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    • 114. 发明申请
    • A DEVICE COMPRISING HEAT PRODUCING COMPONENTS WITH LIQUID SUBMERSION COOLING
    • 包括具有液体浸没冷却的热生产组分的装置
    • WO2017089313A1
    • 2017-06-01
    • PCT/EP2016/078344
    • 2016-11-21
    • AECORSIS B.V.
    • BRINK, Dirk Roelof
    • G06F1/20H05K7/20
    • G06F1/20G06F2200/201H05K7/20236H05K7/20245H05K7/20772
    • A device comprising heat producing electronic components (2), such as server memory boards, processors and/or switches, said device comprising a container (1) wherein said heat producing components are mounted, a liquid in said container in which liquid said components are submerged for extracting heat from said components, at least one heat exchanger (7) having a surface which is in contact with said liquid and arranged to extract heat from said liquid, wherein between said heat exchanger and said components a vertical wall (6) is present for guiding and separating a vertical circulation of said liquid in said container which is caused by a temperature difference in said liquid.
    • 包括产生热量的电子部件(2)的设备,诸如服务器存储器板,处理器和/或开关,所述设备包括容器(1),其中所述产热部件被安装,液体在 所述容器中液体将所述组分浸没在所述容器中以便从所述组分中提取热量;至少一个热交换器(7),其具有与所述液体接触并布置成从所述液体提取热量的表面,其中在所述热交换器和所述热交换器 部件中存在用于引导和分离由所述液体中的温差引起的所述容器中的所述液体的垂直循环的垂直壁(6)。
    • 117. 发明申请
    • ARRANGEMENT FOR COOLING COMPONENTS OF A SUBSEA ELECTRIC SYSTEM
    • SUBSEA电气系统冷却组件的安装
    • WO2015150007A1
    • 2015-10-08
    • PCT/EP2015/054413
    • 2015-03-03
    • ABB TECHNOLOGY LTD
    • GRADINGER, ThomasLANERYD, Tor
    • H05K7/20
    • H05K7/20263F28D1/022F28D15/00F28F13/12H05K5/0017H05K7/20236H05K7/20245H05K7/20272H05K7/20409H05K7/20927
    • There is presented an arrangement for cooling components of a subsea electric system. The arrangement comprises a tank filled with a dielectric fluid. The tank comprises a first section and a second section. The arrangement comprises at least one first electric component located within the first section. The arrangement comprises at least one second electric component located within the second section. The arrangement comprises a first heat exchanger located outside the tank and in fluid contact with the tank, and arranged to during operation be in thermal contact with sea water. The arrangement comprises a pump arranged to force a flow of the dielectric fluid through the first heat exchanger. Flow of the dielectric fluid in the tank is partially by natural convection and partially by forced convection generated by the pump. The at least one first electric component generates more heat than the at least one second electric component. Within the first section the share of the flow by natural convection is greater than within the second section.
    • 提出了一种用于海底电气系统的冷却部件的布置。 该装置包括填充有介电流体的罐。 该罐包括第一部分和第二部分。 该装置包括位于第一部分内的至少一个第一电气部件。 该装置包括位于第二部分内的至少一个第二电子部件。 该装置包括位于罐外部并与罐流体接触的第一热交换器,并且布置成在操作期间与海水热接触。 该装置包括一个泵,其布置成迫使电介质流体流过第一热交换器。 储罐中介质流体的流动部分是通过自然对流,部分地由泵产生的强制对流。 所述至少一个第一电气部件比所述至少一个第二电气部件产生更多的热量。 在第一部分中,自然对流的流量份额大于第二部分。
    • 119. 发明申请
    • OIL COOLING CONFIGURATION FOR SUBSEA CONVERTER
    • 用于SUBSEA转换器的油冷却配置
    • WO2015003936A1
    • 2015-01-15
    • PCT/EP2014/063770
    • 2014-06-27
    • ABB TECHNOLOGY LTD
    • RIEDEL, GernotKICIN, SlavoGRADINGER, Thomas
    • H05K7/14H05K7/20
    • H05K7/1432H05K7/20236H05K7/20927
    • The invention concerns an electronic converter system (1), comprising a housing (2) configured to receive a dielectric fluid, at least one stackable electric power module (4) comprising a first section (54) and a second section (52) and a cooling system (6). The cooling system comprises a second heat exchanger (22) in thermal connection with the fluid, a first fluid stream path (16) being configured to receive a first fluid stream passing through the first section (54) and the second heat exchanger, and a second fluid stream path (18) configured to receive a second fluid stream passing through the second section (52) and the second heat exchanger whereby the second fluid stream has a flow rate that differs from that of the first fluid stream.
    • 本发明涉及一种电子转换器系统(1),其包括被配置为接收电介质流体的壳体(2),至少一个包括第一部分(54)和第二部分(52)的可堆叠电功率模块(4) 冷却系统(6)。 冷却系统包括与流体热连接的第二热交换器(22),第一流体流路径(16)构造成接收通过第一部分(54)和第二热交换器的第一流体流,以及 第二流体流动路径(18),其构造成接收通过第二部分(52)和第二热交换器的第二流体流,由此第二流体流具有与第一流体流不同的流速。