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    • 4. 发明授权
    • Refrigerant system
    • 制冷剂系统
    • US07251949B2
    • 2007-08-07
    • US11053200
    • 2005-02-08
    • Masaji YamanakaShigeya IshigakiKenzo MatsumotoHaruhisa YamasakiMidori Futakawame
    • Masaji YamanakaShigeya IshigakiKenzo MatsumotoHaruhisa YamasakiMidori Futakawame
    • A47F3/04
    • F25D19/02F25B1/04F25B1/10F25B9/008F25B40/00F25B2309/061F25D23/003F25D23/061F25D2317/0651F25D2317/0661F25D2317/0684F25D2323/00264F25D2323/00271
    • A refrigerant system 1D comprises a heat insulating housing 3 provided with an accommodating space inside and a refrigeration unit 9 attached to a lower portion of the heat insulating housing 3, in which a compressor 5, a gas cooler 6, an internal heat exchanger 10, a restriction means 16 and an evaporator 8 accommodated in a heat insulating case 7A are disposed on a unit base 4. The gas cooler 6 and the heat insulating case 7A are disposed so that air heat-exchanged by the gas cooler 6 moves toward the heat insulating case 7A, an air passage T is provided between the unit base 4 and the heat insulating case 7A, the air heat-exchanged by the gas cooler 6 is passed through the air passage T to be discharged outside, and the internal heat exchanger 10 is disposed in such a manner that it is embedded in a heat insulating material layer 7C provided around the heat insulating case 7A to be provided with a heat insulation property. Accordingly, exhaust heat-exchanged by the gas cooler is discharged outside without stagnation, and increases in an overload and operation power of the compressor are suppressed and the durability of the compressor can be improved. Further, the heat-exchanging efficiency of the internal heat exchanger can be improved and the generation of condensation on a surface of an outer side tube of the internal heat exchanger can be prevented.
    • 制冷剂系统1D包括在内部设置有容纳空间的绝热壳体3和附接到隔热壳体3的下部的制冷单元9,其中压缩机5,气体冷却器6,内部热交换器10 容纳在隔热壳体7A中的限制装置16和蒸发器8设置在单元基座4上。气体冷却器6和绝热壳体7A被布置成使得由气体冷却器6热交换的空气移动 朝向绝热壳体7A的空气通道T设置在单元基座4和隔热壳体7A之间,由气体冷却器6热交换的空气通过空气通道T排出到外部, 内部热交换器10以这样的方式设置,即它被嵌入设置在绝热壳体7A周围的隔热材料层7C中,以提供隔热性能。 因此,通过气体冷却器进行热交换的排气被排出到外部,而不会停滞,并且压缩机的过载和运转功率的增加被抑制,并且可以提高压缩机的耐久性。 此外,可以提高内部热交换器的热交换效率,并且可以防止在内部热交换器的外侧管的表面上产生冷凝。
    • 8. 发明申请
    • Refrigerant system
    • 制冷剂系统
    • US20050217296A1
    • 2005-10-06
    • US11053200
    • 2005-02-08
    • Masaji YamanakaShigeya IshigakiKenzo MatsumotoHaruhisa YamasakiMidori Futakawame
    • Masaji YamanakaShigeya IshigakiKenzo MatsumotoHaruhisa YamasakiMidori Futakawame
    • F25B1/04F25B1/10F25B9/00F25B40/00F25D19/00F25D19/02F25D23/00F25D23/06A47F3/04F25B41/00
    • F25D19/02F25B1/04F25B1/10F25B9/008F25B40/00F25B2309/061F25D23/003F25D23/061F25D2317/0651F25D2317/0661F25D2317/0684F25D2323/00264F25D2323/00271
    • A refrigerant system 1D comprises a heat insulating housing 3 provided with an accommodating space inside and a refrigeration unit 9 attached to a lower portion of the heat insulating housing 3, in which a compressor 5, a gas cooler 6, an internal heat exchanger 10, a restriction means 16 and an evaporator 8 accommodated in a heat insulating case 7A are disposed on a unit base 4. The gas cooler 6 and the heat insulating case 7A are disposed so that air heat-exchanged by the gas cooler 6 moves toward the heat insulating case 7A, an air passage T is provided between the unit base 4 and the heat insulating case 7A, the air heat-exchanged by the gas cooler 6 is passed through the air passage T to be discharged outside, and the internal heat exchanger 10 is disposed in such a manner that it is embedded in a heat insulating material layer 7C provided around the heat insulating case 7A to be provided with a heat insulation property. Accordingly, exhaust heat-exchanged by the gas cooler is discharged outside without stagnation, and increases in an overload and operation power of the compressor are suppressed and the durability of the compressor can be improved. Further, the heat-exchanging efficiency of the internal heat exchanger can be improved and the generation of condensation on a surface of an outer side tube of the internal heat exchanger can be prevented.
    • 制冷剂系统1D包括在内部设置有容纳空间的隔热壳体3和附接到隔热壳体3的下部的制冷单元9,其中压缩机5,气体冷却器6,内部热交换器10 容纳在隔热壳体7A中的限制装置16和蒸发器8设置在单元基座4上。气体冷却器6和绝热壳体7A被布置成使得由气体冷却器6热交换的空气移动 朝向绝热壳体7A的空气通道T设置在单元基座4和隔热壳体7A之间,由气体冷却器6热交换的空气通过空气通道T排出到外部, 内部热交换器10以这样的方式设置,即它被嵌入设置在绝热壳体7A周围的隔热材料层7C中,以提供隔热性能。 因此,通过气体冷却器进行热交换的排气被排出到外部,而不会停滞,并且压缩机的过载和运转功率的增加被抑制,并且可以提高压缩机的耐久性。 此外,可以提高内部热交换器的热交换效率,并且可以防止在内部热交换器的外侧管的表面上产生冷凝。