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    • 4. 发明公开
    • In-line ultrapure heat exchanger
    • Ultrareiner Inline-Wärmetauscher
    • EP2693152A1
    • 2014-02-05
    • EP13174674.5
    • 2013-07-02
    • Tom Richards, Inc.
    • Base, Howard J.Geiger, Jack M.Rozga, JoelIbrahim, Mounir B.
    • F28F19/00F28F1/02F24H1/14F24H9/00F24H9/18
    • F24H9/00F24H1/142F24H9/0015F24H9/18F28F1/003F28F1/02F28F19/04
    • A heat exchanger includes a plurality of tubes (20, 170, 210, 320) wherein at least some of the tubes are elliptical or oval in cross section and each tube includes a longitudinal axis. Each elliptical tube includes a major axis (C) and a minor axis (D). The plurality of tubes is arranged in a radial pattern such that the major axes of the elliptical tubes intersect a centerline (CL) of the heat exchanger. The plurality of tubes is thermally connected to a heater mount (12, 202, 312). A heater (46, 446) is thermally connected to the heater mount. A securing element (48) holds the plurality of tubes, the heater and the heater mount together. A tube liner (60, 82, 92, 112, 152) can extend along the longitudinal axis of at least one of the elliptical or oval tubes of the plurality of tubes. If a tube liner is employed, a purge fluid flow channel (66, 86, 96, 118) is defined between an outer periphery of the tube liner and an inner periphery of the at least one of the elliptical or oval tubes of the plurality of tubes.
    • 热交换器包括多个管(20,170,210,320),其中至少一些管的横截面为椭圆形或椭圆形,并且每个管包括纵向轴线。 每个椭圆管包括长轴(C)和短轴(D)。 多个管以径向图案布置,使得椭圆管的长轴与热交换器的中心线(CL)相交。 多个管热连接到加热器支架(12,202,312)。 加热器(46,446)热连接到加热器支架。 固定元件(48)将多个管子,加热器和加热器固定在一起。 管衬套(60,82,92,112,152)可以沿着多个管的椭圆形或椭圆形管中的至少一个的纵向轴线延伸。 如果使用管衬套,则清洗流体流动通道(66,86,96,118)被限定在管衬套的外周边和多个管内衬中的至少一个椭圆管或椭圆管的内周边 管。
    • 6. 发明公开
    • INSTANTANEOUS HEATING APPARATUS
    • 瞬时加热装置
    • EP3258186A1
    • 2017-12-20
    • EP15882142.1
    • 2015-11-11
    • Coway Co., Ltd.
    • KIM, Jae-ManCHOI, In-Du
    • F24H1/10F24H9/18
    • F24H1/10F24H1/162F24H9/0021F24H9/18F24H9/1818H05B3/46
    • An instantaneous heating apparatus is disclosed. The instantaneous heating apparatus according to one embodiment of the present invention comprises: a water inlet part into which water flows from the outside; a flow part in which the water, flowing into the water inlet part, flows; a heating part for heating the water flowing in the flow part; and a water outlet part for discharging, to the outside, the water heated by the heating part, wherein the flow part can comprise: a passage forming member disposed inside the heating part; and a close-pressing part for bringing the passage forming member into close contact with the heating part such that a heating passage is formed between the heating part and the passage forming member.
    • 公开了一种瞬时加热装置。 根据本发明的一个实施例的瞬时加热设备包括:进水部分,水从外部流入其中; 流入所述进水部的水流入的流动部; 加热部分,用于加热在流动部分中流动的水; 以及出水部分,其用于将由所述加热部分加热的水排出到外部,其中所述流动部分可以包括:通道形成部件,所述通道形成部件设置在所述加热部分内; 以及用于使通道形成部件与加热部件紧密接触的紧压部件,从而在加热部件和通道形成部件之间形成加热通道。
    • 10. 发明授权
    • ULTRA-HIGH VOLTAGE ELECTRIC HEAT ENERGY STORAGE DEVICE
    • 超高压电热储能装置
    • EP2878897B1
    • 2018-01-10
    • EP13794592.9
    • 2013-02-07
    • Shenyang Shijie Electric Co. Ltd.
    • ZHU, Jianxin
    • F24H7/04F28D20/00F24H9/18F24H7/02F24H9/00F24H7/00
    • F24H7/002F24D2220/10F24H7/0216F24H7/0416F24H9/18F28D20/0056Y02E60/142
    • The present invention discloses an ultra-high voltage electro-thermal energy storage device, comprising a separated heat energy storage body part, a heat exchanger part and an outer thermal insulation layer part. The separated heat energy storage body is composed of an isolation layer, a safety gap, a heat storage module, an electric heating wire, a convection chamber for heat dissipation, an insulating air-duct, a power supply sheath, a back flow air passage, a motor, a front end of a leading wire for a power supply, a tail end of the leading wire for the power supply, and an outer thermal insulation layer. The separated heat energy storage body is a component of the ultra-high voltage electro-thermal energy storage device, and 3(n+1) separated heat energy storage bodies are provided for composing the ultra-high voltage electro-thermal energy storage device with any two adjacent separated heat energy storage bodies being isolated by isolation layers and the electric heating wires of the n separated heat energy storage bodies being connected end to end to be in series. The heat energy storage bodies supply electric power through three phases, and in each phase, n separated heat energy storage bodies are connected in series, so as to address the issue of terminal voltages on terminals of the separated heat energy storage bodies being too high. The present invention can be configured conveniently, and is suitable for various voltage levels above 10 KV, and can be used as a heat storage device having an operating voltage of more than 500 KV.