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    • 3. 发明授权
    • Temperature monitoring apparatus for a steam trap
    • 蒸汽疏水阀温度监控装置
    • US09188283B2
    • 2015-11-17
    • US13811898
    • 2011-07-26
    • Kenneth McFeeters
    • Kenneth McFeeters
    • F16T1/48F16K37/00G01K1/16G01K13/02
    • F16T1/48F16K37/00G01K1/16G01K13/02Y10T137/3021Y10T137/8158
    • A monitoring apparatus for monitoring the temperature of a body, the apparatus having a housing defining a volume of air exposed to the body, a temperature sensor being located within the volume of air at a position remote from the body whereby the temperature of the body can be determined. In one embodiment the housing defines a substantially vertically arranged flue exposed at its lower end to the body, the temperature sensor being located within the flue, at least one air inlet being provided in the flue positioned below the temperature sensor, at least one air outlet being provided in the flue positioned above the temperature sensor, whereby the body, when heated, may initiate a rising column of air within the flue due to convection when the temperature of the body is greater than the ambient temperature, the temperature sensor being exposed to said rising column of air.
    • 一种用于监测身体温度的监测装置,该装置具有限定暴露于身体的空气量的壳体,温度传感器位于远离身体的位置处的空气体积内,由此身体的温度可以 确定。 在一个实施例中,壳体限定了在其下端暴露于主体的基本垂直布置的烟道,温度传感器位于烟道内,至少一个空气入口设置在位于温度传感器下方的烟道中,至少一个空气出口 设置在位于温度传感器上方的烟道中,由此当加热时,当身体的温度大于环境温度时,身体可能由于对流而在烟道内引起上升的空气柱,温度传感器暴露于 说上升的空气柱。
    • 6. 发明申请
    • SAMPLING AND REJECTION DEVICE
    • 采样和拒收装置
    • US20120192949A1
    • 2012-08-02
    • US13016284
    • 2011-01-28
    • Kevin Petzoldt
    • Kevin Petzoldt
    • F16K17/38
    • F16T1/48F01K9/00F22B37/50F28B9/08F28B11/00G01N1/10G01N2001/105G01N2001/4033Y10T137/0318Y10T137/034Y10T137/2499Y10T137/2574Y10T137/271Y10T137/7737
    • A sampling and rejection device for a boiler or steam generating system is described. The sampling and rejection device receives the condensate or fluid and allows a volume of the condensate to liquefy or the fluid to build up in the interior of the sampling and rejection device. One or more conductivity, pH, and temperature sensors or probes are positioned in the sampling and rejection device to measure the condensate. The sampling and rejection device includes a collection vessel to hold and temporarily store the condensate. The sampling and rejection device includes an outlet or a return line (to a central boiler) and a drain line. If the sensor measures undesirable conductivity, pH, or temperature in the condensate in the collection vessel, then a valve to the drain line is opened and the condensate is rejected.
    • 描述了用于锅炉或蒸汽发生系统的取样和排除装置。 采样和排除装置接收冷凝物或流体,并允许一定体积的冷凝液液化或流体积聚在采样和排除装置的内部。 一个或多个导电率,pH和温度传感器或探针定位在采样和排除装置中以测量冷凝物。 采样和排除装置包括收集容器以容纳和临时存储冷凝物。 采样和排除装置包括出口或返回管线(到中央锅炉)和排水管线。 如果传感器测量收集容器中冷凝物中的不良导电率,pH或温度,则打开排入管线的阀门,并且冷凝物被排除。
    • 8. 发明申请
    • Method of Diagnosing System, Method of Operating Aggregating System for System Diagnosis, and Aggregating System for System Diagnosis
    • 系统诊断方法,系统诊断聚合系统运行方法,系统诊断聚合系统
    • US20090299676A1
    • 2009-12-03
    • US12499134
    • 2009-07-08
    • Yoshiyasu Fujiwara
    • Yoshiyasu Fujiwara
    • G01L25/00
    • G06Q10/10F16T1/48G06Q10/06
    • The invention provides a method of diagnosing a system, a method of operating an aggregating system for system diagnosis and an aggregating system for system diagnosis, which are effective for achieving comprehensive and effective system cost reduction. For a target system 1, at least two or more kinds of diagnoses selected from a trap operation diagnosis, a fluid leakage diagnosis, a system improvement diagnosis and maintenance improvement diagnosis are effected in a batch and in reporting the results of these diagnoses in a batch, there are reported an economic advantage MQt″ obtained by reduction in a trap-passed seam loss Qt″, an economic advantage MQs, MQp, MQn obtained by reduction in fluid leakage loss Qs, Qp, Qn, an economic advantage Ma obtained by system improvement and an economic advantage Mb obtained by method improvement in a maintenance method.
    • 本发明提供一种诊断系统的方法,操作用于系统诊断的聚合系统的方法和用于系统诊断的聚合系统,其对于实现全面有效的系统成本降低是有效的。 对于目标系统1,分批进行从陷阱操作诊断,流体泄漏诊断,系统改进诊断和维护改进诊断中选择的至少两种或更多种诊断,并且以批处理报告这些诊断的结果 据报道,通过减少陷阱通过的接缝损耗Qt获得的经济优势MQt,通过减少流体泄漏损失Qs,Qp,Qn获得的经济优势MQs,MQp,MQn获得的经济优势 通过系统改进和通过维护方法中的方法改进获得的经济优势Mb。
    • 10. 发明申请
    • Method and Apparatus for Analyzing Steam Trap Data
    • 用于分析蒸汽疏水阀数据的方法和装置
    • US20080270047A1
    • 2008-10-30
    • US11792601
    • 2005-12-07
    • Tom D. QuakeRobert H. KerrRex CheskatyMichael P. HellmanMichael H. Gaines
    • Tom D. QuakeRobert H. KerrRex CheskatyMichael P. HellmanMichael H. Gaines
    • G06F19/00G06F15/00
    • F16T1/48Y10T137/3028Y10T137/8158
    • A system for analyzing steam trap data includes a steam trap monitoring device operable to monitor a parameter of a steam trap, transform the parameter into data, and transmit the data to a computer; and includes a computer operable to receive the data, the computer including an algorithm for evaluating the data. A method of analyzing steam trap data includes the steps of: providing a steam trap monitoring device operable to monitor a parameter of a steam trap, transform the parameter into data, and transmit data to a computer, and providing a computer operable to receive the data, the computer including an algorithm for evaluating the data; using the steam trap monitoring device to monitor a parameter of a steam trap, transform the parameter into data, and transmit the data to the computer; and using the computer to receive the data, and evaluate the data with the algorithm.
    • 一种用于分析蒸汽疏水阀数据的系统,包括可以监测蒸汽疏水阀参数的蒸汽疏水阀监测装置,将该参数转换成数据,并将数据传送到计算机; 并且包括可操作以接收数据的计算机,所述计算机包括用于评估数据的算法。 一种分析蒸汽疏水阀数据的方法包括以下步骤:提供可操作以监测蒸汽疏水阀的参数的蒸汽疏水阀监测装置,将参数转换成数据,并将数据传送到计算机,以及提供可操作以接收数据的计算机 该计算机包括用于评估数据的算法; 使用疏水阀监测装置监测蒸汽疏水阀的参数,将参数变换成数据,并将数据传送到计算机; 并使用计算机接收数据,并用算法评估数据。