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    • 3. 发明申请
    • Heat exchanger, method for manufacturing heat exchanger, tube connecting structure for heat exchanger header tank, gas cooler using supercritical refrigerant, and refrigerant system
    • 热交换器,热交换器的制造方法,换热器集水箱的管连接结构,使用超临界制冷剂的气体冷却器和制冷剂系统
    • US20060124289A1
    • 2006-06-15
    • US10525220
    • 2003-08-21
    • Etsuo ShinmuraKoichiro TakeNoboru Ogasawara
    • Etsuo ShinmuraKoichiro TakeNoboru Ogasawara
    • F28F9/02
    • F28D1/05391F28D2021/0073F28F1/025F28F9/0202F28F9/0214
    • A heat exchanger according to the present invention includes a pair of header tanks 10a and 10b and a plurality of heat exchanging tubes 30 disposed between the header tanks and arranged in parallel. The header tank 10 and 10b is provided with partitioning walls 15 integrally formed to the header tank along the longitudinal direction. The inside space of the header tank is divided by the partitioning walls 15 into tank partions 11 to 014. Refrigerant turning communication apertures 17 are formed in the predetermined partitioning wall 15. The refrigerant passages 35 of the heat exchanging tube 30 are grouped so as to correspond to each tank portion of the header tank 10a and 10b to thereby form a plurality of passes P1 to P4. The refrigerant introduced into the first tank portion 11 of one of the header tanks 10a passes through each passes P1 to P4 in this order from the rear side toward the front side, and then introduced into the fourth tank portion 14 of the other of the header tanks 10b. According to this heat exchanger, enough pressure resistance and heat exchanging performance can be obained.
    • 根据本发明的热交换器包括一对集管箱10a和10b,以及多个热交换管30,其设置在集水箱之间并且平行配置。 集水箱10和10b设置有沿着纵向一体地形成到集水箱的分隔壁15。 集水箱的内部空间被分隔壁15分成槽部分11至014。 制冷剂转动连通孔17形成在预定分隔壁15中。 热交换管30的制冷剂通道35被分组成与集水箱10a和10b的每个罐部对应,从而形成多个通路P 1至P 4。 一个集水箱10a的第一箱部11内的制冷剂从后侧朝向前侧依次通过各通路P 1〜P 4,然后导入另一个的第四箱部14 的集水箱10b。 根据该换热器,可以获得足够的耐压性和热交换性能。
    • 6. 发明授权
    • Intermediate heat exchanger
    • 中间热交换器
    • US08789389B2
    • 2014-07-29
    • US13390749
    • 2010-10-12
    • Noboru OgasawaraTatsuya HanafusaMakoto Numasawa
    • Noboru OgasawaraTatsuya HanafusaMakoto Numasawa
    • F25B41/00
    • F25B40/00F25B43/006F25B2400/16F25B2500/18
    • An intermediate heat exchanger 10 includes a double tube 11 and a liquid reservoir 14. The double tube 11 has an outer tube 15 and an inner tube 16 disposed inside the outer tube 15 with a clearance formed therebetween. The clearance between the outer tube 15 and the inner tube serves as a high-temperature-side refrigerant passage 12, through which refrigerant of high pressure flowing out of a condenser flows, and the interior of the inner tube 16 serves as a low-temperature-side refrigerant passage 13, through which refrigerant of low pressure flowing out of an evaporator flows. The liquid reservoir 14, which communicates with the high-temperature-side refrigerant passage 12 of the double tube 11, stores the refrigerant of high pressure flowing out of the condenser before the pressure of the refrigerant is reduced by a pressure reducer, and separate liquid-phase refrigerant and gas-phase refrigerant. The outer tube 15 of the double tube 11 has a refrigerant inlet 17 and a refrigerant outlet 18 communicating with the high-temperature-side refrigerant passage 12. At an intermediate position between the refrigerant inlet 17 and the refrigerant outlet 18, refrigerant flows from the high-temperature-side refrigerant passage 12 of the double tube 11 into the liquid reservoir 14, and returns from the liquid reservoir 14 to the high-temperature-side refrigerant passage 12.
    • 中间热交换器10包括双管11和液体储存器14.双管11具有设置在外管15内部的外管15和内管16,其间形成有间隙。 外管15和内管之间的间隙用作高温侧制冷剂通道12,通过该高压侧制冷剂通道12流出冷凝器的高压制冷剂流过,并且内管16的内部用作低温 从制冷剂通路13流出的低压制冷剂流过。 与双管11的高温侧制冷剂通路12连通的储液槽14在通过减压器减压制冷剂的压力之前,储存从冷凝器流出的高压制冷剂,分离液 相制冷剂和气相制冷剂。 双管11的外管15具有与高温侧制冷剂通路12连通的制冷剂入口17和制冷剂出口18.在制冷剂入口17与制冷剂出口18之间的中间位置,制冷剂从 双管11的高温侧制冷剂通路12进入储液器14,从储液器14返回到高温侧制冷剂通路12。
    • 7. 发明申请
    • INTERMEDIATE HEAT EXCHANGER
    • 中间热交换器
    • US20120234517A1
    • 2012-09-20
    • US13390749
    • 2010-10-12
    • Noboru OgasawaraTatsuya HanafusaMakoto Numasawa
    • Noboru OgasawaraTatsuya HanafusaMakoto Numasawa
    • F28D15/00
    • F25B40/00F25B43/006F25B2400/16F25B2500/18
    • An intermediate heat exchanger 10 includes a double tube 11 and a liquid reservoir 14. The double tube 11 has an outer tube 15 and an inner tube 16 disposed inside the outer tube 15 with a clearance formed therebetween. The clearance between the outer tube 15 and the inner tube serves as a high-temperature-side refrigerant passage 12, through which refrigerant of high pressure flowing out of a condenser flows, and the interior of the inner tube 16 serves as a low-temperature-side refrigerant passage 13, through which refrigerant of low pressure flowing out of an evaporator flows. The liquid reservoir 14, which communicates with the high-temperature-side refrigerant passage 12 of the double tube 11, stores the refrigerant of high pressure flowing out of the condenser before the pressure of the refrigerant is reduced by a pressure reducer, and separate liquid-phase refrigerant and gas-phase refrigerant. The outer tube 15 of the double tube 11 has a refrigerant inlet 17 and a refrigerant outlet 18 communicating with the high-temperature-side refrigerant passage 12. At an intermediate position between the refrigerant inlet 17 and the refrigerant outlet 18, refrigerant flows from the high-temperature-side refrigerant passage 12 of the double tube 11 into the liquid reservoir 14, and returns from the liquid reservoir 14 to the high-temperature-side refrigerant passage 12.
    • 中间热交换器10包括双管11和液体储存器14.双管11具有设置在外管15内部的外管15和内管16,其间形成有间隙。 外管15和内管之间的间隙用作高温侧制冷剂通道12,通过该高压侧制冷剂通道12流出冷凝器的高压制冷剂流过,并且内管16的内部用作低温 从制冷剂通路13流出的低压制冷剂流过。 与双管11的高温侧制冷剂通路12连通的储液槽14在通过减压器减压制冷剂的压力之前,储存从冷凝器流出的高压制冷剂,分离液 相制冷剂和气相制冷剂。 双管11的外管15具有与高温侧制冷剂通路12连通的制冷剂入口17和制冷剂出口18.在制冷剂入口17与制冷剂出口18之间的中间位置,制冷剂从 双管11的高温侧制冷剂通路12进入储液器14,从储液器14返回到高温侧制冷剂通路12。