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    • 1. 发明授权
    • Cooling apparatus and cooling system utilizing adsorbents
    • 使用吸附剂的冷却装置和冷却系统
    • US06604374B2
    • 2003-08-12
    • US09939915
    • 2001-08-27
    • Mutsuhiro ItoTatsuya AsanoMasanobu HasataniFujio Watanabe
    • Mutsuhiro ItoTatsuya AsanoMasanobu HasataniFujio Watanabe
    • F25B2700
    • F24F3/1411B60H1/00007B60H1/3201
    • In a cooling apparatus, air within a room is first introduced into a radiator-type adsorber (1), where moisture contained in the air is adsorbed by A-type silica gel. The resulting low-humidity air is subsequently introduced into a desorption cooler (5), where moisture is desorbed from B-type silica gel, thereby humidifying and cooling the air. The resulting low-temperature air is then used for cooling. When a cooling capacity of the cooling apparatus is lowered, air from a heat source is introduced into the radiator-type adsorber (1), where the moisture is desorbed from the A-type silica gel, thereby recovering the adsorbability thereof. The high-humidity air resulting from the desorption of the moisture is subsequently introduced into the desorption cooler (5), where the moisture contained in the air is adsorbed by the B-type silica gel, thereby recovering the desorption cooling capacity thereof.
    • 在冷却装置中,室内的空气首先被引入散热器型吸附器(1),其中包含在空气中的水分被A型硅胶吸附。 随后将所得低湿空气引入解吸冷却器(5)中,其中水分从B型硅胶中解吸,从而加湿和冷却空气。 然后将所得到的低温空气用于冷却。 当冷却装置的冷却能力降低时,来自热源的空气被引入散热器型吸附器(1)中,其中水分从A型硅胶中解吸,从而回收其吸附性。 然后将由水分解吸附的高湿空气引入到解吸冷却器(5)中,其中包含在空气中的水分被B型硅胶吸附,从而回收其解吸冷却能力。