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    • 4. 发明申请
    • SYSTEMS, METHODS AND DEVICES FOR THE MANAGEMENT OF HEAT REMOVAL WITHIN A COMPRESSION AND/OR EXPANSION DEVICE OR SYSTEM
    • 用于压缩和/或扩展装置或系统中的热去除管理的系统,方法和装置
    • US20140250880A1
    • 2014-09-11
    • US14047526
    • 2013-10-07
    • General Compression, Inc.
    • Eric D. IngersollJustin A. AbornMatthew Blieske
    • F01B29/10
    • F01B29/10F02C6/16F28D20/0034Y02E60/142Y02E60/15
    • Systems, methods and devices for optimizing heat transfer within a device or system used to compress and/or expand a gas, such as air, are described herein. In some embodiments, a compressed air device and/or system can include an actuator such as a hydraulic actuator that can be used to compress a gas within a pressure vessel. An actuator can be actuated to move a liquid into a pressure vessel such that the liquid compresses gas within the pressure vessel. In such a compressor/expander device or system, during the compression and/or expansion process, heat can be transferred to the liquid used to compress the air. The compressor/expander device or system can include a liquid purge system that can be used to remove at least a portion of the liquid to which the heat energy has been transferred such that the liquid can be cooled and then recycled within the system.
    • 这里描述了用于优化用于压缩和/或膨胀气体(例如空气)的装置或系统内的传热的系统,方法和装置。 在一些实施例中,压缩空气装置和/或系统可以包括可用于压缩压力容器内的气体的诸如液压致动器的致动器。 致动器可以被致动以将液体移动到压力容器中,使得液体压缩压力容器内的气体。 在这种压缩机/膨胀机装置或系统中,在压缩和/或膨胀过程中,热量可以传递到用于压缩空气的液体。 压缩机/膨胀器装置或系统可以包括液体吹扫系统,其可以用于去除已经转移热能的液体的至少一部分,使得液体可以被冷却,然后在系统内再循环。
    • 9. 发明授权
    • Compressor and/or expander device
    • 压缩机和/或膨胀机装置
    • US08850808B2
    • 2014-10-07
    • US13728230
    • 2012-12-27
    • General Compression, Inc.
    • Eric D. IngersollJustin A. Aborn
    • F01B29/00F15B21/04F03D9/02
    • F03D9/028F02G1/044F02G1/047F02G1/055F03D9/17F03D9/257Y02E10/72Y02E60/15Y10T137/0396Y10T137/3124Y10T137/4807Y10T137/86212
    • Systems and methods for operating a hydraulically actuated device/system are described herein. For example, systems and methods for the compression and/or expansion of gas can include at least one pressure vessel defining an interior region for retaining at least one of a volume of liquid or a volume of gas and an actuator coupled to and in fluid communication with the pressure vessel. The actuator can have a first mode of operation in which a volume of liquid disposed within the pressure vessel is moved to compress and move gas out of the pressure vessel. The actuator can have a second mode of operation in which a volume of liquid disposed within the pressure vessel is moved by an expanding gas entering the pressure vessel. The system can further include a heat transfer device configured to transfer heat to or from the at least one of a volume of liquid or a volume of gas retained by the pressure vessel.
    • 这里描述了用于操作液压致动装置/系统的系统和方法。 例如,用于压缩和/或膨胀气体的系统和方法可以包括至少一个压力容器,该压力容器限定内部区域,用于保持一定体积的液体或一定体积的气体中的至少一个和连接到流体连通的致动器 与压力容器。 致动器可以具有第一操作模式,其中移动设置在压力容器内的体积的液体以压缩并将气体从压力容器移出。 致动器可以具有第二操作模式,其中设置在压力容器内的体积的液体通过进入压力容器的膨胀气体移动。 该系统可以进一步包括传热装置,该热传递装置被配置为将热量传递到一定体积的液体或由压力容器保留的一定体积的气体中的至少一种。
    • 10. 发明申请
    • HORIZONTAL ACTUATION COMPRESSED AIR ENERGY STORAGE SYSTEM
    • 水平致动压缩空气能量储存系统
    • US20140260230A1
    • 2014-09-18
    • US14213045
    • 2014-03-14
    • General Compression, Inc.
    • Bryce RichardsKenneth KernyoRyan Heinbuch
    • F15B3/00
    • F15B15/02F04B23/02F04B23/06F15B11/0365F15B2211/7056
    • A modular compressed air energy storage system includes modular low pressure and high pressure subsystems coupled together with interstage pipes. Each of the subsystems includes a hydraulic vessel adapted to contain a heat transfer liquid and having a piston disposed therein for horizontal reciprocating movement. First and second pressure vessels are coupled to the hydraulic vessel on opposite sides of the piston, each adapted to contain the heat transfer liquid and/or a gas. First and second heat transfer devices are respectively disposed within upper regions of the pressure vessels. The piston is moveable in a first direction to displace at least some of the heat transfer liquid from the hydraulic vessel to the first pressure vessel and is moveable in a second direction to displace at least some of the heat transfer liquid from the hydraulic vessel to the second pressure vessel.
    • 模块化压缩空气能量存储系统包括与级间管道耦合在一起的模块化低压和高压子系统。 每个子系统包括适于容纳传热液体并具有设置在其中用于水平往复运动的活塞的液压容器。 第一和第二压力容器在活塞的相对侧上联接到液压容器,每个压力容器适于容纳传热液体和/或气体。 第一和第二传热装置分别设置在压力容器的上部区域内。 所述活塞可在第一方向上移动以将所述传热液体中的至少一些从所述液压容器移动到所述第一压力容器,并且可在第二方向上移动,以将至少一些所述传热液体从所述液压容器移动到所述液压容器 第二压力容器。