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    • 66. 发明申请
    • ATMOSPHERIC WATER GENERATOR SYSTEM AND METHOD
    • 大气水发电机系统及方法
    • WO2015054435A1
    • 2015-04-16
    • PCT/US2014/059778
    • 2014-10-08
    • SKYWELL, LLC
    • DORFMAN, Ronald, M.YUI, George, M.
    • F25D21/14
    • B01D5/009B01D5/0003B01D5/0006B01D5/0051C02F1/78C02F2303/04C02F2307/10E03B3/28F24F3/1405
    • Atmospheric water generators, systems and methods are presented involve user authentication, recording and tracking of water volumes dispensed by respective users over periods of various lengths, controlling component noise level and timing, and cleaning, heating and cooling the collected water more efficiently. The generators may be placed in network communication with other such generators to exchange water availability information therewith, or may communicate with a central server element by way of LAN, Internet, cell tower, peer-to- peer mesh or satellite. Information is conveyed to the user regarding the amount of water they consume from the water generators, and their resulting positive impact on the environment. Water dispensing data may be shared on the users' social media accounts, or used as inputs for competitions or games in order to further engage the user. User authentication may be accomplished by way of biometrics or an RFID/NFC tag embedded in the user's water vessel.
    • 提出了大气发电机,系统和方法涉及用户认证,记录和跟踪各用户在各种长度的时间段内分配的水量,控制组件噪声水平和时间,以及更有效地清洁,加热和冷却收集的水。 发电机可以放置在与其他这样的发电机的网络通信中以与其交换水可用性信息,或者可以通过LAN,因特网,小区塔,对等网格或卫星与中央服务器元件通信。 向使用者传达关于水发生器消耗的水量的信息,并对其造成对环境的积极影响。 水分配数据可以在用户的​​社交媒体帐户上共享,或者用作比赛或游戏的输入,以进一步吸引用户。 用户认证可以通过生物测定法或嵌入在用户的水中的RFID / NFC标签来完成。
    • 67. 发明申请
    • SYSTEMS AND METHODS FOR CONTROLLING NON-CONDENSABLE GASES
    • 用于控制不可燃气体的系统和方法
    • WO2014190479A1
    • 2014-12-04
    • PCT/CN2013/076307
    • 2013-05-28
    • EMPIRE TECHNOLOGY DEVELOPMENT LLCWANG, Hao
    • WANG, Hao
    • F28B3/02F28B1/00
    • B01D5/0051B01D5/0033B01D5/0078C02F1/048C02F2103/08F28B9/10
    • Methods and systems for diffusing non-condensable gas are described. In an embodiment, a gas diffusion apparatus may be used to reduce non-condensable gas located adjacent to a condensation surface of a heat transfer system. The non-condensable gas may impede condensation at the condensation surface. The gas diffusion apparatus may include a plurality of blades arranged around a hub that is perpendicular to the condensation surface. The plurality of blades may rotate in a plane that is parallel or substantially parallel to the condensation surface. As the blades rotate, they generate gas flow that moves the non-condensable gas away from the condensation surface and imparts momentum on the vapor molecules heading toward the condensation surface. The blades may also contact the non-condensable gas layer and push them away from the condensation surface.
    • 描述了用于扩散不可冷凝气体的方法和系统。 在一个实施例中,气体扩散装置可以用于减少位于传热系统的冷凝表面附近的不可冷凝气体。 不可冷凝气体可能阻碍冷凝表面的冷凝。 气体扩散装置可以包括围绕轮毂布置的多个叶片,该叶片垂直于冷凝表面。 多个叶片可以在平行于或基本上平行于冷凝表面的平面中旋转。 当叶片旋转时,它们产生气流,其使不可冷凝气体从冷凝表面移开,并使蒸汽分子上的动量朝向冷凝表面。 叶片还可以接触不可冷凝气体层并将其推离冷凝表面。