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    • 1. 发明授权
    • Wind energy plant with dynamic power distribution between the pitch system and supplementary electrical load
    • 风力发电厂在间距系统和辅助电力负载之间具有动态功率分配
    • US08922040B2
    • 2014-12-30
    • US13574572
    • 2011-01-21
    • Matthias PetersMartin von Mutius
    • Matthias PetersMartin von Mutius
    • F03D9/00F03D11/00F03D7/02
    • F03D11/0025F03D7/0224F03D80/40Y02E10/722Y02E10/723
    • A wind energy plant comprising a rotor having blades and a generator driven by said rotor for generating electric energy. The pitch of the blades can be adjusted and a pitch system for adjusting the pitch angle of the blades is provided, which is supplied by a hub power source. An additional electric load is provided on the hub. A pitch power control device is provided which dynamically distributes the power of the hub power source between the pitch system and the additional electric load and further acts on the pitch system such that its power consumption during high-load operation is reduced. Thus, the power consumption of the pitch system during high-load operation can be reduced and additional power provided for operating the additional load. Even large additional loads, such as a blade heater, can be operated in this way, without having to boost the hub power source.
    • 一种风力发电设备,包括具有叶片的转子和由所述转子驱动的用于产生电能的发电机。 可以调节叶片的间距,并且提供用于调节叶片的俯仰角的俯仰系统,其由轮毂动力源提供。 在轮毂上提供额外的电负载。 提供一种俯仰功率控制装置,其在俯仰系统和附加电力负载之间动态地分配轮毂电源的功率,并进一步作用在俯仰系统上,使得其在高负荷运行期间的功率消耗降低。 因此,可以降低高负载运行期间的俯仰系统的功率消耗,并为附加负载运行提供附加功率。 甚至可以以这种方式操作诸如叶片加热器的大量附加负载,而不必增加集线器电源。
    • 4. 发明授权
    • Modular kit for a wind turbine tower
    • 用于风力发电机塔的模块化套件
    • US08146320B2
    • 2012-04-03
    • US10530142
    • 2003-09-30
    • Marc SeidelMartin Von MutiusUlrich Uphues
    • Marc SeidelMartin Von MutiusUlrich Uphues
    • E04H12/02E04C3/30
    • E04H12/16E04H12/08F03D13/20F05B2240/40F05B2240/912F05B2250/231F05B2250/232Y02E10/728
    • The modular kit for a tower has a height ranging between a minimum height and a maximum height, in particular for a wind energy turbine, comprises a first conical tower segment (10) comprising a steel tube having a predetermined length (11), a second conical tower segment (12) comprising a steel tube having a predetermined length (12), and a first cylindrical tower segment (14) comprising a steel tube having a length between a predetermined minimum length and a predetermined maximum length. The length of the first cylindrical tower segment (14) can be adapted to the necessary height of the tower between its minimum height and its maximum height. The minimum height is the sum of the predetermined lengths (11,12) of the first and second conical tower segments (10,12) and the minimum length of the first cylindrical tower segment (14). The maximum height is the sum of the predetermined lengths (11,12) of the first and second conical tower segments (10,12) and the maximum length of the first cylindrical tower segment (14).
    • 用于塔架的模块化组件具有在最小高度和最大高度之间的高度,特别是对于风力涡轮机,包括第一锥形塔架段(10),其包括具有预定长度(11)的钢管,第二锥形塔架段 包括具有预定长度(12)的钢管的锥形塔段(12)和包括长度在预定最小长度和预定最大长度之间的长度的钢管的第一圆柱形塔架段(14)。 第一圆柱形塔段(14)的长度可以适应塔的最小高度和最大高度之间的必要高度。 最小高度是第一和第二锥形塔段(10,12)的预定长度(11,12)和第一圆柱形塔架段(14)的最小长度之和。 最大高度是第一和第二锥形塔段(10,12)的预定长度(11,12)和第一圆柱形塔架段(14)的最大长度之和。
    • 5. 发明申请
    • METHOD FOR THE OPERATION OF A WIND POWER PLANT
    • 风力发电厂运行方法
    • US20100183440A1
    • 2010-07-22
    • US12663718
    • 2008-04-28
    • Martin Von MutiusJens AltemarkAlf Trede
    • Martin Von MutiusJens AltemarkAlf Trede
    • F03D7/00F03D11/00
    • F03D7/0264F03D17/00F03D80/50F05B2230/80F05B2270/32F05B2270/321Y02E10/723Y02P70/523
    • The invention concerns a method for operating a wind power plant (WEA), preferably before or during the performance of maintenance work on the wind power plant (WEA), wherein —at least one physical condition of the surroundings outside the wind power plant (WEA) induced by wind movement outside the wind power plant (WEA) is detected as an external physical condition, and/or at least one physical condition of a component of the wind power plant (WEA) influenced by wind movement outside the wind power plant (WEA) is detected as an internal physical condition; —the at least one external physical condition and/or at least one internal physical condition are evaluated; —the at least one external physical condition is compared with a predetermined reference value for the external physical condition, and/or the at least one internal physical condition is compared with a predetermined reference value for the internal physical condition; —depending on the comparison at least one warning message is generated, in particular a maintenance warning message.
    • 本发明涉及一种用于操作风力发电设备(WEA)的方法,优选在对风力发电厂(WEA)进行维护工作之前或期间进行操作,其中至少一个风力发电厂外部的环境(WEA) 被检测为风力发电厂(WEA)外的风动作用引起的外部物理状况,和/或风力发电厂(WEA)的部件的至少一个物理状况受风力发电厂外的风动作影响 WEA)被检测为内部物理条件; - 评估至少一个外部身体状况和/或至少一个内部身体状况; 将至少一个外部物理条件与外部物理条件的预定参考值进行比较,和/或将至少一个内部物理条件与内部物理条件的预定参考值进行比较; 根据比较,生成至少一个警告消息,特别是维护警告消息。
    • 6. 发明申请
    • METHOD FOR OPERATING A WIND ENERGY INSTALLATION AND A WIND ENERGY INSTALLATION
    • 用于操作风能安装和风能安装的方法
    • US20090295161A1
    • 2009-12-03
    • US12160511
    • 2007-01-04
    • Stefan SteinerMartin Von Mutius
    • Stefan SteinerMartin Von Mutius
    • H02P9/04
    • F03D7/042F03D7/0224F03D7/0244F05B2270/1011F05B2270/107F05B2270/322F05B2270/327Y02E10/723
    • The invention relates to a method for operating a wind energy installation (10), in which the wind energy installation (10) has a rotor (12, 13, 22), at least one rotor blade (14) with an adjustable angle, a mechanical brake device (19) for braking the rotor (14), an operational control device (15, 15′) and a safety system (16, 20). The invention also relates to a corresponding wind energy installation (10). The method according to the invention is defined by the following method steps: braking of the rotor (12, 13, 22) by means of an angular adjustment (28) with an average angular adjustment rate of less than 8.5°/s of the at least one rotor blade (14) after a fault signal (30) occurs, braking of the rotor (12, 13, 22) by means of the mechanical brake device (19) as soon as the rotational speed of the rotor (12, 13, 22) exceeds a predefinable first rotational speed limit, and triggering of the safety system (16, 20) as soon as the rotational speed of the rotor (12, 13, 22) exceeds a predefinable second rotational speed limit.
    • 本发明涉及一种用于操作风能设备(10)的方法,其中风力设备(10)具有转子(12,13,22),至少一个具有可调角度的转子叶片(14) 用于制动转子(14)的机械制动装置(19),操作控制装置(15,15')和安全系统(16,20)。 本发明还涉及相应的风能装置(10)。 根据本发明的方法通过以下方法步骤来限定:通过角度调节(28)制动转子(12,13,22),平均角度调整率小于每秒的8.5°/ s 在发生故障信号(30)之后的至少一个转子叶片(14),一旦转子(12,13)的旋转速度一直通过机械制动装置(19)制动转子(12,13,22) ,22)超过预定义的第一转速限制,并且一旦所述转子(12,13,22)的转速超过预定义的第二转速限制,则触发所述安全系统(16,20)。
    • 8. 发明授权
    • Method of servicing wind power plant using azimuth angle
    • 使用方位角维修风力发电厂的方法
    • US09181925B2
    • 2015-11-10
    • US13046892
    • 2011-03-14
    • Martin von MutiusDirk Steudel
    • Martin von MutiusDirk Steudel
    • F03D7/02F03D1/00F03D7/04G01L25/00F03D11/00
    • F03D7/0204F03D7/0264F03D7/0268F03D7/0288F03D7/04F03D17/00F03D80/50F05B2230/80F05B2270/329G01L25/003Y02E10/723Y02P70/523
    • The invention concerns a method for the determination of an azimuth angle for servicing purposes (αw) of a wind power plant with a machinery housing that is rotatable on a tower through an azimuth angle (α) and a rotor that is rotatable on a machinery housing through a rotor angle (δ) such that a plurality of combinations of rotor angles (δ) and azimuth angles (α) is adjusted, that are determined at the rotor subject to the influence of a turbulent wind field, which is effecting torques, for the adjusted combinations of rotor angles (δ) and azimuth angles (α) and the associated azimuth angle (α), a torque envelope of the torque-azimuth angle associations is determined, surrounding areas (U(α)) with comparable sector sizes of the azimuth angle (α) are generated and associated magnitude values of the torque envelope are determined, a surrounding area (U(αw)) with magnitude-wise smaller torque envelope values than the neighboring surrounding areas is selected and the azimuth angle for servicing purposes (αw) is determined within the selected surrounding area (U(aw)).
    • 本发明涉及一种用于确定风力发电设备的维修目的(αw)的方法,所述风力发电设备具有可在塔架上通过方位角(α)旋转的机械壳体和可在机械壳体上旋转的转子 通过转子角度(δ),使得转子角度(δ)和方位角(α)的多个组合被调节,其在转子受到影响扭矩的湍流风场的影响下确定,用于 旋转角度(δ)和方位角(α)的调整组合和相关联的方位角(α)确定扭矩 - 方位角关联的扭矩包络,具有可比扇区大小的周围区域(U(α)) 产生方位角(α),并且确定扭矩包络的相关联的幅值,选择具有相邻周围区域的幅度更小的扭矩包络值的周围区域(U(αw)),并且方位角a 在选择的周围区域(U(aw))内确定用于维修目的(αw)的gle。