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    • 35. 发明授权
    • Integrated cooling and climate control system for an offshore wind turbine
    • 海上风力发电机集成冷却和气候控制系统
    • US09091249B2
    • 2015-07-28
    • US13489086
    • 2012-06-05
    • Peri SabhapathyEduardo Moreno BenitoDag Jorstad
    • Peri SabhapathyEduardo Moreno BenitoDag Jorstad
    • F03D11/00F28D15/00
    • F03D11/0075F03D13/25F03D80/60F03D80/88F05B2260/20F05B2260/205F28D15/00Y02E10/722Y02E10/726
    • An integrated cooling and climate control system for an offshore wind turbine featuring a reservoir having first and second chambers located in an upper region of the tower. Upper and lower cooling circuits distribute coolant fluid through heat generating structures in the nacelle to a lower portion of the wind turbine where the heated coolant fluid is thermally connected to a sea water heat sink. The cooled coolant fluid is then distributed back to the reservoir. The reservoir has a hollow center and is positioned on a platform having a hollow center. The inlet and outlet pipes of the upper cooling circuit freely hang inside the reservoir chambers so that they may be displaced as the nacelle yaws in order to maintain sufficient circulation of the coolant fluid in the upper cooling circuit. In jacket foundation configurations, the tubular support structures may serve as the lower cooling circuit pipes.
    • 一种用于海上风力涡轮机的集成冷却和气候控制系统,其特征在于具有位于塔的上部区域中的第一和第二室的储存器。 上部和下部冷却回路将冷却剂流体通过机舱中的发热结构分配到风力涡轮机的下部,其中加热的冷却剂流体热连接到海水散热器。 然后将冷却的冷却剂流体分配回储存器。 储存器具有中空的中心并且位于具有中空中心的平台上。 上部冷却回路的入口和出口管道自由地悬挂在储存室内部,使得它们可以随着机舱爪的移动而移动,以保持冷却剂流体在上部冷却回路中的充分循环。 在护套基座构造中,管状支撑结构可以用作下部冷却回路管。