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    • 3. 发明申请
    • DYNAMIC SUPERHEAT CONTROL FOR HIGH EFFICIENCY REFRIGERATION SYSTEM
    • 用于高效制冷系统的动态超控制
    • US20100024455A1
    • 2010-02-04
    • US12181423
    • 2008-07-29
    • John Michael ButoracTimothy Thomas Pearson
    • John Michael ButoracTimothy Thomas Pearson
    • F25B41/04F25B1/00F25B49/00F25B39/02
    • F25B49/02F25B2600/21F25B2600/2513F25B2700/1933F25B2700/21151
    • A vapor compression refrigeration system including components capable of determining the superheat at a compressor inlet is provided. The vapor compression refrigeration system may include sensors capable of making measurements from which the superheat at the compressor inlet may be determined. The vapor compression refrigeration system may be operable to compare the determined superheat level at the inlet to the compressor to a desired superheat level and generate a new evaporator discharge superheat level target for one or more evaporators operatively interconnected to the compressor to affect the superheat at the compressor inlet. The vapor compression refrigeration system may be operable to broadcast the new evaporator discharge superheat level target to the one or more evaporators over a communications bus. The vapor compression refrigeration system may update and broadcast the evaporator discharge superheat level target at programmed intervals.
    • 提供了包括能够确定压缩机入口处的过热的部件的蒸汽压缩式制冷系统。 蒸汽压缩制冷系统可以包括能够进行测量的传感器,可以确定压缩机入口处的过热。 蒸汽压缩制冷系统可操作以将所确定的压缩机入口处的过热水平与期望的过热水平进行比较,并产生用于一个或多个可操作地与压缩机相连的蒸发器的新的蒸发器排放过热水平目标,以影响压缩机过热 压缩机入口。 蒸汽压缩式制冷系统可以用于通过通信总线将新的蒸发器排放过热水平目标广播到一个或多个蒸发器。 蒸气压缩制冷系统可以以编程间隔更新和广播蒸发器排放过热水平目标。
    • 4. 发明授权
    • Method of ionized air-rinsing of containers and apparatus therefor
    • 容器电离空气漂洗方法及其设备
    • US07621301B2
    • 2009-11-24
    • US11403448
    • 2006-04-13
    • Rei-Young WuRichard SchutzenhoferAnthony L. ArmstrongTimothy Thomas OlsemRobert Kent Rusher
    • Rei-Young WuRichard SchutzenhoferAnthony L. ArmstrongTimothy Thomas OlsemRobert Kent Rusher
    • B65B1/04
    • B65B55/24B08B6/00B08B9/286B08B9/34
    • A method and system for cleaning containers being transposed through a container cleaning line, including an open-ended housing, a predetermined container flow path defined by the line of moving containers traversing the enclosure defined by the housing longitudinally, a first set of ionizing air nozzles mounted within the housing for directing ionized compressed air toward the containers in the container flow path, with at least one of the nozzles directing air flow into an open side of each container as it passes the nozzle and a second set of high velocity air nozzles mounted within the housing for directing high velocity compressed air toward the container flow path, the second set of high velocity nozzles being disposed along a direction essentially parallel to the container flow path with at least one of the nozzles flows directing high velocity air flow into the open side of each container as it passes the nozzle. Nozzle guards are provided to prevent contact between the containers and the nozzles.
    • 一种用于清洁容器的方法和系统,所述容器通过容器清洁线路转置,所述容器清洁线路包括敞口的壳体,由纵向由壳体限定的外壳的移动容器线限定的预定的容器流动路径;第一组电离空气喷嘴 安装在壳体内,用于将离子化的压缩空气引向容器流动路径中的容器,其中至少一个喷嘴在通过喷嘴时将空气流动进入每个容器的开口侧,并且安装第二组高速空气喷嘴 在用于将高速度压缩空气朝向容器流动路径引导的壳体内,第二组高速喷嘴沿着基本上平行于容器流动路径的方向设置,其中至少一个喷嘴流动将高速气流引导到开口 每个容器通过喷嘴时的侧面。 提供喷嘴护罩以防止容器和喷嘴之间的接触。