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    • 15. 发明申请
    • CHILLER CONTROL APPARATUS
    • 冷冻控制设备
    • US20130098084A1
    • 2013-04-25
    • US13806424
    • 2011-07-28
    • Minoru MatsuoKenji UedaSatoshi Nikaido
    • Minoru MatsuoKenji UedaSatoshi Nikaido
    • F25B49/00
    • F25B49/00F25B1/053F25B1/10F25B25/005F25B40/02F25B41/043F25B2339/047F25B2341/0662F25B2400/0411F25B2400/06F25B2400/13F25B2600/021F25B2600/0251F25B2600/2501F25B2600/2515F25B2700/21161F25B2700/21171Y02B30/741
    • A chiller control apparatus increases or decreases chillers in order to efficiently operate an entire chiller system. When the number of chillers increases, an insufficient load value calculation unit calculates an insufficient amount of a load for a required load. Then, using a COP obtained according to an operating environment of the chiller, a chiller-to-be-operated selection unit selects, from among stopped chillers, a chiller having the highest COP when operated with an insufficient amount of a load, as the chiller to be subjected to stage increase. Further, when the number of chillers decreases, an operation pattern extraction unit extracts operation patterns that are combinations of chillers to be operated according to the required load. Then, a chiller-to-be-stopped selection unit obtains a COP of the entire chiller system for each operation pattern, using the COP obtained according to the operating environment of the chiller, and selects a chiller subjected to stage decrease based on the operation pattern corresponding to the highest COP.
    • 冷却器控制装置增加或减少冷却器,以便有效地操作整个冷却器系统。 当冷却器的数量增加时,不足的负载值计算单元计算所需负载的负载量不足。 然后,使用根据冷冻机的运行环境获得的COP,一个冷冻机操作选择单元从停止的冷却器中选择具有最高COP的冷冻机,以不足的负荷量操作,作为 冷水机组需要加班。 此外,当冷却器的数量减少时,操作模式提取单元根据所需的负载提取作为要操作的冷却器的组合的操作模式。 然后,冷冻机停止选择单元使用根据冷冻机的运行环境获得的COP获得每个运行模式的整个冷冻机系统的COP,并根据操作选择进行减速的冷冻机 模式对应于最高COP。
    • 17. 发明申请
    • Method For Controlling a Refrigeration System
    • 控制制冷系统的方法
    • US20080276636A1
    • 2008-11-13
    • US11908823
    • 2006-03-15
    • Claus ThyboOle Ploug
    • Claus ThyboOle Ploug
    • F25B1/00F25D3/00G05D7/00
    • F25B49/022F25B5/02F25B2400/075F25B2400/22F25B2600/0251F25B2600/0272F25B2600/21F25B2600/2513F25B2600/2519F25B2700/1931F25B2700/1933F25B2700/21171
    • A method for controlling a refrigeration system comprising a variable compressor capacity, and at least two refrigeration entities, e.g. display cases. Suction pressure is controlled by means of permitting/preventing a flow of refrigerant into evaporator of one or more refrigeration entities. Compressor capacity is controlled to match a desired capacity level and based on a signal derived from one or more properties of the one or more refrigeration entities, said signal reflecting a possible difference between the current compressor capacity and a current refrigeration demand of the refrigeration system. Reduces wear on compressors because switching them ON/OFF is avoided to the largest extent possible. Prevents problems relating to conflicting control strategies due to control parameters, e.g. suction pressure, being controlled by means of two or more controllable parts, e.g. compressors and flow of refrigerant into refrigeration entities.
    • 一种用于控制包括可变压缩机容量的制冷系统的方法,以及至少两个制冷实体,例如, 展示柜。 通过允许/防止制冷剂流入一个或多个制冷实体的蒸发器来控制吸入压力。 控制压缩机容量以匹配期望容量水平并且基于从一个或多个制冷实体的一个或多个特性导出的信号,所述信号反映当前压缩机容量与制冷系统的当前制冷需求之间的可能差异。 减少压缩机的磨损,因为在最大程度上避免了打开/关闭切换。 防止由于控制参数引起的与冲突控制策略有关的问题,例如 吸入压力,通过两个或更多个可控部件控制,例如, 压缩机和制冷剂流入制冷机构。