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    • 5. 发明申请
    • WIND TURBINE GENERATOR
    • 风力涡轮发电机
    • US20130009405A1
    • 2013-01-10
    • US13577853
    • 2011-02-07
    • Shinsuke SatoShigeto HiraiTaisuke NakamuraTakeshi MatsuoChuuhachi GotouYasushi Okano
    • Shinsuke SatoShigeto HiraiTaisuke NakamuraTakeshi MatsuoChuuhachi GotouYasushi Okano
    • F03D9/00
    • F03D13/20F03D9/25F03D80/60F05B2260/64Y02E10/726Y02E10/728
    • A wind turbine generator having a large opening area for air intake and exhaust while maintaining tower strength and having a sufficient cooling performance is provided. In the wind turbine generator, a rotor head rotating when receiving wind power with wind turbine blades drives a generating machine provided inside a nacelle to generate electric power. The nacelle is provided on an upper end portion of a tower standing upright on a foundation. Outer air is introduced into the tower from a tower opening provided on a surface of the tower to cool an inner space of the tower. The wind turbine generator includes a recessed cylindrical portion extending from the tower opening toward the inner side of the tower. Air can pass through pressure loss elements provided on a part or all of a surface making up the cylindrical portion, and an effective opening area where the pressure loss elements are provided is larger than an actual opening area of the tower opening.
    • 提供一种具有大的进气和排气开口面积的风力发电机,同时保持塔的强度并具有足够的冷却性能。 在风力涡轮发电机中,当与风力涡轮机叶片接收风力时旋转的转子头驱动设置在机舱内部的发电机器以产生电力。 机舱设置在直立在基础上的塔的上端部分上。 外部空气从设置在塔的表面上的塔开口引入塔中以冷却塔的内部空间。 风力涡轮发电机包括从塔开口向塔的内侧延伸的凹入的圆柱形部分。 空气可以通过设置在构成圆筒部的表面的一部分或全部上的压力损失元件,并且设置有压力损失元件的有效开口面积大于塔开口的实际开口面积。
    • 9. 发明申请
    • WIND TURBINE FOR WIND POWER GENERATION
    • 风力发电风力涡轮机
    • US20110163545A1
    • 2011-07-07
    • US13000642
    • 2010-08-23
    • Shigeto HiraiYasushi OkanoShinsuke Sato
    • Shigeto HiraiYasushi OkanoShinsuke Sato
    • H02P9/04
    • B01D46/0086F03D80/55F03D80/60F05B2260/63F05B2260/64Y02E10/726
    • A wind turbine for wind power generation accommodated a heat-generating device therein is always properly cooled by accurately detecting clogging of a filter. A wind turbine accommodates a heat-generating device and includes a column disposed in an upright position on a foundation, a nacelle disposed on a top end of the column, and a rotor head supported by the nacelle so as to be rotatable about a substantially horizontal axis, and the wind turbine includes an intake which is provided in an outer surface of the wind turbine and through which outside air is taken into the wind turbine to cool the heat-generating device; an exhaust which is provided in the outer surface of the wind turbine and through which air inside the wind turbine is discharged outside the wind turbine; an impurity-removing mechanism disposed in a flow path of air from the intake to the exhaust to remove impurities contained in the outside air; and a control unit for determining the condition of the impurity-removing mechanism by comparing, as a parameter serving as a criterion for determining the condition of the impurity-removing mechanism, latest data obtained while a wind speed outside the wind turbine is substantially stable with reference value data input in advance and serving as a reference.
    • 通过精确检测过滤器的堵塞,总是适当地冷却容纳其中的发热装置的用于风力发电的风力涡轮机。 风力涡轮机容纳发热装置,并且包括设置在基座上的直立位置的列,设置在塔的顶端的机舱和由机舱支撑的转子头,以便可绕大体水平 并且所述风力涡轮机包括设置在所述风力涡轮机的外表面中并且外部空气被引入所述风力涡轮机中以冷却所述发热装置的进气口; 设置在风力涡轮机的外表面中并且风力涡轮机内的空气通过其排出到风力涡轮机外部的排气; 杂质去除机构,其设置在从进气口到排气口的空气流动路径中,以除去包含在外部空气中的杂质; 以及控制单元,用于通过将作为用于确定杂质去除机构的条件的标准的参数作为用于确定风力涡轮机外部的风速基本上稳定的最新数据的比较来确定杂质去除机构的状态, 参考值数据预先输入并作为参考。