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    • 1. 发明申请
    • System and method for reducing noise in multi-capacity compressors
    • 降低多容量压缩机噪音的系统和方法
    • US20060083647A1
    • 2006-04-20
    • US11240976
    • 2005-09-30
    • Bruce MoodyTyrone SimerlyMark TrentDavid MonkScott Hix
    • Bruce MoodyTyrone SimerlyMark TrentDavid MonkScott Hix
    • F04B1/04F04B39/10
    • F04B1/0452F04B27/0451
    • A method and system is provided for reducing chatter in multi-capacity compressors having disengageable eccentric structures. The multi-capacity fluid compressor includes a compression chamber having a discharge end and an inner surface. The compressor also includes a compression member having a disengageable eccentric structure allowing the compressor to provide discrete compression capacities. A valve portion is disposed adjacent to the discharge end of the compression chamber and is arranged and disposed to discharge a compressed fluid when the compression member has completed. A discharge arrangement is arranged and disposed to discharge at least a portion of fluid remaining in the compression chamber at the completion of the compression cycle. The discharge of at least a portion of the fluid remaining in the compression chamber reduces or eliminates forces on the disengageable eccentric structure to limit rotational acceleration of the disengageable eccentric structure.
    • 提供了一种用于减少具有可脱离偏心结构的多容量压缩机中​​的颤动的方法和系统。 多容量流体压缩机包括具有排出端和内表面的压缩室。 压缩机还包括具有可脱离偏心结构的压缩构件,允许压缩机提供离散的压缩能力。 阀部分邻近压缩室的排出端设置,并且被布置和设置成当压缩构件完成时排出压缩流体。 排出装置被布置和设置成在压缩循环完成时排出残留在压缩室中的至少一部分流体。 残留在压缩室中的至少一部分流体的排放减少或消除了可脱离的偏心结构上的力,以限制可脱离的偏心结构的旋转加速。
    • 8. 发明申请
    • Compressor Valve Health Monitor
    • 压缩机阀门健康监视器
    • US20170030349A1
    • 2017-02-02
    • US14811249
    • 2015-07-28
    • Computational Systems, Inc.
    • Timothy Scott BassettMatthew Carl HellerTerry Lynn Ford
    • F04B51/00F04B27/08F04B53/10F04B39/00
    • F04B51/00F04B27/0451F04B39/10F04B49/065F04B53/10F04B2203/0209F04B2207/70
    • A rotating machine valve health monitor. Aspects of the valve monitor include instrumenting each valve of a reciprocating compressor, or other rotating machine, with a sensor capable of detecting at least vibration and instrumenting the crank shaft with a sensor capable of detecting at least rotation. A controller directly monitors the operation and condition of each valve to precisely identify any individual valve exhibiting leakage issues rather than only identifying the region of the leakage. The valve monitor uses a relatively high frequency stress wave analysis technique to provide a good signal-to-noise ratio to identify impact events indicative of leakage. The valve monitor uses circular waveforms of vibration data for individual valves to identify leakage by pattern recognition or visual identification. The valve monitor provides ongoing data collection to give warning of predicted valve failure and scheduling of preventative maintenance for failing valves.
    • 旋转机械阀健康监护仪。 阀门监视器的方面包括对具有传感器的往复式压缩机或其它旋转机械的每个阀进行仪表,该传感器至少能够利用能够至少检测旋转的传感器来检测振动和装配曲轴。 控制器直接监控每个阀门的操作和状态,以精确识别出任何单独的阀门,表现出泄漏问题,而不仅仅是识别泄漏区域。 阀门监测器使用相对较高频率的应力波分析技术来提供良好的信噪比,以识别指示泄漏的碰撞事件。 阀门监视器使用各个阀门的振动数据的圆形波形,通过模式识别或视觉识别来识别泄漏。 阀门监视器提供正在进行的数据收集,以提供预测的阀门故障的警告和对故障阀门的预防性维护的调度。