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    • 86. 发明公开
    • HIGH PERFORMANCE WICK
    • HOCHLEISTUNGSDOCHT
    • EP2288430A4
    • 2012-02-29
    • EP09743458
    • 2009-05-05
    • UNIV CORNELL
    • STROOCK ABRAHAM DWHEELER TOBIAS
    • B01D61/00B05B17/04B64D13/08F28D15/04
    • F28D15/046Y10T428/24322
    • A wicking apparatus includes a composite condenser membrane comprising a substrate layer, a vapor inlet end, a liquid discharge end, a plurality of cavities disposed in the substrate layer fluidly coupling the vapor inlet end to the liquid discharge end, and a nanoporous filler material disposed within the plurality of cavities. The nanoporous filler material has a first plurality of open pores with a maximum diameter in the range of 0.2 to 200 nanometers. The first end of the liquid conduit is fluidly coupled to the liquid discharge end of the composite condenser membrane. The wicking apparatus further includes a wick composite evaporator membrane comprising a substrate layer, a liquid inlet end, a vapor discharge end, a plurality of cavities disposed in the substrate layer fluidly coupling the liquid inlet end to the second end of the liquid conduit, and a nanoporous filler material disposed within the plurality of cavities.
    • 芯吸装置包括复合冷凝器膜,其包括基底层,蒸汽入口端,液体排出端,设置在基底层中的多个空腔,其将蒸气入口端流体耦合到液体排出端;以及纳米孔填料, 在多个空腔内。 纳米多孔填料具有最大直径在0.2-200纳米范围内的第一多个开孔。 液体导管的第一端与复合冷凝器膜的液体排出端流体耦合。 所述芯吸装置还包括芯吸复合蒸发器膜,其包括基底层,液体入口端,蒸汽排出端,设置在所述基底层中的流体耦合所述液体入口端到所述液体导管的第二端的多个空腔,以及 设置在多个空腔内的纳米孔填料。