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    • 3. 发明申请
    • PIPELINE PRESSURE ISOLATION SYSTEMS AND DEVICES
    • 管道压力隔离系统和设备
    • US20140110002A1
    • 2014-04-24
    • US13886185
    • 2013-05-02
    • FLUOR TECHNOLOGIES CORPORATION
    • Pat F. Fetizanan
    • F16K5/08
    • F16K5/08F16K3/262F16K5/0647F16K17/30F16K17/32F16K17/34Y10T137/7728Y10T137/7796Y10T137/9029
    • A pressure isolation device for a pipeline system is described. The pressure isolation device changes from an open position to a closed position when the pressure of a fluid flowing through the device exceeds a predetermined threshold pressure. In some embodiments, the pressure isolation device comprises a housing having an internal chamber, a main inlet, and a main outlet. An elongated member is disposed within the internal chamber between the main inlet and main outlet, and is biased towards the open position. As fluid pressure increases, the elongated member is pushed to the closed position and a portion of the elongated member blocks the fluid pathway from the main inlet to the main outlet. The pressure isolation device provides a simple mechanical solution to protecting and isolating downstream pipeline components from over-pressurization.
    • 描述了用于管道系统的压力隔离装置。 当流过该装置的流体的压力超过预定阈值压力时,压力隔离装置从打开位置改变到关闭位置。 在一些实施例中,压力隔离装置包括具有内部室,主入口和主出口的壳体。 细长构件设置在主入口和主出口之间的内室内,并朝向打开位置偏置。 当流体压力增加时,细长构件被推动到关闭位置,并且细长构件的一部分阻挡从主入口到主出口的流体路径。 压力隔离装置提供了一种简单的机械解决方案,用于保护和隔离下游管道部件免于过压。
    • 7. 发明授权
    • Integral overpressure monitoring device
    • 一体式超压监测装置
    • US08151822B2
    • 2012-04-10
    • US12105133
    • 2008-04-17
    • Seth Kranz
    • Seth Kranz
    • F16K31/36
    • F16K17/32G05D16/0602G05D16/0683Y10T137/5196Y10T137/7728Y10T137/7795Y10T137/7801Y10T137/7831Y10T137/8326Y10T137/86485
    • The present invention provides an integral cantilever monitoring device for a regulator having a positionable vent port that may be disposed proximate the lowest point of the monitoring device to allow drainage of liquids accumulating within the monitoring device due to humidity and precipitation. The monitoring device may also include a connection module allowing the monitoring device to be rotated independently of the actuator and valve body of the regulator to accommodate varying installation environments. The connection module may further include an inlet port for connection to a downstream pressure feedback line when the regulator valve body and connection module portions of a primary downstream pressure feedback passage are out of alignment due to rotation of the monitoring device.
    • 本发明提供了一种用于调节器的整体式悬臂监视装置,其具有可定位的排气口,该排气口可设置在监测装置的最低点附近,以允许由于湿度和沉淀而积聚在监测装置内的液体排出。 监测装置还可以包括连接模块,允许监测装置独立于调节器的致动器和阀体旋转以适应不同的安装环境。 连接模块还可以包括用于连接到下游压力反馈管线的入口端口,当主要下游压力反馈通道的调节器阀体和连接模块部分由于监视装置的旋转而不对齐时。
    • 9. 发明授权
    • Interruption valve with automatic reset
    • 中断阀具有自动复位功能
    • US07216668B1
    • 2007-05-15
    • US11015920
    • 2004-12-20
    • Thomas A. Adams
    • Thomas A. Adams
    • F16K17/32
    • F16K17/32Y10T137/7729Y10T137/7731Y10T137/7781
    • A fluid valve (10) that interrupts the flow of fluid when backpressure ceases. The valve (10) consists of a valve body (20) having an inlet (22), an outlet (24), a piston chamber (32), and a backpressure port (34). The port (34) is located between the outlet (24) and the chamber (32), and a stem bore (36) is disposed within the valve body (20) between the chamber (32), and the inlet (22) and the outlet (24). A piston (40) that includes a restricting stem (42), is confined within the chamber (32) and the stem (42) is positioned within the stem bore (36). The stem (42) restricts fluid flow when there is no backpressure, but when backpressure exists the stem (42) is forced away from the inlet (22) and the outlet (24) by the piston (40) thereby permitting a full flow through the valve (10). An adjustable compression spring (68) engages the piston (40) urging the stem (42) into the stem bore (36) when no backpressure exists. The valve (10) automatically restores full fluid flow when sufficient fluid backpressure is re-established.
    • 当背压停止时,中断流体流动的流体阀(10)。 阀(10)由具有入口(22),出口(24),活塞室(32)和背压端口(34)的阀体(20)组成。 所述端口(34)位于所述出口(24)和所述室(32)之间,并且在所述腔室(32)和所述入口(22)之间的阀体(20)内设置有阀杆孔(36)和 出口(24)。 包括限制杆(42)的活塞(40)被限制在室(32)内,并且杆(42)定位在杆孔(36)内。 当没有背压时,杆(42)限制流体流动,但是当存在背压时,杆(42)被活塞(40)强制从入口(22)和出口(24)远离,从而允许全部流过 阀(10)。 当不存在背压时,可调节的压缩弹簧(68)接合活塞(40)将杆(42)推入杆孔(36)。 当重新建立足够的流体背压时,阀(10)自动恢复全流体流动。