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    • 2. 发明专利
    • Heat exchanger, double cycle type refrigerator equipped with the same, and method for manufacturing heat exchanger
    • 热交换器,配有相同的双循环式制冷器以及制造热交换器的方法
    • JP2011163736A
    • 2011-08-25
    • JP2010030366
    • 2010-02-15
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • YOKOYAMA AKIMASAUEDA KENJIWAJIMA KAZUYOSHISHIRAKATA YOSHINORIKAMATA YASUHIRO
    • F25B39/00F25B1/00
    • PROBLEM TO BE SOLVED: To provide a compact heat exchanger for a double cycle type refrigerator. SOLUTION: The heat exchanger is used for a condenser 3 and an evaporator 4 of the double cycle type refrigerator combining two refrigerators. The condenser 3 and the evaporator 4 includes shells 5, 7 forming refrigerant spaces inside; partition plates 6, 8 partitioning the refrigerant spaces in the shells 5, 7; water chambers 10, 11, 33, 34 provided at the ends of the shells 5, 7 and partition plates 6, 8 to lead cold water or cooling water therein; and tube plates 20, 21, 30, 31 partitioning the water chambers 10, 11, 33, 34 from the refrigerant spaces in the shells 5, 7 and supporting a heat transfer tube through which the cold water or cooling water flows. The shells 5, 7 are divided by longitudinal division parts 5a, 7a extending in the longitudinal direction of the shells 5, 7, and the longitudinal division parts 5a, 7a are fixed to the partition plates 6, 8 by welding. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种用于双循环式冰箱的紧凑型热交换器。 解决方案:热交换器用于组合两个冰箱的双循环式冰箱的冷凝器3和蒸发器4。 冷凝器3和蒸发器4包括内部形成制冷剂空间的壳体5,7; 分隔壳体5,7中的制冷剂空间的隔板6,8; 设置在壳体5,7的端部处的水室10,11,33,34和分隔板6,8以将冷水或冷却水引导到其中; 以及管壳20,21,30,31,其将水室10,11,33,34从壳体5,7中的制冷剂空间分隔开,并支撑冷水或冷却水流过的传热管。 壳体5,7由在壳体5,7的纵向方向上延伸的纵向分割部分5a,7a分开,纵向分割部分5a,7a通过焊接固定到分隔板6,8上。 版权所有(C)2011,JPO&INPIT
    • 3. 发明专利
    • Refrigerant cooling device and cooling device
    • 制冷冷却装置和冷却装置
    • JP2008190829A
    • 2008-08-21
    • JP2007028522
    • 2007-02-07
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • FUKUSHIMA AKIRAIRITANI YOICHIROTAKEUCHI KATSUJISHIRAKATA YOSHINORIOMURA SHINTARO
    • F25B39/04F25B1/00F25B40/02
    • PROBLEM TO BE SOLVED: To miniaturize a subcooler in a cooling device having the subcooler for supercooling a liquefied refrigerant.
      SOLUTION: A condenser 20 has a first refrigerant cooling fluid passage 21 and a second refrigerant cooling fluid passage 22. A refrigerant cooling fluid W1 after passing through the first refrigerant cooling fluid passage 21 flows through the second refrigerant cooling fluid passage 22. The refrigerant CF_L of liquid phase liquefied in the condenser 20 is supercooled by the subcooler 30. A part of the refrigerant cooling fluid W1 supplied to the condenser 20 is diverged and supplied to the subcooler 30. The refrigerant cooling fluid W1 after passing through the subcooler 30 and cooling the refrigerant CF_L of liquid phase joins the refrigerant cooling fluid W1 which passed through the first refrigerant cooling fluid passage 21 and cooled a refrigerant CF_G of gas phase, and flows into the second refrigerant cooling fluid passage 22.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:为了使具有用于过冷却液化制冷剂的过冷却器的冷却装置中的过冷却器小型化。 解决方案:冷凝器20具有第一制冷剂冷却流体通道21和第二制冷剂冷却流体通道22.经过第一制冷剂冷却流体通道21的制冷剂冷却流体W1流过第二制冷剂冷却流体通道22。 在冷凝器20中液化的液相的制冷剂CF_L由过冷却器30过冷却。供给到冷凝器20的制冷剂冷却流体W1的一部分发散并供给到过冷却器30.通过过冷却器后的制冷剂冷却流体W1 30并冷却液相的制冷剂CF_L与通过第一制冷剂冷却流体通道21的制冷剂冷却流体W1接合并冷却气相的制冷剂CF_G,并流入第二制冷剂冷却流体通道22。 (C)2008,JPO&INPIT
    • 5. 发明专利
    • Condenser for refrigerating machine
    • 冷冻机冷凝器
    • JP2003065695A
    • 2003-03-05
    • JP2001254358
    • 2001-08-24
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • IRITANI YOICHIROFUJIWARA MAKOTOSHIRAKATA YOSHINORIUEDA KENJI
    • F28F9/22F25B39/04
    • PROBLEM TO BE SOLVED: To provide a shell and tube type condenser for refrigerating machine arranged to feed a cooling fluid through a plurality of heat exchanger tubes arranged horizontally and to feed refrigerant downward on the outside of the heat exchanger tubes in which transfer of condensation heat is not impeded by a condensation liquid film being produced in the heat exchanger tubes.
      SOLUTION: Cooling water flowing into a condenser from a cooling water inlet 8 flows into heat exchanger tubes 2 at the lower part, turns back at the left end and flows through the heat exchanger tubes 2 at the upper part before flowing out from a cooling water outlet 9. Refrigerant gas 15 flows from a refrigerant gas inflow nozzle 16 into the condenser where it is cooled by cooling water flowing through the heat exchanger tubes 2 and condensed. Upper part of the heat exchanger tubes 2 facing the refrigerant gas inflow nozzle 16 side is covered with a punching metal 11.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:提供一种用于制冷机的壳管式冷凝器,其布置成通过水平布置的多个热交换器管供给冷却流体,并且在冷却热传递的热交换器管的外侧向下供给制冷剂 不受在热交换器管中产生的冷凝液膜的阻碍。 解决方案:从冷却水入口8流入冷凝器的冷却水在下部流入热交换器管2,在左端返回,并在从冷却水流出之前流过上部的热交换器管2 出口9.制冷剂气体15从制冷剂气体流入喷嘴16流入冷凝器,在冷凝器中,冷却水通过流经热交换器管2的冷却水冷凝。 热交换器管2的面向制冷剂气体流入喷嘴16侧的上部被冲孔金属11覆盖。
    • 7. 发明专利
    • Turbo refrigeration device and method of controlling the same
    • 涡轮制冷装置及其控制方法
    • JP2008121451A
    • 2008-05-29
    • JP2006303785
    • 2006-11-09
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • UEDA KENJISHIRAKATA YOSHINORI
    • F04D27/00F25B1/053
    • F04D27/0269
    • PROBLEM TO BE SOLVED: To provide a turbo refrigeration device having a two-stage turbo compressor with high efficiency.
      SOLUTION: This turbo refrigeration device has a control section controlling the openings of a first inlet vane of a first impeller and that of a second inlet vane of a second impeller. The control section has a dependent mode for operating, in a dependent-mode priority region A, the second inlet vane by making it dependent on the first inlet vane and also has an independent mode for increasing, in an independent-mode priority region B, the opening of the second inlet vane independently of the first inlet vane.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种具有高效率的具有两级涡轮压缩机的涡轮制冷装置。 解决方案:该涡轮制冷装置具有控制部分,其控制第一叶轮的第一入口叶片和第二叶轮的第二入口叶片的开口。 控制部分具有依赖模式,在依赖模式优先区域A中,通过使其依赖于第一入口叶片来操作第二入口叶片,并且还具有用于在独立模式优先区域B中增加的独立模式, 独立于第一入口叶片的第二入口叶片的开口。 版权所有(C)2008,JPO&INPIT
    • 8. 发明专利
    • Evaporator for refrigerating machine
    • JP2004340546A
    • 2004-12-02
    • JP2003140325
    • 2003-05-19
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • IRITANI YOICHIROSHIRAKATA YOSHINORISATO TATSUYA
    • F25B39/02
    • F25B2339/0242
    • PROBLEM TO BE SOLVED: To provide an evaporator for a refrigerating machine having a demister arrangement applied to an evaporator divided into two and having improved efficiency of preventing a carry-over.
      SOLUTION: A vessel 21 into which a refrigerant is introduced is divided by a partition wall 16 extending in a longitudinal direction thereof. The evaporator for a refrigerating machine is provided with heat exchanger bundles in the respective divided areas, each extending in the longitudinal direction of the vessel 21 and constituting of a plurality of heat exchanger tubes 15 which are arranged like a bundle and through which cool water flows, and refrigerant gas suction tubes 2 corresponding to respective areas. Each heat exchanger tube bundle has a configuration in which a heat exchanger tube bundle 13 at a forward side extending in a forward direction and a heat exchanger tube bundle 14 at a return side turned back at an end of the heat exchanger tube bundle 13 at the forward side and is adjacent thereto are continuously provided through a turning-back point. Wire mesh demisters 12 for collecting droplets or mist of the refrigerant are provided at the upper side of the heat exchanger tube bundles 13 and 14 of the each area, and the demisters are arranged to be inclined at a predetermined angle when seen in the longitudinal direction of the vessel 21.
      COPYRIGHT: (C)2005,JPO&NCIPI