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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
    • 3. 发明专利
    • Vertical shaft magnus type wind turbine generator
    • 垂直轴类型风力涡轮发电机
    • JP2010121518A
    • 2010-06-03
    • JP2008295692
    • 2008-11-19
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • YOSHINAGA TAKASUKEFURUKAWA TOYOAKI
    • F03D7/06F03D3/06
    • Y02E10/74
    • PROBLEM TO BE SOLVED: To provide a vertical shaft Magnus type wind turbine generator which has good startability irrespective of wind speed and can efficiently generate power. SOLUTION: This generator includes a wind direction measuring means measuring wind direction of air flow acting on a cylindrical blade, an azimuth angle measuring means measuring azimuth angle of the cylindrical blade circulating on a circular trajectory having a center on a generator axis, and a wind speed measuring means measuring wind speed of the air flow acting on the cylindrical blade. Slippage of a cylindrical blade position and the wind direction is detected based on the wind direction, the azimuth angle, and the wind speed measured by the measuring means, rotation speed of the cylindrical blade is determined, and a motor rotating the cylindrical blade is respectively controlled based on the slippage of the cylindrical blade position and wind direction, and the rotation speed of the cylindrical blade. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种垂直轴Magnus型风力发电机,其与风速无关地具有良好的起动性,并且可以有效地发电。 解决方案:该发生器包括测量作用在圆柱形刀片上的气流的风向的风向测量装置,测量在具有发电机轴上的中心的圆形轨迹上循环的圆柱形刀片的方位角的方位角测量装置, 风速测量装置,用于测量作用在圆柱形叶片上的气流的风速。 基于由测量装置测量的风向,方位角和风速来检测圆柱形刀片位置和风向的滑动,确定圆柱形刀片的转速,并且分别旋转圆柱形刀片的电动机 基于圆柱形刀片位置和风向的滑动以及圆柱形刀片的旋转速度来控制。 版权所有(C)2010,JPO&INPIT
    • 6. 发明专利
    • Wind mill device
    • 风机设备
    • JP2003083233A
    • 2003-03-19
    • JP2001279731
    • 2001-09-14
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • FURUKAWA TOYOAKISHIBATA MASAAKIHAYASHI YOSHIYUKIYATOMI YUJIMIYAKE HISAOHAYAKAWA HIROSHI
    • F03D11/02F03D1/04F03D1/06F03D7/04F03D11/04
    • Y02E10/721Y02E10/723
    • PROBLEM TO BE SOLVED: To provide a wind mill device capable of increasing a motive power of a wind mill by increasing a passing area of wind at the wind mill while inhibiting an increase of blade length. SOLUTION: The wind mill device is constituted such that a wind power is made to act on a plurality of blades supported by a blade support member and a rotation force of the blades is transmitted to a wind mill shaft constituting an output shaft through the blade support member. The blade support member is constituted to an annular shape and a plurality of blades are mounted to an outer periphery thereof respectively. A rotation force transmission mechanism for connecting the blade support member and the wind mill shaft is provided in a space formed at the inside of the blade support member and is provided with an inner rotation member comprising the wind mill shaft or a connection rotation body connected to the wind mill shaft, and a connection member for connecting an outer periphery of the inner rotation member and an inner periphery of the blade support member.
    • 要解决的问题:提供一种能够通过在风车上增加风的通过面积同时抑制叶片长度的增加来增加风力发电机的动力的风车装置。 解决方案:风车装置构成为使得风力作用在由叶片支撑构件支撑的多个叶片上,并且叶片的旋转力通过叶片支撑件传递到构成输出轴的风车轴上 会员。 叶片支撑构件被构造成环形,并且多个叶片分别安装到其外周。 在叶片支撑构件的内侧形成的空间设置有用于连接叶片支撑构件和风车轴的旋转力传递机构,并且设置有内部旋转构件,该内部旋转构件包括风车轴或连接旋转体, 风车轴,以及用于连接内旋转构件的外周和叶片支撑构件的内周的连接构件。
    • 7. 发明专利
    • Power generation system
    • 发电系统
    • JP2010133284A
    • 2010-06-17
    • JP2008307830
    • 2008-12-02
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • TSUTSUMI MASANORIKANAHOSHI TAKAYUKIFURUKAWA TOYOAKI
    • F01K23/14F01D15/12F01K23/10F01K23/16F01N5/00F01N5/02
    • Y02E20/16Y02T10/16
    • PROBLEM TO BE SOLVED: To provide a power generation system suppressing occurrence of misalignment in an SSS (Synchro Self Shifting) clutch switching whether or not rotation is to be transmitted.
      SOLUTION: This power generation system includes: a power turbine taking out output from exhaust gas supplied from a motor; a first output shaft transmitting rotation output from the power turbine; a first speed reduction gear connected to the first output shaft; a steam turbine taking out output from exhaust heat supplied from the motor; a second output shaft transmitting rotation output from the steam turbine; a second speed reduction gear connected to the second output shaft; a generator connected to the steam turbine through the second speed reduction gear; and the SSS clutch connected to the power turbine through the first speed reduction gear and connected to the steam turbine through the second speed reduction gear.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了提供抑制SSS(同步自动换档)离合器切换中的不对准的发电系统,是否传送旋转。 解决方案:该发电系统包括:动力涡轮机,从电动机提供的排气中输出; 从动力涡轮机传递旋转输出的第一输出轴; 连接到第一输出轴的第一减速齿轮; 蒸汽涡轮机从电动机提供的排气热量输出; 第二输出轴,其传递来自所述蒸汽轮机的旋转输出; 连接到第二输出轴的第二减速齿轮; 通过第二减速装置连接到蒸汽轮机的发电机; 并且SSS离合器通过第一减速齿轮连接到动力涡轮机,并通过第二减速齿轮连接到蒸汽轮机。 版权所有(C)2010,JPO&INPIT
    • 9. 发明专利
    • Device and method for operating windmill
    • 用于操作WINDMILL的设备和方法
    • JP2007146858A
    • 2007-06-14
    • JP2007027388
    • 2007-02-06
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • SHIBATA MASAAKIFURUKAWA TOYOAKIHAYASHI YOSHIYUKIYATOMI YUJITSUTSUMI KAZUHISA
    • F03D7/04F03D9/00F03D11/02
    • Y02E10/723
    • PROBLEM TO BE SOLVED: To provide an operation device for a windmill and its operation method for preventing the breakage of a blade by avoiding an excessive and irregular load such as a load in the oblique direction to work on a blade even if a power failure occurs when a strong wind acts on it. SOLUTION: This operation device for the windmill is provided with a supporting column 106 erected on an installation face on the ground or on a ship, a windmill body 100A provided with a nacelle 102 supported so as to turn freely in the horizontal direction of turn, a rotor 105 provided with a plurality of blades and rotated by wind power, and a power generator stored in the nacelle 102 and connected with the rotor 105, a turn driving mechanism 4 for turning the windmill body 100A, and a brake device for suppressing the turn of the windmill body. In this operation method for the windmill for rotating the rotor connected with the power generator by wind power received by the blade 101, the windmill body is turned at least until the rotor comes on a down wind (leeward) side, and then the turn of the windmill body follows the direction of wind naturally. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种用于风车的操作装置及其操作方法,用于通过避免诸如倾斜方向上的负载的过大和不规则的负载来防止叶片的破损,以便在刀片上工作,即使 发生强风时发生电源故障。 解决方案:该风车的操作装置设置有竖立在地面或船上的安装面上的支柱106,风车主体100A,其具有被支撑以在水平方向上自由转动的机舱102 设置有多个叶片并通过风力转动的转子105以及存储在机舱102中并与转子105连接的发电机,用于转动风车主体100A的转向驱动机构4以及制动装置 用于抑制风车车身转弯。 在这种用于通过由叶片101接收的风力使与发电机连接的转子旋转的风车的操作方法中,风车主体至少转动直到转子处于下风(背风)侧,然后转动 风车身体自然地沿着风的方向。 版权所有(C)2007,JPO&INPIT
    • 10. 发明专利
    • Wind mill having nacell structure
    • 具有NACELL结构的风力发电机
    • JP2003336572A
    • 2003-11-28
    • JP2003045602
    • 2003-02-24
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • SHIBATA MASAAKIHAYASHI YOSHIYUKIKATO EIJIFURUKAWA TOYOAKI
    • F03D11/00F03D1/06
    • Y02E10/721
    • PROBLEM TO BE SOLVED: To provide a structure of a wind mill vane having sufficient strength for an even unexpected large load and high durability and capable of reducing the thickness of a wall of the vane and miniaturizing the vane to improve the performance of the vane and achieve the high efficiency of a wind mill and suppressing noise caused by a Karman's vortex street. SOLUTION: In this wind mill vane, the vane is constituted by an integral vane made of a metallic material or is constituted into a divided type vane composed by a vane main body made of the metallic material and a rear part member made of a second metallic material different from that of the vane main body and fixed to a rear part of the vane main body. A tooth-shaped part is formed in a rear fringe part of the vane. The tooth-shaped part such as triangular tooth serration, a trapezoidal tooth, etc., is formed along the direction of vane length in the rear fringe part of the vane. A ratio of height h of the tooth in the tooth-shaped part to thickness δ of a vane face boundary layer on a vane surface (h/δ) is set to be h/δ=1.0 to 10.0, and a ratio of the height h of the tooth to pitch p of the tooth (h/p) is set to be h/p=0.5 to 5.0. COPYRIGHT: (C)2004,JPO
    • 要解决的问题:为了提供具有足够强度的风车叶片的结构,用于甚至意想不到的大负载和高耐久性,并且能够减小叶片的壁厚度并使叶片小型化,以提高叶片的性能 风力发电机,实现了风力发电机的高效率,抑制了卡门涡街造成的噪音。 解决方案:在该风车叶片中,叶片由金属材料制成的一体式叶片构成,或构成为由金属材料制成的叶片主体构成的分割型叶片, 与叶片主体不同的第二金属材料,固定在叶片主体的后部。 在叶片的后缘部形成有齿形部。 在叶片的后边缘部分沿着叶片长度的方向形成诸如三角形齿锯齿,梯形齿等的齿形部分。 齿形部分的齿的高度h与叶片表面上的叶片面边界层的厚度δ(h /δ)的比率设定为h /δ= 1.0〜10.0,高度 齿的间距p(h / p)的h被设定为h / p = 0.5〜5.0。 版权所有(C)2004,JPO