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    • 5. 发明授权
    • Steam conditioning system
    • 蒸汽调节系统
    • US09593598B2
    • 2017-03-14
    • US14710852
    • 2015-05-13
    • Holtec International
    • Akhilesh Vidyutkumar BapatIndresh RampallVytautas Vincas Maciunas
    • F22G5/12F01K17/04F01K9/00F01K3/18F28B9/02F28B1/02
    • F01K17/04F01K3/18F01K9/003F22G5/12F28B1/02F28B9/02F28F2250/06F28F2265/00
    • A steam conditioning system for discharging bypass steam into a condenser of a steam powered generating plant and other uses. The system includes a steam conditioning device comprising an inner evaporative core and an outer shell. The core may be formed of a tubular piping section disposed at least partially inside the outer shell forming an annular space therebetween. An inlet end of the core receives steam from a piping header fluidly connected to an upstream desuperheating pressure reducing station which injects liquid coolant into the steam stream. Steam discharges through the core outlet end into the outer shell, reverses direction, and flows into the condenser. In one embodiment, the steam conditioning device may be disposed inside the dome of the condenser except for the inlet end. The device intends to increase flow residence time to evaporate entrained carryover coolant droplets in the incoming steam before release to the condenser.
    • 一种用于将旁路蒸汽排放到蒸汽发电设备的冷凝器中的蒸汽调节系统和其它用途。 该系统包括蒸汽调节装置,其包括内部蒸发核心和外部壳体。 芯部可以由至少部分地设置在外壳内部的管状管道部分形成,在其间形成环形空间。 芯的入口端部从流体连接到上游减温减压站的管道集管接收蒸汽,其将液体冷却剂注入到蒸汽流中。 蒸汽通过芯出口端排放到外壳中,反向,并流入冷凝器。 在一个实施例中,除了入口端之外,蒸汽调节装置可以设置在冷凝器的圆顶内部。 该装置旨在增加流动停留时间,以在释放到冷凝器之前蒸发进入的蒸汽中夹带的携带冷却剂液滴。
    • 8. 发明申请
    • MICROEMULSION-ENABLED HEAT TRANSFER
    • 微乳液启动热传递
    • US20160209090A1
    • 2016-07-21
    • US14912376
    • 2014-08-19
    • UNIVERSITY OF MARYLAND
    • Bao YANGReinhard RADERMACHERBaolan (Jessica) SHI
    • F25B35/02F01K23/02
    • F25B35/02C09K5/047F01K9/003F01K17/005F01K23/02F22B1/08F25B15/00F28B1/02F28D2021/0066F28F23/00
    • A heat transfer apparatus (102) including: (i) an evaporation chamber (116) in heat transfer communication with a first heat source, wherein the first heat source causes a liquid in the evaporation chamber (116) to evaporate into a gas; (ii) an adsorption/absorption chamber (134) in fluid communication with the evaporation chamber (116) and in heat transfer communication with a cooling source, the adsorption/absorption chamber (134) containing a microemulsion which adsorbs/absorbs the gas, when cooled, as droplets of the liquid sequestered within the microemulsion to form a used microemulsion; and (iii) a desorption chamber (136) in fluid communication with the adsorption/absorption chamber (134) and the evaporation chamber (116), and in heat transfer communication with a second heat source capable of desorbing the liquid droplets out of the used microemulsion as the liquid, without vaporizing the liquid, to form a regenerated microemulsion. Also, methods of using the heat transfer apparatus.
    • 一种传热装置(102),包括:(i)与第一热源传热连通的蒸发室(116),其中所述第一热源使所述蒸发室(116)中的液体蒸发成气体; (ii)与蒸发室(116)流体连通并与冷却源传热连通的吸附/吸收室(134),吸附/吸收室(134)含有吸附/吸收气体的微乳液,当 冷却,作为微乳液中的液滴滴在微乳液中以形成使用的微乳液; 和(iii)与吸附/吸收室(134)和蒸发室(116)流体连通的解吸室(136),并且与能够将液滴从所用的 微乳液作为液体,不蒸发液体,形成再生微乳液。 另外,使用传热装置的方法。