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    • 8. 发明公开
    • METHOD FOR DETERMINING THE LIFE OF COMPONENTS OF A WIND TURBINE OR SIMILAR ACCORDING TO ITS LOCATION
    • 方法确定风力涡轮机的部件或类似的生命中的站点下
    • EP3026587A1
    • 2016-06-01
    • EP13890056.8
    • 2013-07-22
    • Nabla Wind Power, S.L.
    • FERNÁNDEZ DE VELASCO MUÑOZ, César Jesús
    • G06F19/00G06F17/00F03D13/00F03D1/00
    • G06F17/5009F03D7/0292F03D17/00F05B2260/84F05B2270/32F05B2270/332Y02E10/723
    • The invention relates to a method for determining the life of components of a wind turbine or similar according to its location, said method comprising the phases of:
      - obtaining an aeroelastic model of the wind turbine according to its design conditions;
      - obtaining an aeroelastic model of the actual wind turbine arranged at its site;
      - determining the specific wind conditions at the site of the wind turbine;
      - determining the specific operating conditions of the wind turbine at its site;
      - determining the design fatigue loads on the components of the wind turbine according to regulatory wind and operating conditions;
      - determining the actual fatigue loads on the components of the wind turbine according to the specific wind and operating conditions; and
      - determining the life of each component of the wind turbine at its site, reintegrating the actual fatigue loads until the design fatigue loads are reached.
    • 本发明涉及一种用于采矿确定性的风力涡轮机或类似gemäß其位置的部件的寿命,所述方法包括以下阶段: - 所述风力涡轮机gemäß其设计条件的气动弹性模型的获取; - 获得在其网站上设置在实际风力涡轮机的气动弹性模型; - 确定开采在风力涡轮机的现场具体风况; - 确定开采在其网站上的风力涡轮机的具体操作条件; - 确定性采矿在风力涡轮机gemäß监管风和操作条件的部件设计疲劳载荷; - 确定性采矿在风力涡轮机gemäß特定风和操作条件的部件的实际疲劳载荷; 和 - 确定开采在其网站上风力涡轮机的各部件的寿命,重返社会实际疲劳载荷,直到疲劳设计负荷达到。
    • 10. 发明公开
    • Method for enhancement of a wind plant layout with multiple wind turbines
    • Verfahren zur Verbesserung der anlagentechnischer Schaltung eines Windparks
    • EP2246563A3
    • 2014-04-16
    • EP10160820.6
    • 2010-04-23
    • General Electric Company
    • Gundling, Chris Henry
    • F03D11/00F03D7/04F03D9/00F03D1/00
    • G06F17/50F03D7/026F03D7/043F03D7/048F03D9/257F03D13/30F05B2240/96F05B2260/82F05B2260/84F05B2270/20F05B2270/32F05B2270/321G06F2217/16Y02E10/723
    • The layout and configuration of wind turbines in a wind power plant includes identifying constraints of a power plant site (400) and defining at least one region in the site for placement of a plurality of wind turbines (450). The wind state at the region in the site is determined (500). An actual wind condition at the various possible wind turbine locations within the site is determined (600) by modeling the wind state with wake effects (550) at the respective wind turbine locations, the wake effects resulting from cumulative placement of other wind turbines at various locations in the region. Individual wind turbine configuration and location within the region is then selected (650) as a function of the actual wind conditions that each of the individual wind turbine locations to optimize power output of the individual wind turbines. The selection of turbine configuration includes selection of a turbine hub height that minimizes wake loss of the individual wind turbines as a function of the actual wind conditions predicted for the turbine location.
    • 风力发电厂中的风力涡轮机的布置和配置包括识别发电厂现场(400)的约束并且在现场中定义用于放置多个风力涡轮机(450)的至少一个区域。 确定了该地区的风力状态(500)。 通过在相应的风力涡轮机位置对具有尾流效应(550)的风态进行建模来确定现场内各种可能的风力涡轮机位置处的实际风况,所述风态在各种风力涡轮机位置处累积放置其他风力涡轮机所产生的尾流效应 该地区的地点。 然后根据实际风况选择(650)区域内的单独的风力涡轮机构造和位置,以使各个风力涡轮机位置中的每一个优化各个风力涡轮机的功率输出。 涡轮机配置的选择包括根据为涡轮机位置预测的实际风况的函数来选择最小化单个风力涡轮机的尾流损失的涡轮机毂高度。