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    • 1. 发明申请
    • HEAT EXCHANGER WITH ENHANCED AIR DISTRIBUTION
    • 带有增强空气分配的热交换器
    • US20080313905A1
    • 2008-12-25
    • US12204909
    • 2008-09-05
    • Dan M. ManoleDonald L. Coffey
    • Dan M. ManoleDonald L. Coffey
    • B21D53/02
    • F28D1/04F25B39/02F25B2500/18F25D19/02F25D2317/0651F25D2317/0654F25D2317/0661F25D2317/0664Y10S62/903Y10T29/4935Y10T29/49359Y10T29/49385Y10T29/49396Y10T29/49771
    • A complete refrigeration system (CRS) including at least one heat exchanger which is designed to occupy an irregular volume to reduce the overall profile of the CRS. The heat exchanger may be a condenser or an evaporator, and includes a substantially solid body made of a thermally conductive metal, plastic, or other material. A plurality of fluid and refrigerant passageways are defined substantially within the solid body for conducing fluid and refrigerant, respectively, through the solid body and facilitating the transfer of heat between the fluid and refrigerant. Also disclosed is a method wherein the spatial orientation of each passageway is optimized with respect to all of the other passageways and the walls of the solid body by determining the relative distance of each passageway from all of the other passageways and the walls of the solid body at a plurality of points along each passageway, followed by adjusting the spatial orientation of the passageway accordingly.
    • 完整的制冷系统(CRS)包括至少一个热交换器,其被设计成占据不规则的体积以减小CRS的整体轮廓。 热交换器可以是冷凝器或蒸发器,并且包括由导热金属,塑料或其它材料制成的基本上固体。 多个流体和制冷剂通道基本上限定在固体内部,用于分别通过固体导管流体和制冷剂,并且有助于流体和制冷剂之间的热传递。 还公开了一种方法,其中通过确定每个通道与所有其它通道和固体的壁的相对距离,相对于固体的所有其它通道和壁来优化每个通道的空间取向 在沿着每个通道的多个点处,随后相应地调整通道的空间取向。
    • 3. 发明授权
    • Method of making a refrigeration system having a heat exchanger
    • 制造具有热交换器的制冷系统的方法
    • US07900354B2
    • 2011-03-08
    • US12204909
    • 2008-09-05
    • Dan M. ManoleDonald L. Coffey
    • Dan M. ManoleDonald L. Coffey
    • B21D53/06F25B39/02
    • F28D1/04F25B39/02F25B2500/18F25D19/02F25D2317/0651F25D2317/0654F25D2317/0661F25D2317/0664Y10S62/903Y10T29/4935Y10T29/49359Y10T29/49385Y10T29/49396Y10T29/49771
    • A complete refrigeration system (CRS) including at least one heat exchanger which is designed to occupy an irregular volume to reduce the overall profile of the CRS. The heat exchanger may be a condenser or an evaporator, and includes a substantially solid body made of a thermally conductive metal, plastic, or other material. A plurality of fluid and refrigerant passageways are defined substantially within the solid body for conducing fluid and refrigerant, respectively, through the solid body and facilitating the transfer of heat between the fluid and refrigerant. Also disclosed is a method wherein the spatial orientation of each passageway is optimized with respect to all of the other passageways and the walls of the solid body by determining the relative distance of each passageway from all of the other passageways and the walls of the solid body at a plurality of points along each passageway, followed by adjusting the spatial orientation of the passageway accordingly.
    • 完整的制冷系统(CRS)包括至少一个热交换器,其被设计成占据不规则的体积以减小CRS的整体轮廓。 热交换器可以是冷凝器或蒸发器,并且包括由导热金属,塑料或其它材料制成的基本上固体。 多个流体和制冷剂通道基本上限定在固体内部,用于分别通过固体导管流体和制冷剂,并且有助于流体和制冷剂之间的热传递。 还公开了一种方法,其中通过确定每个通道与所有其它通道和固体的壁的相对距离,相对于所述固体的所有其它通道和壁来优化每个通道的空间取向 在沿着每个通道的多个点处,随后相应地调整通道的空间取向。
    • 4. 发明授权
    • Heat exchanger with enhanced air distribution
    • 具有增强空气分布的热交换器
    • US07779648B2
    • 2010-08-24
    • US11262187
    • 2005-10-28
    • Dan M. ManoleDonald L. Coffey
    • Dan M. ManoleDonald L. Coffey
    • F25B39/02
    • F28D1/04F25B39/02F25B2500/18F25D19/02F25D2317/0651F25D2317/0654F25D2317/0661F25D2317/0664Y10S62/903Y10T29/4935Y10T29/49359Y10T29/49385Y10T29/49396Y10T29/49771
    • A complete refrigeration system (CRS) including at least one heat exchanger which is designed to occupy an irregular volume to reduce the overall profile of the CRS. The heat exchanger may be a condenser or an evaporator, and includes a substantially solid body made of a thermally conductive metal, plastic, or other material. A plurality of fluid and refrigerant passageways are defined substantially within the solid body for conducing fluid and refrigerant, respectively, through the solid body and facilitating the transfer of heat between the fluid and refrigerant. Also disclosed is a method wherein the spatial orientation of each passageway is optimized with respect to all of the other passageways and the walls of the solid body by determining the relative distance of each passageway from all of the other passageways and the walls of the solid body at a plurality of points along each passageway, followed by adjusting the spatial orientation of the passageway accordingly.
    • 完整的制冷系统(CRS)包括至少一个热交换器,其被设计成占据不规则的体积以减小CRS的整体轮廓。 热交换器可以是冷凝器或蒸发器,并且包括由导热金属,塑料或其它材料制成的基本上固体。 多个流体和制冷剂通道基本上限定在固体内部,用于分别通过固体导管流体和制冷剂,并且有助于流体和制冷剂之间的热传递。 还公开了一种方法,其中通过确定每个通道与所有其它通道和固体的壁的相对距离,相对于固体的所有其它通道和壁来优化每个通道的空间取向 在沿着每个通道的多个点处,随后相应地调整通道的空间取向。
    • 6. 发明授权
    • Self-balanced compressor crankshaft
    • 自平衡压缩机曲轴
    • US06695601B2
    • 2004-02-24
    • US10164864
    • 2002-06-07
    • Donald L. Coffey
    • Donald L. Coffey
    • F03C200
    • F04C29/0021F04C29/0057Y10S417/902Y10T74/2183
    • A hermetic compressor assembly including a compressor housing, a compression mechanism disposed in the housing, a motor disposed in the housing; and a crankshaft operatively coupling the compression mechanism and the motor and having an axis of rotation. The crankshaft includes a cylindrical eccentric and a counter eccentric lobe. The cylindrical eccentric has a central axis, defines a circular axial profile, and is located on one radial side of the axis of rotation. The counter eccentric lobe is integrally formed with the crankshaft on the opposite side of the crankshaft from the eccentric, is axially adjacent the eccentric, and is located within the circular axial profile.
    • 一种封闭式压缩机组件,包括压缩机壳体,设置在壳体中的压缩机构,设置在壳体中的电动机; 以及可操作地联接压缩机构和马达并具有旋转轴的曲轴。 曲轴包括圆柱形偏心轮和偏心偏心片。 圆柱形偏心件具有中心轴线,限定圆形轴向轮廓,并且位于旋转轴线的一个径向侧上。 偏心偏心片与曲轴的偏心偏心的曲轴一体形成,轴向相邻于偏心轮,并位于圆形轴向轮廓内。