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    • 3. 发明申请
    • Hydrodynamic clutch arrangement
    • 流体动力离合器装置
    • US20080053774A1
    • 2008-03-06
    • US11897140
    • 2007-08-29
    • Gregor SueckOliver SoThomas KrugerMonika RossnerThomas Walter
    • Gregor SueckOliver SoThomas KrugerMonika RossnerThomas Walter
    • F16D33/06
    • F16H45/02F16H2045/0226F16H2045/0231F16H2045/0247F16H2045/0284
    • A hydrodynamic clutch device used to establish and to release a working connection between a drive and a takeoff is disclosed. The device includes a housing capable of rotating around an axis of rotation, the housing containing a torus space, which forms a torus volume (TV) with a pump wheel and a turbine wheel, and a clutch space, which forms the boundaries of the clutch volume (CV) and which encloses a mechanical transmission circuit including a bridging clutch designed with a torsional vibration damper During the course of the minimum resting phase of the housing, the fluid which is distributed throughout the housing during the operating state decreases from a total volume comprising at least the torus volume (TV) and the clutch volume (CV) to a resting volume (RV), which is located at least essentially underneath the axis of rotation as a result of the force of gravity. A volume reduction arrangement is provided to the housing to reduce the clutch volume (CV) versus the resting volume (RV).
    • 公开了用于建立和释放驱动和起飞之间的工作连接的流体动力离合器装置。 该装置包括能够围绕旋转轴线旋转的壳体,壳体包含环形空间,其与泵轮和涡轮机叶轮形成环面积体积(TV),以及离合器空间,其形成离合器的边界 体积(CV)并且其包围机械传动回路,其包括设计有扭转振动阻尼器的桥接离合器在壳体的最小静止阶段期间,在运行状态期间分布在整个壳体内的流体从总体积 至少包括环形体积(TV)和离合器体积(CV)到静止体积(RV),其由于重力的作用而至少基本位于旋转轴线的下方。 向壳体提供体积减小装置,以减小离合器体积(CV)与静息体积(RV)的关系。
    • 6. 发明申请
    • METHOD FOR THE OPERATION OF A WIND POWER PLANT
    • 风力发电厂运行方法
    • US20100289266A1
    • 2010-11-18
    • US12809696
    • 2008-12-03
    • Svenja WortmannThomas Kruger
    • Svenja WortmannThomas Kruger
    • H02P9/04
    • F03D7/0296F03D7/0224F03D7/024F03D7/042F05B2260/96F05B2270/1095F05B2270/334F05B2270/807Y02E10/723
    • A method for the operation of a wind power plant (W), wherein the wind power plant (W) has a tower (T) and a rotor with at least two rotor blades (RB1, RB2, RB3) connected with the tower, wherein each rotor blade (RB1, RB2, RB3) can be adjusted or is adjusted respectively around a rotor blade axis (RA1, RA2, RA3) with a predetermined rotor blade adjustment angle (GPW) and the rotor blades (RB1, RB2, RB3) are driven in a rotating manner by external wind movements around a rotor axis pro-vided transverse to the rotor blade axes (RA1, RA2, RA3). The rotor blade adjustment angle (GPW) for each rotor blade (RB1, RB2, RB3) is changed independently and/or individually depending on the lateral oscillations of the tower such that the amplitude of the lateral oscillations of the tower (T), induced in particular through the exterior wind movements, is damped.
    • 一种用于风力发电厂(W)的运行的方法,其中所述风力发电厂(W)具有塔架(T)和具有与所述塔架连接的至少两个转子叶片(RB1,RB2,RB3)的转子,其中 每个转子叶片(RB1,RB2,RB3)可以以预定的转子叶片调节角度(GPW)和转子叶片(RB1,RB2,RB3)分别围绕转子叶片轴线(RA1,RA2,RA3) 通过围绕转子轴线(RA1,RA2,RA3)横向转动的转子轴线的外部风力运动以旋转的方式驱动。 每个转子叶片(RB1,RB2,RB3)的转子叶片调节角度(GPW)根据塔的横向振荡独立地和/或单独地改变,使得塔(T)的横向振荡的振幅被诱发 特别是通过外部风力运动,被阻尼。
    • 8. 发明申请
    • Wind Power Plant Comprising Individual Pitch Devices
    • 包括个别间距装置的风力发电厂
    • US20080290664A1
    • 2008-11-27
    • US11996563
    • 2006-07-26
    • Thomas Kruger
    • Thomas Kruger
    • F03D9/00
    • F03D7/0224F03D7/024F03D7/0264F05B2260/74F05B2270/1074Y02E10/721Y02E10/723
    • Provided herein is a wind energy installation including a generator for production of electrical energy, a rotor which drives the generator and has variable pitch rotor blades and a central control device, and individual pitch devices provided individually for the rotor blades. The individual pitch devices may include an adjustment drive, a communication link to the central control device and a regulator, the rotor blades being adjustable in order to slow down the wind energy installation to a shut-down position. The individual pitch devices may also include a disturbance situation detector which is designed to identify abnormal operating states and to move the rotor blades to a shut-down position. Also provided herein is the method of operating such a wind energy installation.
    • 本文提供了一种风能设备,其包括用于产生电能的发电机,驱动发电机并具有变桨距转子叶片的转子和中央控制装置,以及为转子叶片单独设置的各个俯仰装置。 单个俯仰装置可以包括调节驱动器,到中央控制装置的通信链路和调节器,转子叶片是可调节的,以便将风能装置减速到减速位置。 各个俯仰装置还可以包括干扰情况检测器,其被设计为识别异常操作状态并将转子叶片移动到关闭位置。 这里还提供了操作这样的风能设备的方法。
    • 10. 发明申请
    • Anesthesia apparatus or respirator with integrated simulation functionality
    • 具有综合模拟功能的麻醉设备或呼吸器
    • US20060118110A1
    • 2006-06-08
    • US11243584
    • 2005-10-05
    • Ulrike Gerder-KallischThomas KrugerThomas Peyn
    • Ulrike Gerder-KallischThomas KrugerThomas Peyn
    • A61M15/00A61M16/10
    • A61M16/01A61M16/10
    • An anesthesia apparatus or respirator (1) enables the user (21) to simulate functions of the device and to carry out suitable operating steps depending on the situation, the device interactively responding to interventions by the user. The anesthesia apparatus or respirator (1) is equipped with at least one control and regulating unit (6), with at least one associated actuator (7, 8) and with internal and/or external sensors (9, 10) as well as with an interface unit (15) with an associated input and output unit (2, 3), respectively, for the operation, data input and output, and with an external data interface (4), wherein simulation components (12, 13) simulating the properties of the internal and/or external sensors (9, 10) with an associated simulation control (14) are present, so that the control and regulating unit (6) uses data of the simulation components (12, 13) for controlling the at least one actuator (7, 8) via the input and output unit (2, 3) and via the simulation control (14).
    • 麻醉设备或呼吸器(1)使得用户(21)能够模拟设备的功能并且根据情况执行适当的操作步骤,该设备交互地响应于用户的干预。 麻醉设备或呼吸器(1)配备有至少一个控制和调节单元(6),其具有至少一个相关联的致动器(7,8)以及内部和/或外部传感器(9,10)以及 分别具有用于操作,数据输入和输出以及与外部数据接口(4)相关联的输入和输出单元(2,3)的接口单元(15),其中模拟组件(12,13) 存在具有相关联的模拟控制(14)的内部和/或外部传感器(9,10)的特性,使得控制和调节单元(6)使用模拟部件(12,13)的数据来控制 经由输入和输出单元(2,3)和经由仿真控制(14)的至少一个致动器(7,8)。