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    • 1. 发明申请
    • SOLAR PUMP SYSTEMS AND RELATED METHODS
    • 太阳能泵系统及相关方法
    • WO2007015793A2
    • 2007-02-08
    • PCT/US2006/027621
    • 2006-07-17
    • CLAUDIO, Filippone
    • CLAUDIO, Filippone
    • F24J2/24
    • F04B47/08F03G6/00F04B17/006F24S10/50F24S2080/05Y02E10/44Y02E10/46Y10T137/2931Y10T137/2934
    • Various embodiments of a fluid displacement system are disclosed. The system may include a reservoir containing a fluid in a liquid state and a first chamber hydraulically connected to the reservoir to receive the fluid from the reservoir. The first chamber may be configured to receive solar energy and configured to convert the received solar energy to vaporize the fluid. The system may also include a second chamber hydraulically connected to the first chamber to receive the vaporized fluid from the first chamber. The second chamber may be configured to condense the vaporized fluid, causing depressurization in the second chamber. The system may also include a hydraulic connection between the second chamber and a source of fluid to be displaced. The system may be configured such that the depressurization of the second chamber may cause fluid in the source of fluid to be displaced through the hydraulic connection.
    • 公开了流体排量系统的各种实施例。 该系统可以包括容纳液体的液体的储存器和与储存器液压地连接以从储存器接收流体的第一室。 第一室可以被配置为接收太阳能并且被配置为转换所接收的太阳能以使流体蒸发。 该系统还可以包括液压连接到第一室的第二室,以从第一室接收蒸发的流体。 第二室可以被配置为冷凝汽化的流体,从而导致第二室中的减压。 该系统还可以包括在第二室和要移动的流体源之间的液压连接。 该系统可以被配置成使得第二腔室的减压可以使得流体源中的流体通过液压连接而移动。
    • 2. 发明申请
    • COOLING SYSTEMS AND RELATED METHODS
    • 冷却系统和相关方法
    • WO2008011129A2
    • 2008-01-24
    • PCT/US2007/016423
    • 2007-07-20
    • CLAUDIO, Filippone
    • CLAUDIO, Filippone
    • F28D15/00
    • F25B27/00
    • Various embodiments of cooling systems are disclosed. The systems may include a fluid cooling system whose energy source is provided by heating of a first fluid while compressing a second fluid. The first fluid may be in a liquid state contained in a reservoir hydraulically connected to a first chamber. The first chamber may be configured to receive thermal energy utilized to convert the first fluid into a vapor. The system may also include a second chamber hydraulically connected to the first chamber to receive the vaporized fluid from the first chamber. The second chamber may be formed by a first and a second sub-chambers. The first sub- chamber may be configured to condense the vaporized first fluid, causing depressurization in the second sub-chamber. The depressurization of the second sub-chamber may drive a low vapor pressure fluid (or a gas) through an expansion valve causing evaporation of the second fluid. In addition an energy converter (e.g. Turbine Generator) may be configured to operate while the second fluid expands so as to generate electricity.
    • 公开了冷却系统的各种实施例。 该系统可以包括流体冷却系统,其能量源通过在压缩第二流体的同时加热第一流体来提供。 第一流体可以处于容纳在与第一腔室液压连接的储存器中的液态。 第一腔室可构造成接收用于将第一流体转换成蒸气的热能。 该系统还可以包括与第一室液压连接以接收来自第一室的汽化流体的第二室。 第二室可以由第一和第二子室形成。 第一子腔室可构造成冷凝汽化的第一流体,从而引起第二子腔室内的减压。 第二子室的减压可以驱动低蒸气压流体(或气体)通过膨胀阀,引起第二流体的蒸发。 另外,能量转换器(例如涡轮发电机)可以被配置为在第二流体膨胀时操作以便发电。