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    • 1. 发明申请
    • 磁気回路部品の温度調整装置
    • 磁路部件的温度调节装置
    • WO2017159150A1
    • 2017-09-21
    • PCT/JP2017/004936
    • 2017-02-10
    • 株式会社デンソー
    • 坂本 章近藤 尚弥
    • H01F27/10H01F27/24H01F37/00
    • H01F27/10H01F27/24H02M1/32H02M7/53875H02M2001/0048H02M2001/007H02M2001/327H05K7/20927H05K7/20945
    • 電力変換装置(1)に組込まれ、磁性コア(15)と、この磁性コア(15)に巻装されたコイル(16)とを含む磁気回路部品(10)の、温度を調整するための磁気回路部品の温度調整装置は、前記磁気回路部品(10)を冷却するための冷却装置(25,72)と、前記磁気回路部品(10)の温度を推定する温度推定装置(19)と、前記磁気回路部品(10)の温度と損失との関係から損失が小さくなる目標温度を決定する目標温度決定装置(36)と、前記温度推定装置(19)が推定した前記磁気回路部品(10)の温度が、前記目標温度よりも低い所定温度以下であったときに、前記目標温度となるように前記冷却装置(25)による該磁気回路部品の冷却を抑制する冷却抑制装置(34,46,51,79)とを備える。
    • (1)中并且包括磁芯(15)和绕在磁芯(15)上的线圈(16)的磁路部件(10) ,用于调节温度的磁路部件的温度调节装置包括用于冷却磁路部件(10)的冷却装置(25,72),估算磁路部件(10)的温度的温度 目标温度确定装置(36),用于基于磁路部件(10)的温度和损耗之间的关系来确定损失降低的目标温度;温度估计装置 一种冷却回路,用于通过冷却装置抑制磁路部件的冷却,从而当磁路部件的温度低于低于目标温度的预定温度时获得目标温度, 抑制器(34,46,51,79)和 提供。
    • 5. 发明申请
    • AN APPARATUS AND METHOD FOR COOLING AND RECOVERING HEAT FROM CABLES AND TRANSFORMERS
    • 一种用于从电缆和变压器冷却和回收热量的装置和方法
    • WO2012059772A1
    • 2012-05-10
    • PCT/GB2011/052155
    • 2011-11-07
    • MURPHY, Craig
    • MURPHY, Craig
    • H01B7/42H01F27/10F24D12/00
    • H05K7/209F24D3/18F24D2200/11F24D2200/16F24D2200/29H01B7/423H01F27/10H02G3/03Y02B10/40Y02B10/70Y02B30/12Y02B30/52
    • The present invention provides an apparatus (100) and method for cooling and recovering heat energy from power cables and/or transformers. The apparatus (100) comprises a first conduit (102) in thermal contact with at least one electrical power cable (104) and/or at least one transformer, a heat transfer device (106) coupled to the first conduit (102), fluid circulating means (112) and a heating circuit (114) coupled to the heat transfer device (106) for interfacing with an external heating system (126), such as those typically installed in domestic or commercial premises (128). When in use, the circulating means (112) is operable to circulate a fluid through the first conduit (102) to thereby enable the heat transfer device (106) to recover at least a portion of the heat energy of the cable (104) and/or transformer from the heated fluid for subsequent reuse by an external heating system (126) via the heating circuit (114). The apparatus and method are found to be particularly suited for the recovery and reuse of wasted heat from subterranean high-tension power cables and above surface substation transformers, while cooling the equipment to improve operational performance and lifetime.
    • 本发明提供一种用于从电力电缆和/或变压器冷却和回收热能的装置(100)和方法。 装置(100)包括与至少一根电力电缆(104)和/或至少一个变压器热传导的第一导管(102),耦合到第一导管(102)的传热装置(106),流体 循环装置(112)和联接到传热装置(106)的加热回路(114),用于与通常安装在家庭或商业场所(128)中的外部加热系统(126)接口。 当使用时,循环装置(112)可操作以使流体循环通过第一导管(102),从而使传热装置(106)能够恢复电缆(104)的热能的至少一部分和 /或来自加热流体的变压器,用于经由加热电路(114)由外部加热系统(126)再次使用。 发现该装置和方法特别适用于从地下高压电力电缆和上述地面变电站变压器中回收和再利用浪费的热量,同时冷却设备以提高操作性能和使用寿命。
    • 7. 发明申请
    • AN ELECTROMAGNETIC COIL AND SYSTEM FOR MAKING SAME
    • 一种用于制造它的电磁线圈和系统
    • WO2006113972A1
    • 2006-11-02
    • PCT/AU2006/000549
    • 2006-04-27
    • BAGLIN, Geoffrey, Michael
    • BAGLIN, Geoffrey, Michael
    • B66C1/04B66C1/08B66C1/06H01F7/00
    • H02K15/0435B66C1/06H01F7/206H01F27/10H01F27/2871H01F27/2876H01F27/323H01F41/066H01F41/077H02K3/24
    • Provided is an electromagnetic device (100) and a system (10) for making a coil (12) of the device. The coil has one or more tubular electric conductors (20) formed with at least one internal coolant passage (38) and the conductor(s) are wound to form one or more layers of turns separated by an insulation film. The system includes the steps of (a) feeding at least one hollow tubular conductor to travel along a path through a first forming station and a second forming station;(b) at said second station subjecting said conductor to forces deforming the conductor in a second plane that is substantially orthogonal to said first plane, and whereby said deformed conductor having its internal coolant passage formed with a substantially polygonal shaped cross-section; and (c) a coiling station arranged for forming the deformed conductor into a coil having one or more turns.
    • 提供一种用于制造该装置的线圈(12)的电磁装置(100)和系统(10)。 线圈具有形成有至少一个内部冷却剂通道(38)的一个或多个管状电导体(20),并且导体缠绕以形成由绝缘膜分开的一个或多个匝层。 该系统包括以下步骤:(a)馈送至少一个中空管状导体,以沿着通过第一成形站和第二成形站的路径行进;(b)在所述第二站处使所述导体强制使第二导体变形 平面,其基本上垂直于所述第一平面,并且由此所述变形的导体的内部冷却剂通道形成为大致多边形的横截面; 和(c)卷绕站,其布置成将变形的导体形成为具有一个或多个匝的线圈。
    • 8. 发明申请
    • HEAT EXCHANGER FOR A TRANSFORMER
    • 热交换用于变压器
    • WO2006050886A3
    • 2006-09-08
    • PCT/EP2005011876
    • 2005-11-07
    • ABB TECHNOLOGY AGBERCEA EMILASTROEM BO
    • BERCEA EMILASTROEM BO
    • H01F27/08F28F19/00F28F27/00
    • F28F27/00F28D2021/0031F28F2265/18H01F27/10
    • The invention relates to a heat exchanger for a transformer for a transformer comprising a heat exchanger medium, which can be introduced into a heat exchanging element (16) via a feed element (12), and can be evacuated from the heat exchanging element (16) via a discharge element (22). The invention involves a first temperature measurement of a feed flow of the heat exchanger medium and a second temperature measurement of a discharge flow of the heat exchanger medium. A first opening (24) is provided in the feed element (12), inside of which a first temperature probe is positioned at a predetermined location inside the feed flow during operation of the heat exchanger, and a second opening (30) is provided in the discharge element (22), inside of which a second temperature probe (34) is positioned at a predetermined location in the discharge flow during operation of the heat exchanger.
    • 本发明涉及一种热交换器用于与热交换介质的变压器,这是在一个热交换元件的馈电元件(12)(16)herausleitbar hineinleitbar和从热交换元件(16)的流动元件(22),其包括热交换介质的进料流的第一温度测量 和热交换介质的漏极电流的第二温度测量。 第一开口(24)被设置在所述入口件(12),其中,所述换热器的操作过程中在预定的点处的第一温度传感器被定位在所述进料流中,并且在漏元件的第二开口(30),(22)被布置在所述 在热交换器(34)的操作的第二温度探测器被定位在流动流中的预定位置。
    • 9. 发明申请
    • APPARATUS AND METHOD FOR COOLING POWER TRANSFORMERS
    • 用于冷却电力变压器的装置和方法
    • WO01037292A1
    • 2001-05-25
    • PCT/US2000/031810
    • 2000-11-17
    • H01F27/16F25B15/00F25B25/00H01F27/10H01F27/12
    • H01F27/12F25B15/00F25B25/005F25B2333/007F25B2400/24H01F27/10Y02A30/277Y02B30/62
    • A system (27) for reducing the temperature of cooling oil for a power transformer (12) includes a heat exchanger (44) interposed in the cooling oil system. The heat exchanger (44) relies upon a liquid-to-liquid exchange of heat from the heated oil to a coolant flowing through the heat exchanger. In one embodiment, the coolant provided to the heat exchanger is obtained from an absorption chiller (65). Heat energy is provided to the chiller (65) from a heat storage device (80). In a specific embodiment, the heat storage source (80) can be a phase change material device. In a preferred cooling system, a programmable controller (55) determines the activation and operation of the system. The controller (55) can sense transformer or cooling oil temperature to trigger activation. In a preferred embodiment, the controller (55) compares a current temperature history against a temperature profile to anticipate increased cooling requirements. In certain embodiment, excess, off-peak or waste heat from the transformer (12) itself is provided to the heat storage device (80) or to the phase change heat exchanger.
    • 用于降低电力变压器(12)的冷却油的温度的系统(27)包括置于冷却油系统中的热交换器(44)。 热交换器(44)依赖于从加热的油到流过热交换器的冷却剂的液体与液体之间的热交换。 在一个实施例中,提供给热交换器的冷却剂由吸收式制冷机(65)获得。 从蓄热装置(80)向制冷机(65)提供热能。 在具体实施例中,蓄热源(80)可以是相变材料装置。 在优选的冷却系统中,可编程控制器(55)确定系统的激活和操作。 控制器(55)可以感测变压器或冷却油温度以触发激活。 在优选实施例中,控制器(55)将当前温度历史与温度曲线进行比较以预测增加的冷却需求。 在某些实施例中,来自变压器(12)本身的过量,非高峰或废热被提供给蓄热装置(80)或相变热交换器。
    • 10. 发明申请
    • CORE-FORM TRANSFORMER WITH LIQUID COOLANT FLOW DIVERSION BANDS
    • 具有液体冷却液流量转换器的核心变压器
    • WO1994012993A1
    • 1994-06-09
    • PCT/US1993010753
    • 1993-11-08
    • ELECTRIC POWER RESEARCH INSTITUTE, INC.
    • ELECTRIC POWER RESEARCH INSTITUTE, INC.KOTHMANN, Richard, E.WHIRLOW, Donald, K.
    • H01F27/10
    • H01F27/322H01F27/10
    • A core-form transformer winding (21) with liquid coolant flow diversion bands (60) is disclosed. The apparatus includes a winding tube (22) with a central longitudinal axis. A number of coil sections (26) are axially displaced along the central longitudinal axis of the winding tube (22). Radial ducts (45) are formed between the coil sections (26). Internal vertical ducts (30) are formed within each of the coil sections (26). A liquid coolant is used to cool the windings during operation. Flow diversion bands (60) are placed around every other coil section (26). The flow diversion bands (60) generate a partial blockage of the liquid coolant, which produces a radial flow into one or more of the radial ducts (45), resulting in vertical flow through the internal vertical ducts (30).
    • 公开了具有液体冷却剂流分流带(60)的芯形变压器绕组(21)。 该设备包括具有中心纵向轴线的卷绕管(22)。 许多线圈段(26)沿着绕组管(22)的中心纵向轴线轴向移位。 径向管道(45)形成在线圈段(26)之间。 在每个线圈段(26)内形成有内部垂直管道(30)。 在运行期间,使用液体冷却剂来冷却绕组。 流动分流带(60)围绕每隔一个线圈段(26)放置。 流动分流带(60)产生液体冷却剂的局部阻塞,其产生径向流入一个或多个径向管道(45),导致垂直流过内部垂直管道(30)。