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    • 3. 发明公开
    • RENEWABLE-ENERGY TYPE POWER GENERATING APPARATUS AND METHOD OF ASSEMBLING THE SAME
    • 可再生能源型发电设备及其组装方法
    • EP3318753A1
    • 2018-05-09
    • EP17160590.0
    • 2017-03-13
    • Mitsubishi Heavy Industries, Ltd.
    • KAWABATA, ShinjiNOGUCHI, Toshihide
    • F03D9/28F03D15/00F03D13/10F03D80/70F04B17/02F04B1/053
    • F03D9/28F03D13/10F03D15/00F03D80/70F04B1/0538F04B17/02F05B2210/16F05B2230/60F05B2260/406Y02E10/726Y02P70/523Y02P80/158
    • A renewable-energy type power generating apparatus includes: a wind turbine rotor; a main shaft coupled to the wind turbine rotor; a hydraulic pump including a stator part, and a rotor part provided to be rotatable relative to the stator part and configured to rotate along with the main shaft; a nacelle housing at least the hydraulic pump; a tower supporting the nacelle; a yaw rotation bearing rotatably supporting a nacelle base plate of the nacelle on the tower; a support part supporting the stator part on the nacelle base plate; and a pair of bearings disposed between the stator part and the main shaft or the rotor part, and configured to support the main shaft rotatably on the nacelle base plate via the stator part and the support part. The pair of bearings are disposed in front and rear across a center axis of the yaw rotation bearing in an axial direction of the main shaft. The hydraulic pump is disposed from front to rear across the center axis of the yaw rotation bearing in the axial direction.
    • 一种可再生能源型发电装置包括:风力涡轮机转子; 联接到风力涡轮机转子的主轴; 液压泵,其包括定子部分和转子部分,所述转子部分被设置成可相对于所述定子部分旋转并被构造成与所述主轴一起旋转; 至少容纳所述液压泵的机舱; 支撑机舱的塔架; 将所述机舱的机舱基板可旋转地支撑在所述塔上的偏航旋转轴承; 支撑部分,其支撑机舱基板上的定子部分; 以及一对轴承,其设置在所述定子部与所述主轴或所述转子部之间,并且构造成经由所述定子部和所述支撑部将所述主轴可旋转地支撑在所述机舱基板上。 一对轴承在偏转旋转轴承的中心轴线的主轴的轴向上前后配置。 液压泵在轴向上横跨偏航旋转轴承的中心轴线从前向后布置。
    • 4. 发明公开
    • ANNULAR VALVE AND POWER GENERATING APPARATUS OF RENEWABLE-ENERGY TYPE
    • 环状阀和设备用于发电可再生能源
    • EP3098489A1
    • 2016-11-30
    • EP15191997.4
    • 2015-10-29
    • MITSUBISHI HEAVY INDUSTRIES, LTD.
    • NOGUCHI, ToshihideHIRANO, HaruhikoKAWABATA, ShinjiSHIMIZU, MasayukiHAYASHI, ToshikazuNAKAYAMA, ShinMCINTYRE, Fergus
    • F16K1/36F16K31/06F03D9/00F03D15/00
    • F16K31/0655F03D9/28F03D15/00F05B2260/406F16K1/36F16K31/0627Y02E10/72
    • An annular valve (50, 70) includes an annular valve seat (51) including a seat portion (52) formed by an outer circumferential edge (34a) and an inner circumferential edge (34b) of an annular opening (34), a rod (53) configured to be movable along a direction orthogonal to the seat portion (52), an annular valve body (54) disposed so as to face the annular valve seat (51) and fixed to the rod (53), and a valve-body moving unit (55) for moving the annular valve body (54) between: a valve-closed position in which the annular valve body (54) contacts the seat portion (52) of the annular valve seat (51) so that the annular opening (34) is closed by the annular valve body (54); and a valve-open position in which the annular valve body (54) is positioned away from the seat portion (52) of the annular valve seat (51) so that the annular opening (34) is open. The seat portion (52) of the annular valve seat (51) is configured to be in surface contact with the annular valve body (54) in the valve-closed position in a first annular region (52a) including the outer circumferential edge (34a) of the annular opening (34) and in a second annular region (52b) including the inner circumferential edge (34a) of the annular opening (34).
    • 的环状阀(50,70)包括在环状阀座(51)包括通过在外周缘(34A)形成的座部(52)和帧内圆周边缘(34b)的一环形设计开口(34)的,杆 (53)构成为能够沿垂直于布置成面对环形设计阀座(51)的环形设计的阀体的座部(52)(54)和固定的方向上,杆(53)可移动的,和一个阀 体区移动单元(55),用于移动之间的环形设计的阀体(54):一个阀关闭位置,其中所述环形设计的阀体(54)接触环形设计阀座(51)的座部(52)象在 环形开口(34)被阀环形体(54)封闭; 并且其中所述环形设计的阀体(54)位于从所述环形设计阀座(51)象环形设计开口(34)的座部(52)离开的阀打开位置是打开的。 环形设计阀座的座部(52),(51)被配置为与在第一环形设计区域(52A),包括外周缘的阀关闭位置,环形设计的阀体(54)(图34A的表面接触 )在(52B)包括环形开口设计34)的内周缘(34A)的第二环形区域设计环形设计开口((34)的和。