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    • 5. 发明授权
    • Finned tube heat exchanger
    • 翅片管换热器
    • US08613307B2
    • 2013-12-24
    • US12442977
    • 2007-09-28
    • Hyunyoung KimHirokazu FujinoToshimitsu KamadaKazushige Kasai
    • Hyunyoung KimHirokazu FujinoToshimitsu KamadaKazushige Kasai
    • F28D1/04F28F1/20F28F1/30
    • F28F1/325F28F1/32F28F13/06F28F17/005
    • A finned tube heat exchanger includes a plurality heat-transfer fins and a plurality of heat-transfer tubes. The heat-transfer fins are disposed along an airflow direction. The plurality of heat-transfer tubes are inserted into the heat-transfer fins and arranged in a direction substantially orthogonal to the airflow direction. Each of the heat transfer fins includes a plurality of sets of cut-and-raised parts with each set being straightly aligned from the upstream side toward the downstream side. At least one set of cut-and-raised parts is connected by a straight line sloped relative to the airflow direction. Each of the heat transfer fins includes a plurality of concavities with each concavity formed on a periphery of one of the heat-transfer tubes at least partially below a horizontal plane that passes through a center axis of the heat-transfer tubes and lies on an upper surface of the heat transfer fin having the concavity formed therein.
    • 翅片管式热交换器包括多个传热翅片和多个传热管。 传热翅片沿气流方向设置。 多个传热管被插入到传热翅片中并且布置在大致正交于风向的方向上。 每个传热翅片包括多组切割和升起的部件,每组组件从上游侧向下游侧直线对齐。 至少一组切起部分通过相对于气流方向倾斜的直线连接。 每个传热翅片包括多个凹部,每个凹部形成在一个传热管的周边上,至少部分地在穿过传热管的中心轴线并位于上部的传热管的水平面之下 传热翅片的表面形成有凹部。
    • 6. 发明申请
    • FINNED TUBE HEAT EXCHANGER
    • 精细管热交换器
    • US20100089557A1
    • 2010-04-15
    • US12442977
    • 2007-09-28
    • Hyunyoung KimHirokazu FujinoToshimitsu KadamaKazushige Kasai
    • Hyunyoung KimHirokazu FujinoToshimitsu KadamaKazushige Kasai
    • F28F1/32
    • F28F1/325F28F1/32F28F13/06F28F17/005
    • A finned tube heat exchanger includes a plurality heat-transfer fins and a plurality of heat-transfer tubes. The heat-transfer fins are disposed along an airflow direction. The plurality of heat-transfer tubes are inserted into the heat-transfer fins and arranged in a direction substantially orthogonal to the airflow direction. Each of the heat transfer fins includes a plurality of sets of cut-and-raised parts with each set being straightly aligned from the upstream side toward the downstream side. At least one set of cut-and-raised parts is connected by a straight line sloped relative to the airflow direction. Each of the heat transfer fins includes a plurality of concavities with each concavity formed on a periphery of one of the heat-transfer tubes at least partially below a horizontal plane that passes through a center axis of the heat-transfer tubes and lies on an upper surface of the heat transfer fin having the concavity formed therein.
    • 翅片管式热交换器包括多个传热翅片和多个传热管。 传热翅片沿气流方向设置。 多个传热管被插入到传热翅片中并且布置在大致正交于风向的方向上。 每个传热翅片包括多组切割和升起的部件,每组组件从上游侧向下游侧直线对齐。 至少一组切起部分通过相对于气流方向倾斜的直线连接。 每个传热翅片包括多个凹部,每个凹部形成在一个传热管的周边上,至少部分地在穿过传热管的中心轴线并位于上部的传热管的水平面之下 传热翅片的表面形成有凹部。
    • 8. 发明申请
    • Refrigerant flow divider
    • 制冷分流器
    • US20090314022A1
    • 2009-12-24
    • US11919559
    • 2006-06-14
    • Shun YoshiokaMakio TakeuchiKazushige Kasai
    • Shun YoshiokaMakio TakeuchiKazushige Kasai
    • F25D23/00
    • F25B39/028F25B2500/01
    • A refrigerant flow divider is made up of an inlet pipe 12 through which refrigerant Xin flows in, a main body 11 of which the inside is a cavity, and a plurality of branching pipes 13 through which refrigerant Xout flows out. When the length of the above described main body 11 of the flow divider is L mm and the inner diameter of the above described main body 11 of the flow divider is D2 mm, the relationship 2 ≦L/D2≦8 holds, and thus, a flow divider can be gained, where discrepancy (variation) in the flow rate ratio in the respective paths for the flow discharged from the outlet of the flow divider and entering the heat exchanger is small and pressure loss is small when there is a change of approximately ±10° in the installation angle, a change in the dryness of the refrigerant at the inlet (0.2 to 0.4) or a change in the flow rate of the refrigerant (50% to 100%).
    • 制冷剂分流器由制冷剂Xin流入的入口管12,内部为空腔的主体11和制冷剂Xout流出的多个分支管13构成。 当分流器的上述主体11的长度为L mm,并且分流器的上述主体11的内径为D2mm时,关系式2 <= L / D2 <= 8,并且 因此,可以获得流量分配器,其中从分流器的出口排出并进入热交换器的流量的各个路径中的流量比的差异(变化)小,并且当存在压力损失时 在安装角度上约±10°的变化,入口处的制冷剂的干燥度的变化(0.2至0.4)或制冷剂的流量变化(50%至100%)。
    • 9. 发明授权
    • Refrigerant flow divider
    • 制冷分流器
    • US07921671B2
    • 2011-04-12
    • US11919559
    • 2006-06-14
    • Shun YoshiokaMakio TakeuchiKazushige Kasai
    • Shun YoshiokaMakio TakeuchiKazushige Kasai
    • F25B39/02
    • F25B39/028F25B2500/01
    • A refrigerant flow divider is made up of an inlet pipe 12 through which refrigerant Xin flows in, a main body 11 of which the inside is a cavity, and a plurality of branching pipes 13 through which refrigerant Xout flows out. When the length of the above described main body 11 of the flow divider is L mm and the inner diameter of the above described main body 11 of the flow divider is D2 mm, the relationship 2≦L/D2≦8 holds, and thus, a flow divider can be gained, where discrepancy (variation) in the flow rate ratio in the respective paths for the flow discharged from the outlet of the flow divider and entering the heat exchanger is small and pressure loss is small when there is a change of approximately ±10° in the installation angle, a change in the dryness of the refrigerant at the inlet (0.2 to 0.4) or a change in the flow rate of the refrigerant (50% to 100%).
    • 制冷剂分流器由制冷剂Xin流入的入口管12,内部为空腔的主体11和制冷剂Xout流出的多个分支管13构成。 当分流器的上述主体11的长度为L mm并且分流器的上述主体11的内径为D2mm时,关系2&nlE; L / D2&nlE; 8成立,因此, 可以获得流量分配器,其中从分流器的出口排出并进入热交换器的流量的各个路径中的流量比的差异(变化)小并且当存在变化时的压力损失小 在安装角度约±10°,入口处制冷剂干燥度的变化(0.2〜0.4)或制冷剂流量变化(50%〜100%)。