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    • 1. 发明授权
    • Electromagnetic flow meter
    • 电磁流量计
    • US5207105A
    • 1993-05-04
    • US538092
    • 1990-06-14
    • Masao FukunagaIkuo UematsuMasahiro IkegawaMasayuki Kaiho
    • Masao FukunagaIkuo UematsuMasahiro IkegawaMasayuki Kaiho
    • G01F1/58G01F1/60G01F25/00
    • G01F25/0007G01F1/58G01F1/588G01F1/60
    • An apparatus in which a magnetic field is generated by an excitation coil provided in the outside of a conduit and electromotive force generated in electrodes attached on the conduit is detected to thereby measure a flow rate of a fluid flowing in the conduit, in which the conduit is made thinner in a manner so that a ratio of the axial length of the conduit to the inside diameter of the conduit is set to a value within a range of from 0.2 to 1.0, and in which correction data previously analyzed in accordance with magnetic permeability and inside surface conductivity of a mate piping to which the conduit is to be connected are stored so that a detection signal from the electrodes is corrected on the basis of the correction data to thereby measure the flow rate of the fluid flowing in the conduit.
    • 检测由设置在导管外部的励磁线圈产生磁场的装置,并且检测在连接在导管上的电极中产生的电动势,从而测量在导管中流动的流体的流量,其中导管 以使导管的轴向长度与导管的内径的比率设定为0.2〜1.0的范围内的值的方式变薄,并且其中根据磁导率先前分析的校正数据 存储要将导管连接到的配合管道的内表面电导率,以便根据校正数据校正来自电极的检测信号,从而测量在管道中流动的流体的流量。
    • 2. 发明授权
    • Winding structure for static electrical induction apparatus
    • 静电感应装置绕组结构
    • US4245206A
    • 1981-01-13
    • US888996
    • 1978-03-22
    • Takahiro DaikokuMasahiro IkegawaWataru NakayamaTaisei Uede
    • Takahiro DaikokuMasahiro IkegawaWataru NakayamaTaisei Uede
    • H01F27/08H01F27/32
    • H01F27/322H01F27/08
    • Winding structure for static electrical induction apparatus such as transformers, reactors, or the like. A winding assembly is disposed in a space formed between a pair of inner and outer insulation continuous walls which are disposed in a container so as to commonly include the vertical axis of the container thereby defining the space therebetween. An inner vertical coolant passage is formed between the winding assembly and the inner insulation wall and an outer vertical coolant passage is also formed between the winding assembly and the inner insulation wall. The winding assembly is composed of a plurality of coil units stacked on one another in the vertical direction with separation at predetermined intervals so as to form horizontal coolant passages between vertically adjacent ones of the coil units, the inner and outer vertical coolant passages communicating with each other through the horizontal coolant passages.A plurality of coolant flow control members are disposed in discrete relation from one another in at least selected one of the inner and outer vertical coolant passages in a manner so that a horizontal sectional area of the selected vertical coolant passage is decreased periodically at a pitch of nP along the vertical direction where n represents an integer which is not smaller than two (2) and P represents a pitch of the coil units along the vertical direction.Further, each of the coil units may be divided into at least two, inner and outer, coil sub-units disposed concentrically with each other in a common horizontal plane to thereby additionally form an intermediate vertical coolant passage between the vertically stacked inner coil sub-units and the vertically stacked outer coil sub-units. The coolant flow control members are disposed only in this intermediate vertical coolant passage to decrease periodically the horizontal sectional area thereof at the pitch of nP in the same manner as mentioned above.
    • 用于诸如变压器,电抗器等的静电感应装置的绕组结构。 绕组组件设置在形成在一对内绝缘连续壁和外绝缘连续壁之间的空间中,所述间隔件设置在容器中,以便共同地包括容器的垂直轴线,从而限定其间的空间。 内部垂直冷却剂通道形成在绕组组件和内绝缘壁之间,并且外部垂直冷却剂通道也形成在绕组组件和内绝缘壁之间。 绕组组件由沿垂直方向彼此叠置的多个线圈单元组成,并以预定间隔隔开,以在垂直相邻的线圈单元之间形成水平冷却剂通道,内和外垂直冷却剂通道与每个线圈单元连通 其他通过水平冷却剂通道。 多个冷却剂流量控制构件以内部和外部垂直冷却剂通道中的至少一个中的至少一个中的彼此离散的关系设置,使得所选择的垂直冷却剂通道的水平截面面积以 nP,其中n表示不小于2(2)的整数,P表示线圈单元沿垂直方向的间距。 此外,每个线圈单元可以被划分为在共同的水平平面中彼此同心设置的至少两个内部和外部线圈子单元,从而在垂直堆叠的内部线圈子单元之间另外形成中间垂直冷却剂通道, 单元和垂直堆叠的外部线圈子单元。 冷却剂流量控制构件仅设置在该中间垂直冷却剂通道中,以与上述相同的方式以nP的间距周期性地减小其水平截面面积。
    • 4. 发明授权
    • Winding structure for static electrical induction apparatus
    • US4363012A
    • 1982-12-07
    • US192328
    • 1980-09-29
    • Takahiro DaikokuMasahiro IkegawaWataru NakayamaTaisei Uede
    • Takahiro DaikokuMasahiro IkegawaWataru NakayamaTaisei Uede
    • H01F27/08H01F27/32
    • H01F27/322H01F27/08
    • Winding structure for static electrical induction apparatus such as transformers, reactors, or the like. A winding assembly is disposed in a space formed between a pair of inner and outer insulation continuous walls which are disposed in a container so as to commonly include the vertical axis of the container thereby defining the space therebetween. An inner vertical coolant passage is formed between the winding assembly and the inner insulation wall and an outer vertical coolant passage is also formed between the winding assembly and the inner insulation wall. The winding assembly is composed of a plurality of coil units stacked on one another in the vertical direction with separation at predetermined intervals so as to form horizontal coolant passages between vertically adjacent ones of the coil units, the inner and outer vertical coolant passages communicating with each other through the horizontal coolant passages.A plurality of coolant flow control members are disposed in discrete relation from one another in at least selected one of the inner and outer vertical coolant passages in a manner so that a horizontal sectional area of the selected vertical coolant passage is decreased periodically at a pitch of nP along the vertical direction where n represents an integer which is not smaller than two (2) and P represents a pitch of the coil units along the vertical direction.Further, each of the coil units may be divided into at least two, inner and outer, coil sub-units disposed concentrically with each other in a common horizontal plane to thereby additionally form an intermediate vertical coolant passage between the vertically stacked inner coil sub-units and the vertically stacked outer coil sub-units. The coolant flow control members are disposed only in this intermediate vertical coolant passage to decrease periodically the horizontal sectional area thereof at the pitch of nP in the same manner as mentioned above.
    • 5. 发明授权
    • Electrical apparatus winding
    • 电器绕组
    • US4431980A
    • 1984-02-14
    • US423447
    • 1982-09-24
    • Masahiro IkegawaTakahiro DaikokuWataru NakayamaTaisei Uede
    • Masahiro IkegawaTakahiro DaikokuWataru NakayamaTaisei Uede
    • H01F27/32H05K7/20
    • H01F27/322Y10S505/88
    • A plurality of winding units each composed of a wire element are serially arranged in the axial direction of the winding between an inner insulating sleeve and an outer insulating sleeve, and vertical cooling paths are formed on opposite sides of each winding unit and horizontal cooling paths are formed between adjacent winding units. The winding units are divided into a plurality of winding sub-units to define a central vertical cooling path therebetween, which central vertical cooling path includes a via flow path and a branch inducing flow path, whereby cooling fluid flows in opposite directions and at substantially the same speed in the horizontal cooling paths along upper and lower surfaces of each of the winding units having the branch inducing flow path. In this manner, the entire winding is uniformly cooled.
    • 由线元件构成的多个绕组单元在内绝缘套筒和外绝缘套筒之间的绕组的轴向上串联布置,并且垂直冷却路径形成在每个卷绕单元的相对侧上,并且水平冷却路径 形成在相邻的卷绕单元之间。 卷绕单元被分成多个绕组子单元以在其间限定中心垂直冷却路径,该中心垂直冷却路径包括通路流动路径和分支引导流动路径,由此冷却流体在相反方向和基本上 在具有分支引导流动路径的每个绕组单元的上表面和下表面的水平冷却路径中具有相同的速度。 以这种方式,整个绕组被均匀地冷却。
    • 6. 发明授权
    • Winding structure for static electrical induction apparatus
    • 静电感应装置绕组结构
    • US4363013A
    • 1982-12-07
    • US192329
    • 1980-09-29
    • Takahiro DaikokuMasahiro IkegawaWataru NakayamaTaisei Uede
    • Takahiro DaikokuMasahiro IkegawaWataru NakayamaTaisei Uede
    • H01F27/08H01F27/32
    • H01F27/322H01F27/08
    • Winding structure for static electrical induction apparatus such as transformers, reactors, or the like. A winding assembly is disposed in a space formed between a pair of inner and outer insulation continuous walls which are disposed in a container so as to commonly include the vertical axis of the container thereby defining the space therebetween. An inner vertical coolant passage is formed between the winding assembly and the inner insulation wall and an outer vertical coolant passage is also formed between the winding assembly and the inner insulation wall. The winding assembly is composed of a plurality of coil units stacked on one another in the vertical direction with separation at predetermined intervals so as to form horizontal coolant passages between vertically adjacent ones of the coil units, the inner and outer vertical coolant passages communicating with each other through the horizontal coolant passages.A plurality of coolant flow control members are disposed in discrete relation from one another in at least selected one of the inner and outer vertical coolant passages in a manner so that a horizontal sectional area of the selected vertical coolant passage is decreased periodically at a pitch of nP along the vertical direction where n represents an integer which is not smaller than two (2) and P represents a pitch of the coil units along the vertical direction.Further, each of the coil units may be divided into at least two, inner and outer, coil sub-units disposed concentrically with each other in a common horizontal plane to thereby additionally form an intermediate vertical coolant passage between the vertically stacked inner coil sub-units and the vertically stacked outer coil sub-units. The coolant flow control members are disposed only in this intermediate vertical coolant passage to decrease periodically the horizontal sectional area thereof at the pitch of nP in the same manner as mentioned above.
    • 用于诸如变压器,电抗器等的静电感应装置的绕组结构。 绕组组件设置在形成在一对内绝缘连续壁和外绝缘连续壁之间的空间中,所述间隔件设置在容器中,以便共同地包括容器的垂直轴线,从而限定其间的空间。 内部垂直冷却剂通道形成在绕组组件和内绝缘壁之间,并且外部垂直冷却剂通道也形成在绕组组件和内绝缘壁之间。 绕组组件由沿垂直方向彼此叠置的多个线圈单元组成,并以预定间隔隔开,以在垂直相邻的线圈单元之间形成水平冷却剂通道,内和外垂直冷却剂通道与每个线圈单元连通 其他通过水平冷却剂通道。 多个冷却剂流量控制构件以内部和外部垂直冷却剂通道中的至少一个中的至少一个中的彼此离散的关系设置,使得所选择的垂直冷却剂通道的水平截面面积以 nP,其中n表示不小于2(2)的整数,P表示线圈单元沿垂直方向的间距。 此外,每个线圈单元可以被划分为在共同的水平平面中彼此同心设置的至少两个内部和外部线圈子单元,从而在垂直堆叠的内部线圈子单元之间另外形成中间垂直冷却剂通道, 单元和垂直堆叠的外部线圈子单元。 冷却剂流量控制构件仅设置在该中间垂直冷却剂通道中,以与上述相同的方式以nP的间距周期性地减小其水平截面面积。