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    • 6. 发明申请
    • Bucket Connection for a Turbine Runner
    • 用于涡轮机的铲斗连接
    • US20140255195A1
    • 2014-09-11
    • US14349879
    • 2012-10-03
    • Dynavec AS
    • Hans Jorgen JorgensenAre Johan Simonsen
    • F01D5/22
    • F01D5/22F03B1/02Y02E10/223
    • A bucket connection for a turbine runner (1) where the turbine runner (1) includes a number of buckets (4) encircling a centre disk (2), where at least one bucket (4) is pivotably or hingedly connected to the centre disk (2), and where the position of the bucket (4) relatively the centre disk (2) under operation is set by an abutment (22) between the bucket (4) and a support (16), where the support (16) is connected to or constitutes a part of the centre disk (2), and where the abutment is constituted by an abutment surface 18 on the support 16 and an abutment surface 20 on the bucket 4, where the abutment surface 18 on the support 16 is non-planar, in that it is provided with a buckling 19, and that the abutment surface 20 of the bucket 4 is provided with a buckling 21 adapted to fit into the buckling 19 of the abutment surface 18 of the support 16, whereby the abutment 22 is adapted to accommodate forces acting both tangentially and radially of the bucket 4.
    • 一种用于涡轮机叶轮(1)的铲斗连接件,其中涡轮机转轮(1)包括围绕中心盘(2)的多个铲斗(4),其中至少一个铲斗(4)可枢转地或铰接地连接到中心盘 (2),并且所述铲斗(4)相对于所述中心盘(2)在运行中的位置由所述铲斗(4)和支撑件(16)之间的抵接件(22)设定,其中所述支撑件(16) 连接到或构成中心盘(2)的一部分,并且其中支座由支撑件16上的邻接表面18和在铲斗4上的抵靠表面20构成,其中支撑件16上的邻接表面18是 非平面的,因为它设置有弯曲19,并且铲斗4的邻接表面20设置有弯曲21,其适于装配到支撑件16的邻接表面18的弯曲部19中,由此抵靠 22适于容纳作用于铲斗4的切向和径向的力。
    • 7. 发明申请
    • Generating set utilizing falling water flow
    • 发电机组利用落水流量
    • US20060290139A1
    • 2006-12-28
    • US10531335
    • 2004-01-16
    • Akio Takeuchi
    • Akio Takeuchi
    • F03B13/00
    • F03B7/006F03B1/02Y02E10/223
    • Falling water flow entering from an introduction port (12) into the inside of a cylindrical frame (10) is introduced into each of a plurality of buckets (30), the openings (32) of which face in the upward direction, lined up on an outer surface of one side of a circulating portion (22) of a conveyor disposed inside the cylindrical frame (10) along a passage through which the falling water flow passes. Then, the circulating portion (22) of the conveyor on which the buckets (30) are provided is circulated by kinetic energy and potential energy of the falling water flow introduced into the buckets (30). As a result, a generator (40) connected to a rotary shaft (24) which circulatably supports the conveyer (20) and rotates with the circulation of the conveyer (20) is revolved, thereby generating electric power.
    • 从引入口(12)进入圆柱形框架(10)内部的下降的水流被引入到多个铲斗(30)中的每一个中,其中开口(32)面向上方,排列在 输送机的循环部分(22)的一侧的外表面沿着下水流通过的通道设置在圆柱形框架(10)的内部。 然后,其上设置有桶(30)的输送机的循环部分(22)通过引入桶(30)的下降水流的动能和势能循环。 结果,连接到旋转轴(24)的发电机(40)旋转地支撑输送机(20)并与输送机(20)的循环一起旋转,从而产生电力。
    • 9. 发明授权
    • Method for assembling a pelton turbine wheel
    • 珀尔顿涡轮机组合方法
    • US06655919B2
    • 2003-12-02
    • US10129792
    • 2002-05-10
    • Georges RossiLouis FinetFrancis FreynetBernard Michel
    • Georges RossiLouis FinetFrancis FreynetBernard Michel
    • F03B102
    • F03B1/02F05B2230/60Y02E10/223Y02P70/525Y10T29/49321
    • The invention concerns a method which consists in: pre-positioning, in a housing (7) of a flange (5), a bucket (2) supported by part (23) of its outer surface (23) against an edge (71) of the housing (7) providing a space (E′) between the convex surface (23B) of the outer radial part (2B) of the bucket (2) and said edge (71); producing an articulated linkage (15) of the bucket (2) on the rim (1) and/or the flange (5) on the inside (2A) of the bucket (2); exerting on the outer radial part (2B) of the bucket (2) a first calibrated force to bring it closer to the edge (71); determining the distance (e) between said outer radial part (2B) and said edge (71) under said force; slackening said force; arranging, between said outer radial part (2B) and said edge (71), a wedge (53) having a thickness substantially equal to said distance (e); and exerting on the outer radial part (2B) of the bucket a second force (F2) to bringing it closer to the edge and maintaining said second force (F2) which has an intensity not less than that of the first force.
    • 本发明涉及一种方法,该方法包括:在凸缘(5)的壳体(7)中预定位在其外表面(23)的部分(23)上抵靠边缘(71)支撑的铲斗(2) 所述壳体(7)在所述铲斗(2)的外径向部分(2B)的凸面(23B)和所述边缘(71)之间提供空间(E'); 在所述轮辋(1)和/或所述铲斗(2)的内侧(2A)上的所述凸缘(5)上产生所述铲斗(2)的铰接连杆机构(15)。 在铲斗(2)的外径向部分(2B)上施加第一校准力以使其更靠近边缘(71); 在所述力下确定所述外部径向部分(2B)和所述边缘(71)之间的距离(e); 力量松懈 在所述外部径向部分(2B)和所述边缘(71)之间布置具有基本上等于所述距离(e)的厚度的楔形物(53); 并且在铲斗的外径向部分(2B)上施加第二力(F2)以使其更接近边缘并保持具有不小于第一力的强度的所述第二力(F2)。