Chilled water storage for milk cooling process

    公开(公告)号:US20050091994A1

    公开(公告)日:2005-05-05

    申请号:US11012320

    申请日:2004-12-16

    CPC classification number: A01J9/04

    Abstract: A process for cooling liquids wherein a coolant is cooled in a chiller during off-peak electrical demand periods, then directed to a first insulated storage vessel where it is stored until off-peak electrical demand periods have ended. During peak electrical demand periods, the coolant flows from the first insulated storage vessel to a flat plate heat exchanger, where a flow of liquid to be cooled, entering through a second conduit, is cooled. The cooled liquid exiting the heat exchanger is directed to a second insulated storage vessel where little or no further cooling of the liquid will be necessary during peak electrical demand periods.

    Chilled water storage for milk cooling process
    2.
    发明申请
    Chilled water storage for milk cooling process 有权
    冷冻水储存用于牛奶冷却过程

    公开(公告)号:US20050183428A1

    公开(公告)日:2005-08-25

    申请号:US11094537

    申请日:2005-03-31

    CPC classification number: A01J9/04

    Abstract: The chilled water storage for milk cooling process encompasses methods for chilling liquids during off peak hours for later consumption, including a method for cooling the interior of a building while conserving energy during peak demand hours, in which water is chilled in a water chiller during the off-peak electrical demand hours, then stored in an insulated tank until peak electrical demand hours. The stored cold water is then pumped through a heat exchanger connected to the ventilation system in the building to cool the air in the building. The water then passes into a second storage tank, where it is held until off-peak hours. A plurality of multi-directional valves automatically control the water flow through the system.

    Abstract translation: 用于牛奶冷却过程的冷冻水储存包括用于在高峰时段内冷却液体以供稍后消费的方法,包括用于在建筑物内部冷却的方法,同时在峰值需求时段节约能量,其中在水冷却器期间冷却水 非峰值电力需求小时,然后存储在绝缘罐中,直到电力需求达到峰值小时。 储存的冷水然后被泵送通过连接到建筑物中的通风系统的热交换器以冷却建筑物中的空气。 然后水然后进入第二个储存罐,在那里将其保持到非高峰时段。 多个多向阀自动控制通过系统的水流。

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