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    • 1. 发明专利
    • Nonmetal flowing-water type electroless conductive sensor, and leak detector
    • 非金属流水型电导率传感器和漏电探测器
    • JP2007327901A
    • 2007-12-20
    • JP2006160861
    • 2006-06-09
    • Invensys Systems Incインベンシス システムズ インコーポレーテッド
    • QUACKENBUSH JOHN KEVINBOWER MICHAEL MTALUTIS STEPHEN BMCKINLAY DONALD S
    • G01N27/74G01M3/16G01N27/06
    • PROBLEM TO BE SOLVED: To provide a nonmetal flowing-water type electroless conductive sensor capable of detecting the conductivity of a liquid flowing through piping, and to provide a leak detector.
      SOLUTION: The nonmetal flowing-water type electroless conductive sensor is equipped with the water-distributing pipes of primary and secondary process fluid flowing routes for forming a fluid loop. The water-distributing pipes installed in the fluid loop are surrounded by at least one driving annular body and one detecting annular body, and voltage is applied to the driving annular body so as to induce a current in the detecting annular body, without requiring the metal electrode to come into contact with the process fluid flowing through the fluid loop. At least either of the driving annular body or the detecting annular body is arranged to the fluid loop so as to intensify the induction of the current. Optionally, at least one detection coil is arranged at the periphery of the water-distributing pipes, installed outside of the fluid loop so as to eliminate stray electrical noise. The leak of a fluid is detected by a change in the resistance of the conductor that can be installed along the water-distributing pipes.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供能够检测流过管道的液体的导电性的非金属流水型无电导电传感器,并提供检漏器。

      解决方案:非金属流水型无电导电传感器配有一级和二级工艺流体流动路径的分配管,用于形成流体回路。 安装在流体回路中的水分配管由至少一个驱动环体和一个检测环体组成,电压施加到驱动环体上,以便在检测环体中引起电流,而不需要金属 电极与流过流体回路的工艺流体接触。 驱动环形体或检测环状体中的至少任一个被布置到流体回路,以便加强电流的感应。 可选地,至少一个检测线圈布置在水分配管的外围,安装在流体回路的外部,以消除杂散电噪声。 流体的泄漏通过沿着分配管道可以安装的导体的电阻的变化来检测。 版权所有(C)2008,JPO&INPIT

    • 2. 发明专利
    • Correction to two-phase flow in digital flowmeter
    • 数字流量计中两相流的校正
    • JP2008102155A
    • 2008-05-01
    • JP2007315284
    • 2007-12-05
    • Invensys Systems Incインベンシス システムズ インコーポレイテッド
    • MANUS HENRY PDE LA FUENTE MARIA JESUS
    • G01F1/74G01F1/84G01F15/02
    • G01F1/8431G01F1/74G01F1/8436G01F1/8486G01F15/024
    • PROBLEM TO BE SOLVED: To provide a Coriolis-type mass flowmeter capable of performing accurate measurement regardless of a change of a flow state of a fluid. SOLUTION: A controller includes: a generation means generating a raw mass flow rate measurement value from a sensor signal; a decision means deciding whether a state inside a conduit of the fluid is a single-phase flow state or a two-phase flow state; a first process execution means executing a first process for processing the raw mass flow rate measurement value to generate a first mass flow rate measurement value during the single-phase flow state when the decision means decides that it is the single-phase flow state; and a second process execution means executing a second process for generating a second mass flow rate measurement value during the two-phase flow state when the decision means decides that it is the two-phase flow state. The second process execution means includes: an error correction factor generation means generating an error correction factor on the basis of the raw mass flow rate measurement value; and a correction means correcting the raw mass flow rate measurement value by arithmetic processing by use of the error correction factor. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供能够执行精确测量的科里奥利型质量流量计,而不管流体的流动状态如何变化。 解决方案:控制器包括:生成装置,从传感器信号产生原始质量流量测量值; 决定装置决定流体导管内的状态是单相流动状态还是两相流动状态; 第一处理执行装置,当判定装置判定为单相流动状态时,执行用于处理原始质量流量测量值的第一处理,以在单相流动状态期间产生第一质量流量测量值; 以及第二处理执行装置,当判定装置判定为两相流动状态时,执行用于在两相流动状态期间产生第二质量流量测量值的第二处理。 第二处理执行装置包括:纠错因子产生装置,基于原始质量流量测量值产生误差校正系数; 以及校正装置,通过使用误差校正因子的算术处理来校正原始质量流量测量值。 版权所有(C)2008,JPO&INPIT
    • 3. 发明专利
    • Digital flowmeter
    • 数字流量计
    • JP2007248479A
    • 2007-09-27
    • JP2007176131
    • 2007-07-04
    • Invensys Systems Incインベンシス システムズ インコーポレイテッド
    • HENRY P MANUSCLARKE W DAVIDVIGNOS H JAMES
    • G01F1/84G01F1/00G01F1/76
    • G01F1/8404G01F1/8431G01F1/8436G01F1/8486G01F25/0007G01N2009/006
    • PROBLEM TO BE SOLVED: To provide a digital mass flowmeter capable of applying correct and sophisticated control algorithms which has larger reactivity, higher precision, and larger adaptability than conventional analog fashions. SOLUTION: The digital flowmeter 100 includes a vibro-conduit, a driving circuit 115 connected to the conduit to have an operationality forcing motion to the conduit, and a sensor 110 connected to the conduit to have operationality detecting motion of the conduit. A digital controller 105 is connected between the driving circuit and the sensor. The digital controller 105 includes a circuit, which receives sensor signals from the sensor to produce a driving signal from the sensor signal using a digital signal processing and outputs a driving signal to the driving circuit to produce a measured value of the property of a material flowing through the conduit from a signal of the sensor. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种能够应用正确和复杂的控制算法的数字质量流量计,其具有比传统模拟时尚更大的反应性,更高的精度和更大的适应性。 解决方案:数字流量计100包括振动导管,连接到导管的驱动电路115,以具有强制运动到导管的操作性,以及连接到导管以具有检测导管运动的操作性的传感器110。 数字控制器105连接在驱动电路和传感器之间。 数字控制器105包括电路,其接收来自传感器的传感器信号,以使用数字信号处理从传感器信号产生驱动信号,并将驱动信号输出到驱动电路,以产生流动的材料的性质的测量值 通过导管从传感器的信号。 版权所有(C)2007,JPO&INPIT
    • 4. 发明申请
    • MULTIPHASE METERING
    • 多相测量
    • WO2012027409A2
    • 2012-03-01
    • PCT/US2011/048865
    • 2011-08-23
    • INVENSYS SYSTEMS, INC.HENRY, Manus P.
    • HENRY, Manus P.
    • G01F1/78G06F19/00
    • G01N33/2847G01F1/74G01F1/8436G01F1/8486G01F15/024
    • A multi-phase fluid is passed through a Coriolis flowmeter and a watercut meter. The multi-phase fluid includes two phases during a first time period and three phases during a second time period. It is determined that the multi-phase fluid includes two phases during the first time period, and a first value of a parameter of the multi-phase fluid is determined using a value measured by the Coriolis flowmeter during the first time period. A second value of a parameter of the multi-phase fluid is determined using a value measured by the watercut meter during the first time period. The first value is compared to the second value, and it is determined, based on the comparison, that the first value and the second value are inconsistent with each other.
    • 多相流体通过科里奥利流量计和水切割仪。 多相流体在第一时间段内包括两相,在第二时间段内包括三个相。 确定多相流体在第一时间段期间包括两相,并且使用在第一时间段内由科里奥利流量计测量的值来确定多相流体的参数的第一值。 多相流体的参数的第二值使用由第一时间段内的水切割仪测量的值来确定。 将第一值与第二值进行比较,并且基于比较确定第一值和第二值彼此不一致。
    • 5. 发明申请
    • ADJUSTABLE, RETRACTABLE PROBE INSERTION ASSEMBLY
    • 可调节的可回收探头插入装置
    • WO2012012702A2
    • 2012-01-26
    • PCT/US2011/044987
    • 2011-07-22
    • INVENSYS SYSTEMS, INC.TALUTIS, Stephen, B.
    • TALUTIS, Stephen, B.
    • G01N27/26B23P19/04
    • G01N27/26G01N27/283Y10T29/49826
    • An adjustable insertion assembly for an electrochemical sensor includes an electrode holder to receive the sensor, having a distal aperture to permit process fluid to contact the sensor. A receptacle slidably receives the holder, for a sliding range of motion extending from inserted to retracted positions. An open distal end portion of the receptacle extends through a wall of a process fluid vessel, so that the aperture is open to the process fluid when inserted, and closed when retracted. A leverage member is releasably movable relative to the receptacle, and moves with a captured extension. An abutment of the receptacle engages the extension so that movement of the leverage member in opposite directions alternately clamps and releases the electrode holder relative to the receptacle to substantially prevent and permit movement at substantially any point within the range of movement.
    • 用于电化学传感器的可调节插入组件包括用于接收传感器的电极夹持器,具有远端孔径以允许工艺流体接触传感器。 从插入到缩回位置的滑动运动范围,容器可滑动地容纳保持器。 容器的敞开的远端部分延伸穿过过程流体容器的壁,使得该孔在插入时对工艺流体开放,并在缩回时关闭。 杠杆构件相对于容器可释放地移动,并且以捕获的延伸部移动。 插座的支座接合延伸部,使得杠杆元件在相反方向上的运动交替地相对于插座夹紧并释放电极支架,从而基本上防止并允许在运动范围内的任何点上移动。
    • 8. 发明申请
    • SYSTEM AND METHOD FOR ALKYLATION PROCESS ANALYSIS
    • 系统和方法进行碱化过程分析
    • WO2010017045A1
    • 2010-02-11
    • PCT/US2009/051764
    • 2009-07-24
    • TRYGSTAD, W., MarcusINVENSYS SYSTEMS, INC.
    • TRYGSTAD, W., Marcus
    • G01N25/00
    • G01N21/359G01N21/3577G01N24/08G01N24/081G01N24/085G01N2021/8416G01N2201/1211G01R33/44Y10T436/166666Y10T436/216Y10T436/218
    • A method and apparatus is provided for concentration determination of at least one component in an acid catalyst for hydrocarbon conversion containing an unknown concentration of an acid, an acid-soluble-oil (ASO), and water. An instrument configured for measuring a property of the acid catalyst, has responsivities to concentrations of one of the acid, ASO, and water, substantially independent of the concentrations of the others of the acid catalyst, ASO, and water. A temperature detector is configured to generate temperature data for the acid catalyst. A processor is configured to capture data generated by the temperature detector and the instrument, and to use the data in combination with a model to determine a temperature compensated concentration of the one of the acid, the ASO, and the water. Optionally, one or more other instruments configured for measuring other properties of the liquid mixture may also be used.
    • 提供了一种方法和装置,其用于浓度测定含有未知浓度的酸,酸溶性油(ASO)和水的烃转化的酸催化剂中的至少一种组分。 配置用于测量酸催化剂性质的仪器对酸,ASO和水中的一种的浓度具有反应性,基本上与其他酸催化剂,ASO和水的浓度无关。 温度检测器被配置为产生酸催化剂的温度数据。 处理器被配置为捕获由温度检测器和仪器产生的数据,并且将数据与模型组合使用以确定酸,ASO和水中的一种的温度补偿浓度。 可选地,还可以使用被配置用于测量液体混合物的其它性质的一个或多个其它仪器。
    • 9. 发明申请
    • SYSTEMS AND METHODS FOR IMMERSIVE INTERACTION WITH ACTUAL AND/OR SIMULATED FACILITIES FOR PROCESS, ENVIRONMENTAL AND INDUSTRIAL CONTROL
    • 与过程,环境和工业控制的实际和/或模拟设施紧密相关的系统和方法
    • WO2009155483A1
    • 2009-12-23
    • PCT/US2009/047901
    • 2009-06-19
    • INVENSYS SYSTEMS, INC.ROVAGLIO, MaurizioSCHEELE, Tobias
    • ROVAGLIO, MaurizioSCHEELE, Tobias
    • G06F3/048
    • G05B17/02G05B23/0216G05B2219/31018G06F3/011Y02P90/86
    • The invention provides, in some aspects, systems for interaction with a control environment that includes controlled equipment along with control devices that monitor and control that controlled equipment. According to some of those aspects, such a system includes first functionality that generates output representing an operational status of the controlled equipment, as well as second functionality that generates output representing an operational of one or more of the control devices. An engine coordinates the first functionality and to the second functionality to generate an operational status of the control environment. A virtual reality environment generates, as a function of that operational status and one or more physical aspects of the control environment, a three-dimensional ("3D") display of the control environment. The virtual reality environment is responsive to user interaction with one or more input devices to generate the 3D display so as to permit the user to interact with at least one of the control devices and the controlled equipment at least as represented by the 3D display of the control environment. The engine applies to at least one of the first and second functionality indicia of those interactions to discern resulting changes in the operational status of the control environment. It applies indicia of those changes to the virtual reality environment to effect corresponding variation in the 3D display of the control environment — i.e., variation indicative of the resulting change in the control environment.
    • 本发明在一些方面提供了与控制环境相互作用的系统,包括受控设备以及监控和控制受控设备的控制设备。 根据这些方面中的一些方面,这样的系统包括产生表示受控设备的操作状态的输出的第一功能以及产生表示一个或多个控制设备的操作的输出的第二功能。 引擎协调第一功能和第二功能以产生控制环境的操作状态。 虚拟现实环境根据操作状态和控制环境的一个或多个物理方面产生控制环境的三维(“3D”)显示。 虚拟现实环境响应于与一个或多个输入设备的用户交互以产生3D显示,以便允许用户至少与控制设备和受控设备中的至少一个进行交互,如由 控制环境。 引擎适用于这些交互的第一和第二功能标记中的至少一个,以识别控制环境的操作状态的所导致的改变。 它将这些变化的标记应用于虚拟现实环境,以实现控制环境的3D显示的相应变化,即指示控制环境中所导致的变化的变化。