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    • 6. 发明申请
    • DIRECT SOLAR STEAM GENERATION
    • 直接太阳能蒸汽发生
    • US20130247900A1
    • 2013-09-26
    • US13902492
    • 2013-05-24
    • GLASSPOINT SOLAR, INC.
    • John Setel O'DonnellPeter Emery von BehrensStuart M. Heisler
    • F24J2/12F24J2/24
    • F24S23/71B08B3/08B08B9/055F24S10/40F24S10/70F24S10/742F24S20/20F24S23/74F24S30/425F24S40/20F24S40/80F24S2023/834F28G1/12Y02A20/142Y02E10/41Y02E10/45Y02P80/24
    • In a “once-through” configuration, feedwater is pressurized, preheated, and evaporated in a series of pipes exposed to concentrated solar energy to produce a water-steam mixture for direct distribution to an industrial process such as enhanced oil recovery or desalination. Active steam quality management, in a preheat mode, vents warm/hot water and low-quality steam to a return vessel where steam is recondensed via contact with water and fed back in as feedwater. In an operating mode, the venting is disabled, and high-quality steam is directed as an outlet stream. Inlet water flowrate and outlet valves are managed to reduce effects of variation in the solar energy. A steam generator continuous piping system uses a single continuous receiver pipe that is illuminated by segmented parabolic mirrors enabled to track the sun to reduce high-temperature fouling. Provisions for steam generator piping recurring maintenance are provided. Low-temperature “overnight” solar field management reduces low-temperature fouling.
    • 在“一次通过”配置中,给水被加压,预热并在一系列暴露于太阳能集中的管道中蒸发,以产生水蒸气混合物,用于直接分配到工业过程,例如提高采油或脱盐。 主动蒸汽质量管理,在预热模式下,将热水/热水和低质量蒸汽排放到返回船舶,蒸汽通过与水接触并重新进行回水作为给水。 在操作模式下,通气被禁用,高质量蒸汽作为出口流引导。 管入口水流量和出口阀可以减少太阳能变化的影响。 蒸汽发生器连续管道系统使用单个连续的接收管,其被分段抛物面反射镜照亮,能够跟踪太阳以减少高温结垢。 提供蒸汽发生器管道循环维护的规定。 低温“过夜”太阳能场管理降低了低温结垢。
    • 9. 发明申请
    • OILFIELD APPLICATION OF SOLAR ENERGY COLLECTION
    • 太阳能收集的油田应用
    • US20140345599A1
    • 2014-11-27
    • US14194919
    • 2014-03-03
    • GLASSPOINT SOLAR, INC.
    • John Setel O'DonnellPeter Emery von BehrensStuart M. HeislerDavid Bruce Jackson
    • F24J2/42
    • F24S90/00E21B43/24F01K13/02F01K17/04F22B1/006F22B33/18F24S10/70F24S20/20F24S23/74F24S30/425F24S2023/834Y02E10/41Y02E10/45Y02E10/47Y02E20/14Y02P80/24
    • Solar energy is collected and used for various industrial processes, such as oilfield applications, e.g. generating steam that is injected downhole, enabling enhanced oil recovery. Solar energy is indirectly collected using a heat transfer fluid in a solar collector, delivering heat to a heat exchanger that in turn delivers heat into oilfield feedwater, producing hotter water or steam. Solar energy is directly collected by directly generating steam with solar collectors, and then injecting the steam downhole. Solar energy is collected to preheat water that is then fed into fuel-fired steam generators that in turn produce steam for downhole injection. Solar energy is collected to produce electricity via a Rankine cycle turbine generator, and rejected heat warms feedwater for fuel-fired steam generators. Solar energy is collected (directly or indirectly) to deliver heat to a heater-treater, with optional fuel-fired additional heat generation.
    • 收集太阳能并用于各种工业过程,例如油田应用,例如油田。 产生注入井下的蒸汽,可以提高油回收率。 使用太阳能收集器中的传热流体间接地收集太阳能,将热量传递到热交换器,热交换器又将热量输送到油田给水中,产生更热的水或蒸汽。 直接通过太阳能收集器产生蒸汽直接收集太阳能,然后将井下的蒸汽注入。 收集太阳能以预热水,然后将其进料到燃料蒸汽发生器中,其又产生用于井下注入的蒸汽。 收集太阳能通过兰金循环涡轮发电机产生电力,并且拒绝加热燃料燃烧蒸汽发生器的给水。 收集太阳能(直接或间接)以将热量传递到加热器处理器,并且可选地燃料燃烧附加的发热。