会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 3. 发明申请
    • DETERMINING AN EQUIVALENT MECHANICAL LOAD
    • 确定等效机械载荷
    • WO2010121669A1
    • 2010-10-28
    • PCT/EP2009/058092
    • 2009-06-29
    • SIEMENS AKTIENGESELLSCHAFTFRYDENDAL, Ib
    • FRYDENDAL, Ib
    • G05B23/02
    • G05B23/0221
    • A method for determining an equivalent mechanical load of a component, in particular of a component of a machine, which component is subjected to a dynamic mechanical loading is described. The method comprises measuring a first measurement value of the mechanical load of the component and comparing the first measurement value with a first reference value. The method further comprises first updating at least one count value representing the number of load half-cycles of the component based on the result of comparing, wherein the load half-cycles correspond to a predetermined range of mechanical loads and occur within a time period prior to the measurement of the first measurement value. A first equivalent mechanical load of the component is determined based on the first up-dated count value. It is further described a program element and a computer-readable medium having stored a program for controlling the described equivalent mechanical load determining method.
    • 描述了一种用于确定该部件经受动态机械加载的部件,特别是机器部件的等效机械载荷的方法。 该方法包括测量部件的机械负载的第一测量值并将第一测量值与第一参考值进行比较。 该方法还包括:基于比较结果,首先更新表示部件的负载半周期数的至少一个计数值,其中负载半周期对应于机械负载的预定范围并且在先前的时间段内发生 测量第一测量值。 基于第一更新的计数值来确定部件的第一等效机械负载。 进一步描述了程序元件和计算机可读介质,其存储用于控制所述等效机械负载确定方法的程序。
    • 4. 发明申请
    • POWER GENERATING MACHINE LOAD CONTROL BASED ON CONSUMED FATIGUE LIFE TIME AND REAL-TIME OF OPERATION OF A STRUCTURAL COMPONENT
    • 基于消费疲劳寿命的发电机负荷控制和结构部件运行的实时性
    • WO2011035977A1
    • 2011-03-31
    • PCT/EP2010/061466
    • 2010-08-06
    • SIEMENS AKTIENGESELLSCHAFTEGEDAL, PerFRYDENDAL, Ib
    • EGEDAL, PerFRYDENDAL, Ib
    • F03D7/02F03D7/04
    • F03D7/0292F03D7/0264F03D7/043F05B2270/1095F05B2270/332Y02E10/723
    • It is described a method for controlling the operation of a power generating machine (100) comprising a structural component (114, 120, 122), which during an operation of the power generating machine is exposed to a mechanical load. The method comprises (a) determining a consumed fatigue life time (254c) of the structural component, (b) determining a real-time of operation (256b) of the structural component, (c) comparing the determined consumed fatigue life time with the determined real-time of operation and (d) controlling the operation of the power generating machine in such a manner that the mechanical load acting on the structural component depends on a result of comparing the determined consumed fatigue life time with the determined real-time of operation. It is further described a machine load control system (150, 250), the power generating machine and a computer program, which are all adapted for carrying out and/or for controlling the above described operation control method.
    • 描述了一种用于控制发电机(100)的操作的方法,该发电机(100)包括结构部件(114,120,122),其在发电机器的操作期间暴露于机械负载。 该方法包括:(a)确定结构部件的消耗的疲劳寿命(254c),(b)确定结构部件的操作的实时性(256b),(c)将确定的消耗的疲劳寿命与 确定的实时操作和(d)以这样的方式控制发电机的操作,使得作用在结构部件上的机械负载取决于将确定的消耗的疲劳寿命与所确定的实时的实时比较 操作。 进一步描述了适于执行和/或控制上述操作控制方法的机器负载控制系统(150,250),发电机和计算机程序。
    • 5. 发明申请
    • DYNAMIC ADAPTATION OF A SET POINT FOR A FATIGUE LIFE OF A STRUCTURAL COMPONENT OF A POWER GENERATING MACHINE
    • 动力发电机结构部件疲劳寿命设定点动态适应
    • WO2011035975A1
    • 2011-03-31
    • PCT/EP2010/061412
    • 2010-08-05
    • SIEMENS AKTIENGESELLSCHAFTEGEDAL, PerFRYDENDAL, Ib
    • EGEDAL, PerFRYDENDAL, Ib
    • F03D7/02F03D7/04
    • F03D7/0292F03D7/0224F03D7/043F05B2260/821F05B2270/1095F05B2270/332Y02E10/723
    • It is described a method for controlling the operation of a power generating machine (100). The method comprises (a) measuring a current mechanical load which is acting on a structural component (114, 120, 122) of the power generating machine, (b) estimating a new accumulated fatigue life time consumption of the structural component based on the measured current mechanical load and on a previously estimated accumulated fatigue life time consumption, (c) determining a set point for a fatigue life time consumption of the structural component based on the estimated new accumulated fatigue life time consumption and on at least one parameter being relevant for operating the power generating machine in the future and (d) operating the power generating machine in such a manner that the set point for the fatigue life time consumption of the structural component is achieved at least approximately. It is further described a machine load control system (150, 250), the power generating machine and a computer program, which are all adapted for carrying out the above described operation control method.
    • 描述了一种用于控制发电机(100)的操作的方法。 该方法包括:(a)测量作用在发电机的结构部件(114,120,122)上的当前机械负载,(b)基于所测量的结果部件估计结构部件的新的累积疲劳寿命消耗 当前的机械载荷和先前估计的累积疲劳寿命消耗量,(c)基于估计的新累积疲劳寿命消耗量确定结构部件的疲劳寿命消耗的设定点,以及至少一个与 在将来操作发电机,以及(d)以至少大约实现结构部件的疲劳寿命消耗的设定点的方式操作发电机。 进一步描述了适于执行上述操作控制方法的机器负载控制系统(150,250),发电机和计算机程序。
    • 8. 发明申请
    • WIND TURBINE BLADE WITH LIFT-REGULATING MEANS
    • 风力涡轮叶片具有调节手段
    • WO2004099608A1
    • 2004-11-18
    • PCT/DK2004/000294
    • 2004-04-29
    • LM GLASFIBER A/SPEDERSEN, Bernt, EbbeDAHL VESTERGAARD, JørgenGRABAU, PeterFRYDENDAL, Ib
    • PEDERSEN, Bernt, EbbeDAHL VESTERGAARD, JørgenGRABAU, PeterFRYDENDAL, Ib
    • F03D1/06
    • F03D7/0232F03D1/0633F03D7/024F03D7/043F05B2240/31F05B2270/20F05B2270/331Y02E10/721Y02E10/723
    • Wind turbine blade (10) including adjustable lift-regulating means (12, 13, 15, 17, 19, 21) arranged on or at the surface of the wind turbine blade (10), said lift-regulating means being provided with activating means by means of which they can be adjusted and thus alter the aerodynamic properties of the blade (10). The lift-regulating means (12, 13, 15, 17, 19, 21) and the activating means are adapted and arranged such that by activation of the activating means, the lift can be reduced in a zone extending in the longitudinal direction of the blade (10) from a first position adjacent the blade tip (14) to a second position between the first position and the blade root (16) and this second position is variable in the longitudinal direction of the blade (10) by adjusting the activate means. The lift-regulating means are formed of at least one flexible flap (12, 13, 15, 17, 19, 21). The invention further relates to a wind turbine rotor including such wind turbine blades, to a wind turbine and to a method of controlling the wind turbine.
    • 风力涡轮机叶片(10)包括布置在风力涡轮机叶片(10)的表面上或表面上的可调式升力调节装置(12,13,15,17,19,21),所述提升调节装置设置有启动装置 通过它们可以调节它们并因此改变叶片(10)的空气动力特性。 提升调节装置(12,13,15,17,19,21)和启动装置被适配和布置成使得通过致动装置的启动,可以在沿着纵向方向延伸的区域中减小升力 叶片(10)从邻近叶片尖端(14)的第一位置移动到第一位置和叶片根部(16)之间的第二位置,并且该第二位置在叶片(10)的纵向方向上可变,通过调节活塞 手段。 升降调节装置由至少一个柔性翼片(12,13,15,17,19,21)形成。 本发明还涉及包括这种风力涡轮机叶片的风力涡轮机转子,风力涡轮机和控制风力涡轮机的方法。