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    • 1. 发明申请
    • COOLING SYSTEM AND METHOD OF COOLING AN INTERIOR SPACE
    • 冷却系统和冷却室内空间的方法
    • US20160102919A1
    • 2016-04-14
    • US14972224
    • 2015-12-17
    • UNITED METAL PRODUCTS, INC.
    • Stephen Kinkel
    • F28D15/00
    • F28D15/00F24F1/02F24F5/0035F24F2001/0088F24F2001/0092F28F25/00Y02B30/545
    • A cooling system (20) includes a media exchanger (50), a cooling section (22), and a cooling circuit (120) for circulating a cooling fluid (130) between the media exchanger (50) and the cooling section (22). The media exchanger (50) receives outside air (38) and the cooling section (22) receives return air (32) from and interior space (34). When the cooling fluid (130) circulates into the cooling section (22) via the cooling circuit (120), the temperature of the return air (32) is reduced through indirect heat transfer between the cooling fluid (130) and the return air (32) to produce conditioned air (84). The conditioned air (84) is provided as supply air (46) into the interior space (34). When the cooling fluid circulates into the media exchanger via the cooling circuit, the temperature of the cooling fluid is reduced through direct heat transfer between the cooling fluid and the outside air.
    • 冷却系统(20)包括介质交换器(50),冷却部分(22)和用于使介质交换器(50)和冷却部分(22)之间的冷却流体(130)循环的冷却回路(120) 。 介质交换器(50)接收外部空气(38),冷却部分(22)从内部空间(34)接收返回空气(32)。 当冷却流体(130)经由冷却回路(120)循环进入冷却部分(22)时,回流空气(32)的温度通过冷却流体(130)和返回空气(130)之间的间接热传递而减小 32)以产生调节空气(84)。 调节空气(84)作为供应空气(46)设置到内部空间(34)中。 当冷却流体经由冷却回路循环到介质交换器中时,通过冷却流体和外部空气之间的直接热传递来降低冷却液的温度。
    • 4. 发明授权
    • Control methods and systems for indirect evaporative coolers
    • 间接蒸发冷却器的控制方法和系统
    • US09140460B2
    • 2015-09-22
    • US13801210
    • 2013-03-13
    • ALLIANCE FOR SUSTAINABLE ENERGY, LLC
    • Jason WoodsErik Kozubal
    • F25B15/00F24F3/14F24F5/00F24F1/00
    • F24F3/1417F24F5/0035F24F2001/0092Y02B30/545Y02B30/62
    • A control method for operating an indirect evaporative cooler to control temperature and humidity. The method includes operating an airflow control device to provide supply air at a flow rate to a liquid desiccant dehumidifier. The supply air flows through the dehumidifier and an indirect evaporative cooler prior to exiting an outlet into a space. The method includes operating a pump to provide liquid desiccant to the liquid desiccant dehumidifier and sensing a temperature of an airstream at the outlet of the indirect evaporative cooler. The method includes comparing the temperature of the airstream at the outlet to a setpoint temperature at the outlet and controlling the pump to set the flow rate of the liquid desiccant. The method includes sensing space temperature, comparing the space temperature with a setpoint temperature, and controlling the airflow control device to set the flow rate of the supply air based on the comparison.
    • 一种用于操作间接蒸发冷却器来控制温度和湿度的控制方法。 该方法包括操作气流控制装置以向液体干燥剂除湿器提供流量的供应空气。 在将出口排入空间之前,供应空气流过除湿器和间接蒸发冷却器。 该方法包括操作泵以向液体干燥剂除湿器提供液体干燥剂并感测间接蒸发冷却器出口处的气流的温度。 该方法包括将出口处的气流的温度与出口处的设定点温度进行比较,并控制泵以设定液体干燥剂的流速。 该方法包括感测空间温度,将空间温度与设定点温度进行比较,并且基于比较来控制气流控制装置设定供气的流量。
    • 6. 发明申请
    • COOLING SYSTEM FOR A BUILDING WITH LOW ENERGY CONSUMPTION
    • 低能耗建筑冷却系统
    • US20150007601A1
    • 2015-01-08
    • US14372485
    • 2013-01-15
    • Commissariat a I'energie atomique et aux ene alt
    • Louis Stephan
    • F24F5/00
    • F24F5/0035F24F5/0003F24F5/0046F24F5/0092F24F2001/0092F24F2005/0025F24F2005/0032F24F2005/0057Y02A30/272Y02B10/20Y02B10/24Y02B10/40Y02B30/545
    • Building cooling system involving circulation of a cooling liquid in a hydraulic circuit comprising at least one first tank (2), at least one second tank (4) in which at least part of one of its walls (4.1) are made of a porous material and at least one heat exchanger (6) connected in series through a hydraulic circuit, at least one hydraulic pump (8) placed between the first tank (2) and the heat exchanger (6), in which the second tank (4) is located outside the building, in which in which the system comprises means (10) of controlling circulation of liquid from the second tank (4) to the first tank (2), and when the system is in operation to cool the inside of the building, flow from the second tank (4) to the first tank (2) is interrupted and the hydraulic pump (8) circulates the liquid from the first tank (2) to the second tank through the heat exchanger (6), such that the second tank fills up.
    • 包括至少一个第一罐(2)和至少一个第二罐(4)的液压回路中循环冷却液的建筑物冷却系统,其中一个壁(4.1)的至少一部分由多孔材料制成 和通过液压回路串联连接的至少一个热交换器(6),设置在第一罐(2)和热交换器(6)之间的至少一个液压泵(8),第二罐(4) 位于建筑物外部,其中系统包括控制液体从第二罐(4)到第一罐(2)的循环的装置(10),并且当系统运行时冷却建筑物的内部 从第二罐(4)到第一罐(2)的流动被中断,液压泵(8)通过热交换器(6)将液体从第一罐(2)循环到第二罐,使得 第二个坦克填满。
    • 8. 发明申请
    • DUAL USAGE TWO-STAGE INDIRECT EVAPORATIVE COOLING SYSTEM
    • 双用途两级间接蒸发冷却系统
    • US20130104581A1
    • 2013-05-02
    • US13659646
    • 2012-10-24
    • Arthur Consoli
    • Arthur Consoli
    • F28C3/08F24F7/04
    • F24F5/0035F24F2001/0092F28D5/00Y02B30/545
    • Chilled water is produced by an evaporative cooling process. The chilled water is then circulated through a liquid-air heat exchanger to produce a primary air supply of cool-dry air wherein no water is introduced into the cool dry air stream. The primary air supply can be used to cool a space, such as an office, where low humidly is desirable. Additionally, the cool, wet air which is a byproduct of the water-cooling phase can be used as a secondary air supply. The secondary air supply can be used to cool a space where higher humidity is tolerated, such as a warehouse, a garage, a barn, etc. The indirect evaporative cooling system can also be used in conjunction with an air conditioning system to reduce operating costs and increase efficiency.
    • 冷却水通过蒸发冷却过程产生。 然后将冷却水循环通过液体 - 空气热交换器,以产生冷干空气的一次空气供应,其中没有水被引入冷干燥空气流中。 主要空气供应可用于冷却需要低湿度的空间,例如办公室。 此外,作为水冷相的副产物的冷湿空气可以用作二次空气供应。 二次空气供应可用于冷藏容忍较高湿度的空间,例如仓库,车库,谷仓等。间接蒸发冷却系统也可与空调系统结合使用,以降低运营成本 并提高效率。