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    • 2. 发明申请
    • SYSTEMS AND METHODS OF IDENTIFYING TYPES OF FAULTS
    • 识别故障类型的系统和方法
    • US20130261987A1
    • 2013-10-03
    • US13431110
    • 2012-03-27
    • John Wesley GrantCharles Terrance Hatch
    • John Wesley GrantCharles Terrance Hatch
    • G06F19/00
    • G01M13/028
    • A computing device includes a communication interface for receiving a plurality of signals from a first probe positioned on a first observation plane of a machine component and a second probe that is positioned on a second observation plane of the machine component, wherein the plurality of signals are representative of data from the machine component. A processor coupled to the communication interface is programmed to combine the signals received from the first and second probes to generate a plurality of displacement responses that correspond to a plurality of frequencies of a speed of the machine component. The processor is also programmed to transform the signals to eliminate a plurality of split resonance effects. The processor may also generate data representative of an output of the data received from the signals to identify a type of at least one fault within the machine component.
    • 计算装置包括用于从位于机器部件的第一观察平面上的第一探针接收多个信号的通信接口和位于机器部件的第二观察平面上的第二探针,其中多个信号为 代表来自机器组件的数据。 与通信接口耦合的处理器被编程为组合从第一和第二探头接收的信号以产生对应于机器部件的速度的多个频率的多个位移响应。 处理器也被编程为变换信号以消除多个分裂的共振效应。 处理器还可以生成表示从信号接收的数据的输出的数据,以识别机器部件内的至少一个故障的类型。
    • 3. 发明授权
    • Pressure relief valve monitoring
    • 泄压阀监控
    • US07890276B2
    • 2011-02-15
    • US12707375
    • 2010-02-17
    • Lane Thomas KillionJohn Wesley GrantWilliam Charles JostMichael Lee Whaley, Jr.
    • Lane Thomas KillionJohn Wesley GrantWilliam Charles JostMichael Lee Whaley, Jr.
    • G06F19/00
    • G01M3/002G01M3/24
    • A pressure relief valve monitoring system and method is disclosed. In one aspect there is an online pressure relief valve monitoring system that includes at least one acoustic sensor located about a pressure relief valve that obtains ultrasonic measurements therefrom. One or more temperature sensors located about the pressure relief valve obtain temperature measurements therefrom. A data acquisition system receives the ultrasonic measurements from the at least one acoustic sensor and the temperature measurements from the one or more temperature sensors. An online monitor monitors the measurements received by the data acquisition system for detection of a leak about the pressure relief valve. The online monitor detects the presence of the leak as a function of the ultrasonic measurements and temperature measurements.
    • 公开了一种泄压阀监视系统和方法。 在一个方面,存在一个在线减压阀监测系统,该系统包括位于压力释放阀周围的至少一个声学传感器,该压力释放阀从其获得超声测量。 位于压力释放阀周围的一个或多个温度传感器从其获得温度测量值。 数据采集​​系统从至少一个声学传感器接收超声测量值,并从一个或多个温度传感器接收温度测量值。 在线监视器监视由数据采集系统接收的测量值,以检测泄压阀的泄漏。 在线监视器根据超声波测量和温度测量值检测泄漏的存在。
    • 4. 发明授权
    • Methods and systems for detecting baghouse filter leaks
    • 检测袋式过滤器泄漏的方法和系统
    • US07449038B2
    • 2008-11-11
    • US11163095
    • 2005-10-05
    • John Wesley GrantDonald R. Pegelow
    • John Wesley GrantDonald R. Pegelow
    • B01D46/02
    • B01D46/02B01D46/42B01D46/46G01N21/59
    • A method of detecting leaks in the filter bags of a baghouse filter chamber that includes determining when the filter bags have been cleaned and, during a post-cleaning period after the cleaning of the filter bags, determining whether the opacity level of the exhaust of the baghouse filter chamber exceeds a predefined opacity limit. The determining whether the opacity level of the exhaust of the baghouse filter chamber exceeds a predefined opacity limit may include monitoring the opacity level of the exhaust of the baghouse filter chamber with an opacity sensor during the post-cleaning period and comparing the opacity readings during the post-cleaning period with the value of the predefined opacity limit.
    • 一种检测袋式过滤室的过滤袋中的泄漏的方法,包括确定过滤袋何时被清洁,并且在清洁过滤袋之后的后清洁期间,确定过滤袋的排气的不透明度是否为 袋式过滤室超过预定义的不透明度限制。 确定袋式过滤室的排气的不透明度水平是否超过预定的不透明度限度可以包括在后清洁期间用不透明度传感器监测袋式过滤室的排气的不透明度水平,并比较在 后期清洁周期与预定义的不透明度限制的值。