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    • 1. 发明专利
    • Installing structure of wind turbine apparatus and method for installation
    • 风力发电机装置的安装结构及其安装方法
    • JP2004150313A
    • 2004-05-27
    • JP2002314723
    • 2002-10-29
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • OGAWA SHINJISHIBATA MASAAKIHAYASHI YOSHIYUKIFURUKAWA TOYOAKI
    • F03D11/04F03D3/02F03D3/06
    • Y02E10/74
    • PROBLEM TO BE SOLVED: To provide an installing structure of a wind turbine apparatus which obtains a large output with a minimum limit of an installing area by increasing the number of installing apparatuses per unit area, and which can perform a safe drive of the apparatus with a high supporting rigidity capable of surely avoiding toppling of the apparatus due to a strong wind vibration, earthquake, etc. and to provide a method for installation. SOLUTION: The wind turbine apparatus includes a wind turbine assembly having one or a plurality of blade structures in which a plurality of blades are disposed along a circumferential direction of a wind turbine shaft at which bard-like formed blades are perpendicularly stood and ends of the respective blades are fixed to the shaft. In the installing structure of the apparatus includes three or more apparatuses installed on a ground surface, tops of the adjacent assemblies are coupled in a coupling state so as to couple the three or more apparatuses in a truss structure of a triangular shape in a planar disposition so that the top of the assembly of the outermost side is coupled to the ground surface by a ground surface coupling rope in the planar disposition. COPYRIGHT: (C)2004,JPO
    • 要解决的问题:提供一种风力涡轮机装置的安装结构,其通过增加每单位面积的安装装置的数量而获得具有安装面积的最小限制的大输出,并且可以执行安全驱动 具有高支撑刚度的装置,能够确保避免由于强烈的风振,地震等引起的装置翻倒,并提供一种安装方法。 风力涡轮机装置包括具有一个或多个叶片结构的风力涡轮机组件,其中多个叶片沿着风力涡轮机轴的圆周方向设置,在该涡轮机轴的圆周方向垂直放置ard状成形叶片, 各个叶片的端部固定在轴上。 在装置的安装结构中,包括安装在地面上的三个或更多个装置,相邻组件的顶部以耦合状态耦合,以将三个或更多个装置以三角形状的桁架结构以平面布置 使得最外侧的组件的顶部通过平面配置中的地面耦合绳索联接到地面。 版权所有(C)2004,JPO
    • 2. 发明专利
    • Horizontal axis type windmill power generation device
    • 水平轴类型WINDMILL发电装置
    • JP2003328923A
    • 2003-11-19
    • JP2002137755
    • 2002-05-13
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • FURUKAWA TOYOAKISHIBATA MASAAKIHAYASHI YOSHIYUKIARINAGA SHINJIYATOMI YUJIMIYAKE HISAOHAYAKAWA HIROSHI
    • F03D3/06F03D3/02F03D11/04
    • Y02E10/74
    • PROBLEM TO BE SOLVED: To provide a windmill power generation device equipped with a Darius type windmill assembly which surely avoids vibration or falling-down by strong wind vibration or an earthquake, has improved durability and reliability of the windmill power generation device without increasing an installation area by increase of the size and the weight or enlargement of the device, and increases windmill output per unit installation area. SOLUTION: In this horizontal axis type windmill power generation device equipped with the Darius type windmill assembly, a plurality of the windmill assemblies are rotatably supported on a support groove through a bearing by horizontally arranging a windmill axis, and a power generator is connected to a plurality of the windmill assemblies and supported on the support groove. COPYRIGHT: (C)2004,JPO
    • 要解决的问题:为了提供配备有大风力发电机组的风车发电装置,其可靠地避免强烈的风振或地震引起的振动或跌落,改善了风车发电装置的耐久性和可靠性,而没有 通过增加设备的尺寸和重量或扩大来增加安装面积,并增加每单位安装面积的风车产量。 解决方案:在配备有Darius型风车组件的水平轴型风车发电装置中,通过水平布置风车轴线,多个风车组件通过轴承可旋转地支撑在支撑槽上,发电机是 连接到多个风车组件并支撑在支撑槽上。 版权所有(C)2004,JPO
    • 4. 发明专利
    • PLUMMER BLOCK BEARING
    • JP2001032835A
    • 2001-02-06
    • JP20343399
    • 1999-07-16
    • MITSUBISHI HEAVY IND LTD
    • FURUKAWA TOYOAKIMATSUMOTO IWAOSHODA ISAHIKOHAMANAKA SACHIKO
    • F16C17/02F16C32/06F16C33/12F16C33/20
    • PROBLEM TO BE SOLVED: To prevent troubles such as damage to a bearing body due to uneven contact between the bearing surface facing sliding contact surface of the bearing body and the bearing surface of a bearing body supporting seat by friction reducing action of friction reducing means between the bearing surface of the bearing body supporting seat and the bearing surface facing sliding contact surface. SOLUTION: A plummer block bearing has a bearing body 101 supported by spherical bearing surfaces 105 and the same spherical bearing surface 105 as a bearing body supporting seat. The bearing body 101 has a bearing supporting surface 109 and bearing surface facing sliding contact surfaces for contacting the bearing surfaces of the spherical bearing surfaces 105 to receive supporting force in order for the direction of the axis of the bearing body 101 to be able to change. At least in either of the spherical bearing surface 105 and the bearing body 101, friction reducing means such as lubricants, an ultrasonic vibration generator for reducing friction between the bearing surfaces of the spherical bearing surfaces 105 and the bearing surface facing sliding contact surface of the bearing body 101, are provided.
    • 5. 发明专利
    • BALANCING DEVICE FOR ROTATING BODY
    • JPH0932885A
    • 1997-02-04
    • JP18551595
    • 1995-07-21
    • MITSUBISHI HEAVY IND LTD
    • MATSUMOTO IWAOFURUKAWA TOYOAKIGOTOU MITSUNARIIDAKA HIDEHIKOKOGA MASANORI
    • F16F15/32F16F15/36
    • PROBLEM TO BE SOLVED: To adjust the balance of a rotating body without stopping the body by rotating or moving to and from a plurality of balancing weights attached to an axial center member of the rotating body in such a manner as to, from the outside of the rotating body, be rotated or moved to and from in the radial direction of the rotating body. SOLUTION: When an umbalance happens on a rotating body 1, if an pinion 8 is rotated without stopping the rotating body 1, a member 7 moving in an axial direction and engaging with the pinion 8 is moved to move an axial central member 5 in an axial direction via a roller bearing 6. The axial center member 5 is supported at several points by positioning members 3 in a radial direction and the amount of displacement is converted to the amount of revolution of an eccentric disk 4 by a screw in the eccentric disk 4. Threads of different lead angles according to two eccentric disks 4 are cut on the axial center member 5 and the eccentric disks 4 are rotated in a peripheral direction at different speed. The eccentric disks 4 are positioned by a positioning member 2 in an axial direction and a spacer 10. The balance of the rotating body is adjusted by the above described constitution without stopping it.