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    • 21. 发明申请
    • FLUID COOLING DEVICE
    • 流体冷却装置
    • WO01038806A1
    • 2001-05-31
    • PCT/JP1999/006490
    • 1999-11-19
    • F25D7/00F28D5/02A23L3/36
    • F28D5/02F25D7/00
    • A fluid cooling device which does not require a large amount of cooling water and can cool a fluid with higher efficiency, wherein a fluid to be cooled flows from below to above through a main pipe (10) as indicated by the arrows. Air is allowed to flow downwards through a preset space provided between a water retaining material (11) and an outer pipe (12), and water dripped in a constant amount at a time from a tank (20) is supplied to the water retaining material (11) and allowed to diffuse quickly to keep the material (11) in a moist condition. Water comes into close contact with the flowing air and evaporates vigorously from the surface of the material (11). Since an evaporating water absorbs a vaporization heat of about 580 calories/1 cc from the surroundings, a vigorously evaporating water from the material (11) quickly reduces the temperature of the main pipe (10) to cool a medium to be cooled flowing thereinside.
    • 一种流体冷却装置,其不需要大量的冷却水并且可以以更高的效率冷却流体,其中待冷却的流体如箭头所示通过主管道(10)从下到上流动。 允许空气向下流过设置在保水材料(11)和外管(12)之间的预设空间,并且一次一次地从罐(20)滴下的水被供给到保水材料 (11)并使其迅速扩散以使材料(11)保持在潮湿状态。 水与流动的空气紧密接触并从材料(11)的表面剧烈蒸发。 由于蒸发水从周围吸收约580卡热/ 1cc的蒸发热,因此来自材料(11)的剧烈蒸发的水快速降低主管(10)的温度,以冷却在其内部流动的待冷却介质。
    • 23. 发明申请
    • HEAT EXCHANGER
    • 热交换器
    • WO1997047935A1
    • 1997-12-18
    • PCT/FI1997000348
    • 1997-06-04
    • VALMET CORPORATIONHEIKKILÄ, Pertti
    • VALMET CORPORATION
    • F28B01/06
    • D21C11/06B01D3/346B01D5/0012B01D5/0081F28D5/02Y10S165/90
    • The invention concerns a heat exchanger, for use in particular in connection with the process outlets at paper, pulp and board mills, which heat exchanger comprises a number of substantially parallel tubes (11) or equivalent, fitted in a duct (12), through which tubes or equivalent the air flow (23) that delivers heat is fitted to pass, and the air flow that receives heat (21) is fitted to pass through the gaps between said tubes (11) in accordance with the cross-flow principle. The heat faces of the tubes (11) have been made larger at the side of the flow that receives heat by means of ribs, lamellae or equivalent, and an air that is moist, saturated, or near the saturation curve is fitted to be used as the air flow (23) that delivers heat in the heat exchanger (10).
    • 本发明涉及一种热交换器,用于特别是与纸,纸浆和板式研磨机上的处理出口结合使用,该热交换器包括多个基本上平行的管(11)或等同物,其安装在管道(12)中,通过 这些管或等同物传递热量的空气流(23)适合通过,并且接收热量(21)的空气流被安装成根据横流原理通过所述管(11)之间的间隙。 管(11)的热面在通过肋,薄片或等同物接收热量的流动侧被制造得更大,并且将饱和或饱和的饱和曲线附近的空气拟合使用 作为在热交换器(10)中传递热量的空气流(23)。
    • 24. 发明申请
    • APPARATUS FOR INDIRECT EVAPORATIVE COOLING
    • 用于间接蒸发冷却的装置
    • WO1987001188A1
    • 1987-02-26
    • PCT/SE1986000367
    • 1986-08-14
    • AB CARL MUNTERSNORBÄCK, Per
    • AB CARL MUNTERS
    • F28C01/00
    • F28F3/025F24F2001/0092F28D5/02F28F2225/04Y02B30/545
    • Apparatus for indirect, evaporative cooling of an useful air current, including a contact body (10) made up in layers, with duct systems between the layers. There are two separate duct systems, useful air for cooling passing through one system (16), while a cooling air current passes through the other system (18). Cooling takes place by evaporation of water in the other duct system (18). The duct-forming means (16, 18) in both systems are disposed such that the useful and cooling air currents flow horizontally, while water supply means (24) supplying water to the other duct system (18) are disposed at the top of the contact body (10), allowing the water to flow vertically downwards in this system (18).
    • 用于间接,蒸发冷却有用气流的设备,包括层叠的接触体(10),层之间的管道系统。 有两个独立的管道系统,冷却通过一个系统(16)的有用空气,而冷却气流通过另一个系统(18)。 冷却通过另一个管道系统(18)中的水蒸发而发生。 两个系统中的管道形成装置(16,18)被布置成使得有用和冷却的气流水平流动,而向另一管道系统(18)供水的供水装置(24)设置在 接触体(10),允许水在该系统(18)中垂直向下流动。
    • 26. 发明申请
    • COMBINED CONVECTOR
    • 组合对象
    • WO2015173767A1
    • 2015-11-19
    • PCT/IB2015/053563
    • 2015-05-14
    • FRIGEL FIRENZE S.P.A.
    • STRUMENTI, FrancescoDORIN, Filippo
    • F28F19/01F28F25/08F28D3/02F28D5/02
    • F28D5/02F28C3/08F28F19/01F28F19/02F28F2245/02
    • A convector for air cooling of a fluid flowing in a pipe, comprising: - a path for a cooling air flow comprising an inlet from and an outlet towards the environment, - a heat exchange section comprising at Ieast one tube bundle defining a heat exchange surface, said section being provided in said path for the air flow, - fan means producing said air flow along said path, so that said air flow externally invests said tube bundle on said; heat exchange surface, - a humidifying section arranged in said path, upstream of said heat exchange section, where water is atomized to be invested by the air flow, characterized by comprising a wetting device for wetting directly with water a portion of the heat exchange surface of said tube bundle to further cool said portion of tube bundle.
    • 一种用于在管道中流动的流体的空气冷却的对流体,包括: - 用于冷却空气流的路径,其包括朝向所述环境的入口和出口; - 热交换部分,其包括限定热交换表面的第一管束 所述部分设置在用于气流的所述路径中, - 风扇意味着沿着所述路径产生所述空气流,使得所述空气流将所述管束外部投入所述管束; 热交换表面, - 设置在所述路径中的加湿部分,所述加湿部分在所述热交换部分的上游,其中水被雾化以被空气流投入,其特征在于包括用于直接与水一起润湿所述热交换表面的一部分的润湿装置 的管束以进一步冷却管束的所述部分。
    • 27. 发明申请
    • WATER COLLECTION SYSTEM FOR INDIRECT EVAPORATIVE COOLER
    • 用于间接蒸发冷却器的水收集系统
    • WO2015137956A1
    • 2015-09-17
    • PCT/US2014/026565
    • 2014-03-13
    • SCHNEIDER ELECTRIC IT CORPORATION
    • BEAN, John H. Jr.GRANTHAM, Roy L.TUTUNOGLU, Ozan
    • F28F25/04
    • F28F25/04F28B9/08F28D5/02F28F25/082F28F2025/005
    • A water collection system is provided for an indirect evaporative cooler. The water collection system includes a housing having an open bottom, a front wall, a back wall, and two end walls, which together define an interior region of the housing. The water collection system further includes a plurality of tube assemblies each extending through one of the front wall and the back wall of the housing and disposed within the interior region of the housing. The water collection system further includes a plurality of panel assemblies disposed within the interior region of the housing above the plurality of tube assemblies. Each panel assembly is associated with a respective tube assembly to channel fluid to the tube assembly. A method of collecting and distributing water within an indirect evaporative cooler configured to spray water on a heat exchanger is further disclosed.
    • 为间接蒸发冷却器提供集水系统。 水收集系统包括具有开口底部,前壁,后壁和两个端壁的壳体,它们共同限定壳体的内部区域。 水收集系统还包括多个管组件,每个管组件延伸穿过壳体的前壁和后壁中的一个并且设置在壳体的内部区域内。 水收集系统还包括多个面板组件,其设置在多个管组件上方的壳体的内部区域内。 每个面板组件与相应的管组件相关联,以将流体引导到管组件。 进一步公开了在配置成在热交换器上喷水的间接蒸发冷却器中收集和分配水的方法。
    • 29. 发明申请
    • DISTRIBUTOR FOR FALLING FILM EVAPORATOR
    • 用于冷却膜蒸发器的分销商
    • WO2015099872A1
    • 2015-07-02
    • PCT/US2014/061705
    • 2014-10-22
    • CARRIER CORPORATION
    • CHRISTIANS, MarcelESFORMES, Jack Leon
    • F28D5/02F28D3/04F28F9/02
    • F28D5/02F25B39/028F25B2339/0242F25B2400/13F25B2400/23F28D3/04F28F9/02F28F9/0273
    • A falling film evaporator includes a plurality of evaporator tubes through which a volume of thermal energy transfer medium is flowed, a separator to separate a flow of liquid refrigerant from a vapor and liquid refrigerant mixture, and a distributor operably connected to the separator to distribute a flow of liquid refrigerant over the plurality of evaporator tubes. The distributor includes a distributor inlet to receive the flow of liquid refrigerant from the separator, a sparge channel connected to the distributor inlet to flow the liquid refrigerant therethrough and exiting the sparge channel via a plurality of sparge openings in an upper surface of the sparge channel, and a distribution sheet disposed below the sparge channel through which the liquid refrigerant flows onto the plurality of evaporator tubes. A flow rate of liquid refrigerant through each sparge opening of the plurality of sparge openings is substantially equal.
    • 降膜蒸发器包括多个蒸发器管,一个体积的热能传递介质通过该蒸发器管,分离器以将液体制冷剂与蒸汽和液体制冷剂混合物分离;以及分配器,其可操作地连接到分离器以分配 液体制冷剂在多个蒸发器管上流动。 分配器包括分配器入口,用于接收来自分离器的液体制冷剂流,连接到分配器入口的喷射通道,以使液体制冷剂流过其中并经由喷射通道的上表面中的多个喷射开口离开喷射通道 以及布置在喷射通道下方的分配片,液体制冷剂通过该分配片流到多个蒸发器管上。 通过多个喷射开口的每个喷射开口的液体制冷剂的流速基本相等。