its longitudinal extension, which extends from a rotor blade root (2) essentially to a rotor blade tip (3), has at least one area, in which the rotor blade has an aerodynamic blade section (4, 4′, 4″), which has a leading edge (5) and a trailing edge (6), which are connected via a suction side (7) and a pressure side (8) of the blade section (4, 4′, 4″), wherein at least a first and at least a second molded part (11, 12) manufactured in the longitudinal direction of the rotor blade (1) are provided for a suction side (7) and a pressure side (8) of the rotor blade (1), which are to be connected with each other in the areas of the leading edge (5) and the trailing edge (6). The invention also relates to a corresponding rotor blade (1) for a wind power plant and a wind power plant with a corresponding rotor blade (1).The invention is characterized in that a surface element (16) in the rotor blade (1) for a wind power plant, which has a drainage bore hole (9) in the area of the rotor blade tip (3), is used to keep the drainage bore hole (9) free of connection means (18, 19).
    • 本发明涉及一种用于生产用于风力发电厂的转子叶片(1)的方法,其中所产生的转子叶片(1)在其纵向延伸部中从转子叶片根部(2)基本上延伸到转子叶片 尖端(3)具有至少一个区域,其中转子叶片具有空气动力学叶片部分(4,4',4“),其具有前缘(5)和后缘(6),其连接 通过所述叶片部分(4,4',4“)的吸力侧(7)和压力侧(8),其中沿纵向方向制造的至少第一和至少第二模制部分(11,12) (1)的吸入侧(7)和转子叶片(1)的压力侧(8)设置在转子叶片(1)的前缘(5)和 后缘(6)。 本发明还涉及一种用于风力发电设备的相应的转子叶片(1)和具有相应的转子叶片(1)的风力发电设备。 本发明的特征在于,用于风力发电厂的转子叶片(1)中的在转子叶片尖端(3)的区域中具有排水孔(9)的表面元件(16)用于保持 所述排水孔孔(9)没有连接装置(18,19)。
    • 10. 发明申请
    • ROTOR BLADE OF A WIND ENERGY UNIT
    • 风力发电机组的转子叶片
    • US20090274559A1
    • 2009-11-05
    • US12296745
    • 2007-03-28
    • Marc PetscheUrs Bendel
    • Marc PetscheUrs Bendel
    • F03D1/06B23P15/04F03D3/06
    • F03D1/0641F05B2240/301F05B2240/31Y02E10/721Y02P70/523Y10T29/49337
    • The invention relates to a rotor blade (60) of a wind energy plant with a top side (suction side) and a bottom side (pressure side) wherein profiles (21, 22, 23, 24, 25) with a front edge and a back edge (62) in cross-section are designed along a longitudinal axis between a rotor blade root and a rotor blade tip, one designed-based direction of air inflow (31, 32, 33, 34, 35) is predetermined for each profile (21, 22, 23, 24, 25) and the profiles (21, 22, 23, 24, 25) in the outer area facing the rotor blade tip are designed with a relative thickness of less than 30%. The rotor blade (60) is characterized in that an attached device (51), which has an attached-device inflow surface as well as a start point (41, 42, 43) facing the front edge of the attached-device inflow surface (52) and an end point facing the back edge (62) of the attached-device inflow surface (52), is arranged along the longitudinal axis in the inner area dedicated to the rotor blade root to profiles (21, 22, 23, 24, 25) with a relative thickness of more than 30% on the pressure side.
    • 本发明涉及具有顶侧(吸入侧)和底侧(压力侧)的风力发电设备的转子叶片(60),其中具有前边缘和第二边缘的轮廓(21,22,23,24,25) 沿着沿着转子叶片根部和转子叶片尖端之间的纵向轴线设计横截面的后边缘(62),对于每个轮廓预先确定一个基于设计的空气流入方向(31,32,33,34,35) (21,22,23,24,25)和面向转子叶片尖端的外部区域中的轮廓(21,22,23,24,25)被设计成具有小于30%的相对厚度。 转子叶片(60)的特征在于,具有附接装置流入表面的附接装置(51)以及面向附接装置流入表面的前边缘的起点(41,42,43) 52),并且面向附接装置流入表面(52)的后边缘(62)的端点沿着纵向轴线布置在专用于转子叶片根部的内部区域中,以形成轮廓(21,22,23,24) ,25),在压力侧具有大于30%的相对厚度。