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    • 71. 发明公开
    • A compressed air dehumidifier
    • 压缩空气除湿机
    • EP0002325A1
    • 1979-06-13
    • EP78300616.6
    • 1978-11-10
    • ORION MACHINERY COMPANY LIMITED
    • Nanaumi, KazuyukiBaba, Koji
    • F28D7/00F28B7/00F28B1/02
    • B01D53/265F28B1/02F28D7/0066F28D7/0083F28D7/08F28D7/087
    • A heat exchanger for cooling system compressed air dehumidifiers includes an inner body (1) forming a dehumidifying passage (2) provided with a cooler (16), an outer body (5) surrounding the inner body (1) and forming a pre-cooling passage (6) along the outer periphery of the inner body (1), an air supply port (10) in the outer body (5), through which compressed air is led into the pre-cooling passage (6) from one end thereof, a communicating hole (11) in the inner body (1) to guide the air led into the pre-cooling passage (6) out through its other end into the dehumidifying passage (2) through one end thereof, and a plurality of heat transmitting pipes (14) extending through the precooling passage (6) in order to form an air-flow passage which guides the compressed air out of the other end of the dehumidifying passage (2) to an air discharge port (12) provided in the outer body (5). The heat of the compressed air in the air-flow passage (14) which has been cooled and dehumidified in the dehumidifying passage and is flowing towards the air discharge port (12) is exchanged with that of the compressed air of relatively high temperature in the pre-cooling passage (6) flowing from the air supply port (10) towards the dehumidifying passage (2). In this manner, the heat exchanger simultaneously precools the compressed air to be dehumidified and heats already dehumidified compressed air. Further, by maintaining the outer body (5) which forms the outer surface of the heat exchanger at a relatively high temperature dew drops on the surface are prevented from forming.
    • 一种用于冷却系统压缩空气除湿器的热交换器,包括:形成设有冷却器(16)的除湿通道(2)的内体(1);围绕内体(1)并形成预冷的外体(5) 沿着所述内体(1)的外周的通路(6),所述外体(5)中的供气口(10),压缩空气通过所述供气口从其一端导入所述预冷却通路(6) ,内部本体(1)中的连通孔(11),用于将引入预冷却通道(6)的空气通过其另一端通过其一端引导到除湿通道(2)中,并且多个热量 为了形成将压缩空气从除湿通路2的另一端导出到设置在该预冷通路6中的空气排出口12的空气流通路, 外体(5)。 已经在除湿通道中被冷却和除湿并朝向空气排出口(12)流动的空气流动通道(14)中的压缩空气的热量与在空气排出口(12)中的相对高温的压缩空气的热量 预冷通道6从供气口10朝向除湿通道2流动。 以这种方式,热交换器同时预先冷却待除湿的压缩空气并加热已经除湿的压缩空气。 此外,通过将形成热交换器外表面的外体(5)保持在相对较高的温度,防止了在表面上形成露滴。
    • 73. 发明公开
    • STEAM HEAT EXCHANGER
    • EP4279849A1
    • 2023-11-22
    • EP22755514.1
    • 2022-02-08
    • Li, Yongtang
    • Li, Yongtang
    • F28B1/02F28B9/08F28F9/02
    • The present invention relates to a steam heat exchanger, comprising a composite header, wherein a first-stage steam inlet header and a second-stage steam inlet header are arranged above the composite header, and the composite header is in communication with the second-stage steam inlet header by means of a transition pipe; and further comprising two groups of heat exchange tubes or heat exchange plates, wherein inlet and outlet ends of a first group of heat exchange tubes or heat exchange plates are respectively connected to the first-stage steam inlet header and the composite header, and inlet and outlet ends of a second group of heat exchange tubes or heat exchange plates are respectively connected to the second-stage steam inlet header and the composite header. According to the present invention, a steam flow rate in a first-stage heat exchange tube and in a heat exchange plate (tube) pass along a flow direction of a condensation liquid is increased, the discharge speed of a condensation liquid film is accelerated, the thickness of the condensation liquid film is greatly reduced, and turbulence in the condensation liquid film is caused, so that the heat exchange efficiency in a first group of heat exchange plate (tube) pass is greatly improved. According to the present invention, the piping structure comprising the header is significantly simplified, and a secondary pipeline connection between heat exchanger groups is reduced. Thus, the processing and assembly of the pipeline structure are more convenient.