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    • 3. 发明申请
    • Low-volume ice making machine
    • 小批量制冰机
    • US20050044875A1
    • 2005-03-03
    • US10898449
    • 2004-07-23
    • Charles SchlosserRichard MillerScott Shedivy
    • Charles SchlosserRichard MillerScott Shedivy
    • F25C1/06F25C1/22F25C1/00F25C5/10
    • F25C1/06F25C1/25F25C2400/12F25C2600/04F25C2700/04
    • An ice machine includes an evaporator with a plurality of individual ice-forming cells. Each ice-forming cell is open at a lower end. A water distributor is coupled to the evaporator and configured to deliver water to the upper end of each ice-forming cell. A refrigeration system in the ice machine is configured to cool each of the plurality of ice-forming cells, such that individual ice cubes are formed in each ice-forming cell. A water recirculation system includes a water collection unit positioned between the evaporator and a water sump. The water collection unit collects water flowing from the ice-forming cells in first and second chambers. A water detection probe is positioned in the second chamber. A harvest cycle is initiated when the water level in the second chamber falls below a specified level. A method of operating the ice machine is also provided.
    • 制冰机包括具有多个单独的制冰单元的蒸发器。 每个成冰池在较低端打开。 水分配器耦合到蒸发器并且被配置为将水输送到每个冰形成单元的上端。 制冰机中的制冷系统被配置为冷却多个制冰单元中的每一个,从而在每个制冰单元中形成各个冰块。 水循环系统包括位于蒸发器和水槽之间的集水单元。 水收集单元收集从第一和第二室中的冰形成单元流出的水。 水检测探针位于第二腔室中。 当第二室中的水位低于指定水平时,开始收获循环。 还提供了一种操作制冰机的方法。
    • 6. 发明申请
    • Ice cube apparatus
    • 冰块装置
    • US20020053210A1
    • 2002-05-09
    • US10033271
    • 2001-10-25
    • Roelof Koster
    • F25B021/02
    • F25B21/04F25C1/06F25C1/22F25C5/06F25C2305/022F25C2400/14
    • Ice cube apparatus for the production of ice cubes, comprising a water reservoir with a filling opening, which can be filled with a desired amount of water, an ice cube tray, which is separate from the water reservoir and has at least one mould cavity, water-metering means for supplying a metered amount of water from the water reservoir to the mould cavity, at least one thermoelectric element for freezing the amount of water in the mould cavity, control means with a timer unit for providing current to the thermoelectric element for a defined freezing time, in such a manner that this element extracts heat on the side of the ice cube tray, release means for releasing a frozen ice cube from the ice cube tray after the freezing time, and discharge means for collecting and dicharging the ice cube which has been released from the ice cube tray.
    • 用于生产冰块的冰块装置,包括可以填充有所需量的水的具有填充开口的储水器,与储水器分离并具有至少一个模腔的冰块托盘, 用于将计量的水从储水器供应到模具腔的水计量装置,用于冷冻模腔中的水量的至少一个热电元件,具有用于向热电元件提供电流的计时器单元的控制装置 定义的冻结时间,以这种方式使得该元件在冰块托盘的一侧提取热量,在冷冻时间之后从冰块托盘释放冷冻冰块的释放装置,以及用于收集和缩小冰的排出装置 从冰块托盘释放的立方体。
    • 9. 发明授权
    • High-efficiency liquid chiller
    • 高效液冷机
    • US5435155A
    • 1995-07-25
    • US169304
    • 1993-12-15
    • Marc A. Paradis
    • Marc A. Paradis
    • F25B39/02F25B47/00F25C1/06F25C3/04F25D31/00F28D7/16F28F9/02F28F19/00F28F27/02F25C5/02
    • F28F9/0275F25B39/02F25B47/006F25C1/06F25C3/04F25D31/00F28D7/16F28F19/006F28F9/0229F25B2339/0242F25C2303/048Y02P60/855
    • A liquid cooling system capable of generating very cold liquid flows, comprising sending said liquid (5) to a heat pump circuit; said circuit including a hot-side heat exchanger (HSHE) and a cold-side heat exchanger (CSHE); said CSHE being provided with conduit means (10) through which said liquid (5) flows; said conduit means (10) being in contact with and being cooled externally by cold medium (10). The improvement in the system comprising the installation of proper thermal barriers between said cold medium and said liquid in all areas where the velocity of said liquid is much lower than the average velocity found inside said conduit means (10); said improvement also comprising proper design of the entrance (3a) of said conduit means (10) to prevent flow detachment; said design preventing any freeze-up of said liquid (5) as well as improving efficiency and durability. An alternative to the above said improvement is simply the elimination of all areas where the velocity of said liquid is much lower than the average velocity found inside said conduit means. Other alternatives are proposed. Apparatus is disclosed. The improvement in the system also comprising the capability to generate and manipulate supercooled liquids in a way that prevents liquid line and cooler freeze-ups. The improvement in the system also comprising new vapor compression cycles as well as new absorption cycle arrangements. Applications in very diversified fields are described. The technology is given the name "SUPERPAC", which stands for "SUPER Pompe A Chaleur", or super heat pump.
    • 一种能够产生非常冷的液体流的液体冷却系统,包括将所述液体(5)发送到热泵回路; 所述电路包括热侧热交换器(HSHE)和冷侧热交换器(CSHE); 所述CSHE设置有导管装置(10),所述液体(5)通过所述导管装置流动; 所述管道装置(10)与冷介质(10)接触并被外部冷却。 该系统的改进包括在所述液体的速度比在所述导管装置(10)内所发现的平均速度低得多的所有区域中在所述冷介质和所述液体之间安装适当的热障碍物。 所述改进还包括适当地设计所述导管装置(10)的入口(3a)以防止流动分离; 所述设计防止所述液体(5)的任何冻结以及提高效率和耐久性。 上述改进的替代方案仅仅是消除所有液体的速度比在所述导管装置内部发现的平均速度低得多的区域。 提出了其他替代方案。 公开了装置。 该系统的改进还包括以防止液体管线和冷却器冻结的方式产生和操纵过冷液体的能力。 该系统的改进还包括新的蒸气压缩循环以及新的吸收循环装置。 描述了非常多样化领域的应用。 该技术的名称为“SUPERPAC”,代表“SUPER Pompe A Chaleur”或超级热泵。