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    • 24. 发明授权
    • Machine for producing water for wind energy
    • 风能生产用水机
    • US08820107B2
    • 2014-09-02
    • US12095324
    • 2006-11-28
    • Marc Hugues Parent
    • Marc Hugues Parent
    • F25D21/14E03B3/28F03D9/02F03D9/00B01D53/26
    • E03B3/28B01D53/26F03D9/00F03D9/11F03D9/25F05B2260/20Y02A20/109Y02E10/72Y02E10/725Y02P90/50
    • A wind machine for producing water by condensation, includes a wind rotor, an air-dehumidifying unit and at least one electric power generation unit, these being supported by a tower anchored in the ground, the dehumidifying unit including at least one refrigeration compressor, at least one condenser and at least one evaporator that are connected together by a refrigerant fluid circuit, incorporating a member for expanding the fluid, the machine furthermore including elements for recovering and storing condensed water vapor. The at least one electric power generation unit is mechanically coupled directly to the wind rotor via its rotation shaft. The wind machine includes a device for storing and recovering the electric power thus generated and a device for automatically controlling and regulating the dehumidifying unit.
    • 一种用于通过冷凝产生水的风力机,包括风力转子,空气除湿单元和至少一个发电单元,其由锚固在地下的塔支撑,所述除湿单元包括至少一个制冷压缩机, 至少一个冷凝器和至少一个通过制冷剂流体回路连接在一起的蒸发器,其中结合有用于膨胀流体的构件,该机器还包括用于回收和储存冷凝水蒸气的元件。 至少一个发电单元经由其旋转​​轴直接机械地联接到风力转子。 风机包括用于存储和恢复由此产生的电力的装置和用于自动控制和调节除湿单元的装置。
    • 27. 发明授权
    • Device and method for condensing water
    • 冷凝水的装置和方法
    • US08657926B2
    • 2014-02-25
    • US13264022
    • 2010-04-12
    • Jürgen MielkeKlaus Strätz
    • Jürgen MielkeKlaus Strätz
    • B01D45/00
    • B01D53/266B01D5/0027B01D5/0051E03B3/28Y02A20/109
    • A device for condensing water includes a container with a plurality of openings and a heat transfer zone arranged in an interior of the container. The heat transfer zone includes a bulk material layer and/or a fiber layer and/or a textile layer and/or a grid layer and/or a lattice layer and/or a perforated plate. The interior of the container is subdivided by the heat transfer zone into a first zone and a second zone. Further, the heat transfer zone has at least in sections an open porosity and/or channels through which process gas can flow from the first zone to the second zone and through which a further process gas in the form of cooling gas can flow in a reverse direction. A permeable region of the heat transfer zone partially includes materials which have a thermal conductivity of more than 20 W(mK)−1 in a temperature range up to 300° C.
    • 用于冷凝水的装置包括具有多个开口的容器和布置在容器内部的传热区域。 传热区包括散装材料层和/或纤维层和/或织物层和/或网格层和/或格子层和/或多孔板。 容器的内部由传热区域划分成第一区域和第二区域。 此外,传热区至少部分具有开放的孔隙率和/或通道,工艺气体可以通过该孔隙从第一区域流到第二区域,并且冷却气体形式的另外的处理气体可以通过该区域反向流动 方向。 传热区的可渗透区域部分地包括在高达300℃的温度范围内具有大于20W(mK)-1的热导率的材料。
    • 28. 发明申请
    • DEW EXTRACTING DEVICE
    • DEW提取设备
    • US20130098080A1
    • 2013-04-25
    • US13280450
    • 2011-10-25
    • Robert P. Biancardi
    • Robert P. Biancardi
    • F25B49/00F25D21/00F25D17/06
    • E03B3/28Y02A20/109
    • A method and system for condensing water from ambient air. A dew extracting device with a dew extraction zone having surfaces has the surfaces chilled to below dew temperature for a first period of time. An air moving device directs a flow of air over the chilled surfaces so that liquid water condenses on the surfaces, raising the temperature of the surfaces. The chilling of the surfaces is terminated for a second period of time and liquid water is removed from the surfaces and heat of condensation is removed from the dew extraction zone. Then the process repeats to obtain additional liquid water.
    • 一种用于冷凝来自环境空气的水的方法和系统。 具有露面的露水提取装置具有表面,其表面在第一时间段内被冷却至低于露点温度。 空气移动装置引导空气流过冷冻表面,使得液体水在表面上冷凝,提高表面的温度。 表面的冷却终止了第二个时间段,液面水从表面上除去,冷凝热从露水区域中除去。 然后重复该过程以获得额外的液态水。
    • 29. 发明授权
    • Method of producing metal plate type water, a metal plate type water production apparatus, a water collection metal plate, and a water collection metal element
    • 金属板式水的制造方法,金属板式水处理装置,集水金属板和集水金属元件
    • US08356488B2
    • 2013-01-22
    • US12374852
    • 2007-07-24
    • Hideya KoshiyamaTakuya Koshiyama
    • Hideya KoshiyamaTakuya Koshiyama
    • F25D17/06
    • B01D53/265E03B3/28Y02A20/109Y10T428/24355
    • By cooling a metal plate, a water film is generated on a surface of the metal plate due to dew condensation, in a linear increase amount process and at before stage of saturation, the generation water is flipped off, and the generation water film is peeled off forcibly from the metal plate and water collection is carried out. It provides the metal plate, a cooler for cooling the metal plate, and a water film peeling-off mechanism for flipping off forcibly and peeling off forcibly the water film generated on the surface of the metal plate. A water collection metal plate wherein with the metal plate having the surface in which an effective surface of after processing is enlarged to a surface area before processing, the water film is generated to the surface of the metal plate by dew condensing moisture in atmosphere, the generation water film is flipped off forcibly and peeling off from the metal plate, thereby the water collection is carried out.
    • 通过冷却金属板,由于结露而在金属板的表面上产生水膜,呈线性增加的过程,并且在饱和之前,将发生水翻转,并将生成水膜剥离 从金属板强制关闭和收集水。 它提供金属板,用于冷却金属板的冷却器和强制翻转的水膜剥离机构,强制地剥离在金属板的表面上产生的水膜。 一种集水金属板,其中金属板具有在加工之前后处理的有效表面扩大到表面积的表面,通过在大气中凝结水分而在金属板的表面上产生水膜, 一代水膜被强制翻转并从金属板上剥离,从而进行收水。
    • 30. 发明授权
    • Method, apparatus, and processes for producing potable water utilizing reverse osmosis at ocean depth in combination with shipboard moisture dehumidification
    • 利用海洋深度的反渗透生产饮用水的方法,设备和方法,结合船上湿度除湿
    • US08282830B2
    • 2012-10-09
    • US13025232
    • 2011-02-11
    • Ival O. Salyer
    • Ival O. Salyer
    • B01D61/00B01D63/00B01D3/10B01D15/00C02F3/12F25D25/00F25D17/06
    • B01D5/0024B01D5/0057B01D5/0084B01D5/009B01D61/08B01D61/10B63J1/00C02F1/441C02F2103/08C02F2201/008Y02A20/109Y02A20/128Y02A20/131
    • Devices and methods for producing purified water. The device includes a reverse osmosis subsystem, a dehumidification subsystem and a purified water storage tank fluidly coupled to the subsystems such that purified water produced by each can be locally stored. A vehicular platform, such as a ship, can be used to locate the device adjacent a supply of saline water and humid air. A saline water inlet, membrane and purified water outlet cooperate in the reverse osmosis subsystem to allow preferential passage of water relative to salt in a saline water supply, while the dehumidification subsystem includes a heat exchanger that extracts moisture from the ambient humid air. Purified water produced by each of the subsystems can be used as a potable water source. When used in conjunction with a ship, part or all of the reverse osmosis subsystem can be submersed to a depth sufficient to generate a hydrostatic pressure that is in turn sufficient to passively operate the reverse osmosis membrane such that additional pressurizing equipment, such as a pump, is not needed. Furthermore, the temperature of the water purified by the reverse osmosis subsystem may be low enough to be used as a condensing agent for the ambient humid air passing through the dehumidification subsystem.
    • 用于生产纯净水的装置和方法。 该装置包括反渗透子系统,除湿子系统和与子系统流体耦合的净化储水箱,使得由每个子系统产生的净化水可以被局部存储。 诸如船的车辆平台可用于将设备定位在邻近盐水和潮湿空气的供应处。 盐水入口,隔膜和纯净水出口在反渗透子系统中配合,以允许在盐水供应源中相对于盐优先通过水,而除湿子系统包括从周围潮湿空气中提取水分的热交换器。 由每个子系统产生的净化水可以用作饮用水源。 当与船舶一起使用时,部分或全部反渗透子系统可以浸没到足以产生静水压力的深度,这进一步足以被动地操作反渗透膜,使得附加的加压设备,例如泵 ,不需要。 此外,由反渗透子系统净化的水的温度可能低到足以用作通过除湿子系统的环境潮湿空气的冷凝剂。