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    • 51. 发明申请
    • Structure of pipe plate unit for heat exchangers and method of replacement for the pipe plate unit
    • 热交换器管板单元结构及管板单元更换方法
    • US20030164232A1
    • 2003-09-04
    • US10360855
    • 2003-02-10
    • MITSUBISHI HEAVY INDUSTRIES LTD.
    • Koichi InoueTeruaki SakataSatoshi HiraokaHiroji Nakamae
    • F28D001/00
    • F28B1/02F28F9/02
    • The present invention relates to the structure of a pipe plate unit for heat exchangers which may be employed in condensers, etc. that is used in thermoelectric and nuclear power plants. The object of this invention is to provide a structure for heat exchanger pipe plate units which reduces the number of construction steps and the labor costs for replacement of the pipe plate units, and which results in a pipe plate unit for heat exchangers after the replacement process that maintains a good seal for the fluids and which is adequately strong. The pipe plate unit for heat exchangers in which a plurality of heat conducting pipes are attached by welding at both ends to two opposing pipe plates, each bounded on one side by a fluid chamber, wherein the structure of the pipe plate unit for heat exchangers comprises a plurality of subassembly units to be assembled vertically and attached together, the plurality of subassembly units divide the pipe plate unit on the horizontal plane in a direction perpendicular to the surfaces of the pipe plates.
    • 本发明涉及可用于热电和核电站中的冷凝器等中的用于热交换器的管板单元的结构。 本发明的目的是提供一种换热器管板单元的结构,其减少了施工步骤的数量和更换管板单元的人工成本,并且在更换过程之后形成用于热交换器的管板单元 这对于流体保持良好的密封,并且其足够坚固。 用于热交换器的管板单元,其中多个导热管在两端通过焊接附接到两个相对的管板,每个管板一侧通过流体室限定,其中用于热交换器的管板单元的结构包括 多个子组件单元垂直组装在一起,多个子组件单元在垂直于管板表面的方向上在水平面上分隔管板单元。
    • 53. 发明申请
    • Gravity fed heat exchanger
    • 重力供热换热器
    • US20030131976A1
    • 2003-07-17
    • US10339313
    • 2003-01-09
    • Paul E. KrauseRobert E. Utter
    • F28D001/00
    • F28F9/013F28D1/05366F28F2225/04
    • A heat exchanger system having a fluid inlet member, a fluid outlet member, and a plurality of multi-port heat transfer members. Each of the multi-port heat transfer member extends between the fluid inlet member and the fluid outlet member to define a plurality of fluid paths between the fluid inlet member and the fluid outlet member for carrying a refrigerant or coolant. The plurality of multi-port heat transfer members are spaced apart from each other so as to maximize the product of the total air-side surface area and the heat transfer coefficient of the heat exchanger. If necessary for structural rigidity, at least one reinforcing member fixedly interconnects at least some of the plurality of multi-port heat transfer members in a woven pattern to provide both longitudinal and lateral reinforcement.
    • 一种具有流体入口构件,流体出口构件和多个多端口传热构件的热交换器系统。 多端口传热构件中的每一个在流体入口构件和流体出口构件之间延伸以在流体入口构件和流体出口构件之间限定多个流体路径,用于承载制冷剂或冷却剂。 多个多端口传热构件彼此间隔开,以便最大化总空气侧表面积和热交换器的传热系数的乘积。 如果需要结构刚度,至少一个加强构件以编织图案固定地互连多个多端口传热构件中的至少一些,以提供纵向和横向增强。
    • 57. 发明申请
    • Heat exchanger
    • 热交换器
    • US20030037915A1
    • 2003-02-27
    • US10198356
    • 2002-07-19
    • SHOWA DENKO K.K.
    • Hideaki Manaka
    • F28D001/00F28F009/02
    • F28D1/05391F28F9/001
    • A heat exchanger includes a pair of hollow headers, a plurality of tubes communicated with the headers, corrugated fins disposed between adjacent tubes and at an outside of an outermost tube and a side plate disposed at an outside of an outermost corrugated fin. The header insertion end portion of the side plate is formed into the same or approximately the same cross-sectional peripheral configuration as that of an end portion of the tube, and the side plate fitting aperture is formed into the same configuration as that of the tube fitting aperture. This becomes unnecessary to form a special fitting configuration at the end portion of the side plate, and moreover the workability for forming the side plate fitting apertures and the tube fitting apertures can be enhanced, resulting in enhanced productivity, which in turn can reduce the manufacturing cost.
    • 一个热交换器包括一对空心集管,与集管连通的多个管,布置在相邻管之间的波纹翅片和最外面的管的外侧,以及设置在最外面波纹状翅片外侧的侧板。 侧板的插头端部形成与管的端部相同或大致相同的横截面外形,并且侧板配合孔形成为与管的相同的构造 配合孔径。 这在侧板的端部形成特殊的配合构造是不必要的,此外,可以增强用于形成侧板配合孔和管接合孔的可加工性,从而提高生产率,从而可以减少制造 成本。
    • 60. 发明申请
    • Assembling heat exchanger of spiral sleeve
    • 螺旋套管组装换热器
    • US20020179292A1
    • 2002-12-05
    • US10202685
    • 2002-07-22
    • Yanwen ZhuZhigui Ma
    • F28D007/12F28D001/00
    • F28D7/024F28F9/00F28F9/22F28F2275/20
    • An assembling heat exchanger of spiral sleeve consist of the outer casings, core tube device, flow guide plate and sealing means. The outer casing comprising the lower and upper outer casings has the front and rear enclosed plates fixed to its both ends to form a closed casing. The core tube device provided at the middle portion of the outer casing includes the core tube body, end enclosed plates and heat exchanging copper tubes. The flow guide plate is located between the inner wall of the outer casing and the outer wall of the core tube body with the sealing means provided between the upper and lower outer casings and secured into an integral casing by bolts and nuts. The exhausted hot water enters the heat exchanger from the inlet on the outer casing and exit the outlet while the clean tap water enters the heat exchanger from the opposite inlet provided on the core tube device. The hot water absorpting the heat from the exhausted hot water exits the outlet, thus giving full recovery of the heat remainder of the exhausted hot water, energy savings and easiness of manufacturing and cleaning.
    • 螺旋套管的组装热交换器由外壳,芯管装置,导流板和密封装置组成。 包括下外壳和上外壳的外壳具有固定在其两端的前和后封闭板以形成封闭的外壳。 设置在外壳的中间部分的芯管装置包括芯管体,端封闭板和热交换铜管。 导流板位于外壳的内壁和芯管体的外壁之间,密封装置设置在上外壳和下外壳之间,并通过螺栓和螺母固定在一体的外壳中。 耗尽的热水从外壳上的入口进入热交换器并离开出口,而清洁的自来水从设置在芯管装置上的相对入口进入热交换器。 从排出的热水吸收热量的热水从出口排出,从而完全回收余热的热水余热,节省能源以及制造和清洁的容易性。