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    • 2. 发明申请
    • VIBRATORY FLOWMETER AND METHOD FOR AVERAGE FLOW RATE
    • 振动流量计和平均流量的方法
    • WO2013043147A1
    • 2013-03-28
    • PCT/US2011/052106
    • 2011-09-19
    • MICRO MOTION, INC.HAYS, Paul J.
    • HAYS, Paul J.
    • G01F1/84
    • G01F1/8418G01F1/72G01F1/8431G01F1/8436G01F1/8477
    • A vibratory flowmeter (5) for determining an average flow rate of a pulsating flow is provided. The vibratory flowmeter (5) includes a flowmeter assembly (10) including at least two pickoff sensors (170L, 170R) and configured to generate at least two vibrational signals and meter electronics (20) configured to receive the at least two vibrational signals and generate a flow rate measurement signal, divide the flow rate measurement signal into a series of time periods, with each time period including a single flow peak that is substantially centered in the time period, totalize flow rate measurements of each time period to generate a period sum, and divide the period sum by a time period length to generate a period average flow rate, wherein the meter electronics (20) outputs a sequence of period average flow rates as an average flow rate signal.
    • 提供一种用于确定脉动流的平均流量的振动流量计(5)。 振动流量计(5)包括包括至少两个传感器(170L,170R)的流量计组件(10),并被配置为产生至少两个振动信号和仪表电子设备(20),其被配置为接收所述至少两个振动信号并产生 流量测量信号,将流量测量信号划分成一系列时间段,每个时间段包括基本上在该时间段中心的单个流量峰值,对每个时间段的流量测量进行总和以产生周期和 并且将所述周期和除以时间段长度以产生周期平均流量,其中所述仪表电子装置(20)输出周期平均流量序列作为平均流量信号。
    • 3. 发明申请
    • ANALOG-TO-DIGITAL CONVERSION STAGE AND PHASE SYNCHRONIZATION METHOD FOR DIGITIZING TWO OR MORE ANALOG SIGNALS
    • 用于数字化或更多模拟信号的模拟转数据转换阶段和相位同步方法
    • WO2012026941A1
    • 2012-03-01
    • PCT/US2010/046914
    • 2010-08-27
    • MICRO MOTION, INC.HAYS, Paul, J.MCANALLY, Craig, B.
    • HAYS, Paul, J.MCANALLY, Craig, B.
    • H03M1/06G01F1/84
    • H03M1/06G01F1/8431G01F1/8436G01F1/8477H03M1/0678H03M1/12
    • An analog-to-digital conversion stage (300) includes three or more ADCs (303, 305, 307) that receive two or more analog signals, generate a first digitized signal from a first analog signal, generate at least a second digitized signal from at least a second analog signal to create two or more digitized signals, and generate one or more redundant digitized signals from the two or more analog signals. The one or more redundant digitized signals are generated substantially in parallel with the two or more digitized signals. A processing device (330) generates a phase drift value from a phase difference between a redundant digitized signal of the one or more redundant digitized signals and a corresponding digitized signal of the two or more digitized signals and compensates the corresponding digitized signal using the one or more phase drift values.
    • 模数转换级(300)包括三个或更多个接收两个或更多个模拟信号的ADC(303,305,307),从第一模拟信号产生第一数字化信号,从至少一个第二数字化信号 至少第二模拟信号以产生两个或多个数字化信号,并且从两个或更多个模拟信号产生一个或多个冗余数字化信号。 一个或多个冗余数字化信号基本上与两个或多个数字化信号并行地产生。 处理装置(330)根据一个或多个冗余数字化信号的冗余数字化信号与两个或多个数字化信号的相应数字化信号之间的相位差产生相位漂移值,并使用该一个或多个数字化信号补偿相应的数字化信号 更多的相位漂移值。
    • 4. 发明申请
    • TOTAL ORGANIC CARBON (TOC) FLUID SENSOR
    • 总有机碳(TOC)流体传感器
    • WO2011041378A1
    • 2011-04-07
    • PCT/US2010/050673
    • 2010-09-29
    • HACH COMPANYLEGGETT, Richard, EdwardRAJASEKHARAN, Vishnu VardhananCOLLIER, Matthew Grant
    • LEGGETT, Richard, EdwardRAJASEKHARAN, Vishnu VardhananCOLLIER, Matthew Grant
    • G01N27/06G01N33/18G01N31/00
    • G01N33/1846G01N27/08
    • A total organic carbon (TOC) fluid sensor (100) is provided according to an embodiment of the invention. The TOC fluid sensor (100) includes a first oxidization cell (101A), a second oxidization cell (101B), a gas permeable membrane (106) configured to allow carbon dioxide to equilibriate between the first oxidization cell (101A) and the second oxidization cell (101B), a first conductivity sensor (136A), and a second conductivity sensor (136B). The TOC fluid sensor (100) oxidizes a fluid portion in the first oxidization cell (101A) to create carbon dioxide, equilibriates the carbon dioxide between the first oxidization cell (101A) and the second oxidization cell (101B), obtains a second cell conductivity information, and determines a TOC quantity in the fluid under test from the second cell conductivity information when the first cell oxidization is substantially complete.
    • 根据本发明的实施例提供总有机碳(TOC)流体传感器(100)。 TOC流体传感器(100)包括第一氧化池(101A),第二氧化池(101B),透气膜(106),其被配置为允许二氧化碳在第一氧化池(101A)和第二氧化池 电池(101B),第一电导率传感器(136A)和第二电导率传感器(136B)。 TOC流体传感器(100)氧化第一氧化池(101A)中的流体部分以产生二氧化碳,使第一氧化池(101A)和第二氧化池(101B)之间的二氧化碳平衡,获得第二电池电导率 信息,并且当第一单元氧化基本上完成时,从第二单元电导率信息确定被测流体中的TOC量。
    • 5. 发明申请
    • NEEDLE VALVE INCLUDING NON-ROTATING NEEDLE
    • 针阀包括非旋转针
    • WO2010104657A1
    • 2010-09-16
    • PCT/US2010/024614
    • 2010-02-18
    • NORGREN, INC.DAY, Edward, J.SIMS, DennisABLES, Todd
    • DAY, Edward, J.SIMS, DennisABLES, Todd
    • F16K31/50
    • F16K31/508F16K1/385
    • A needle valve (100) is provided according to the invention. The needle valve (100) includes a valve body (102) including a valve bore (104) and a valve seat (107). The needle valve (100) further includes a non-rotating needle (120) configured to move substantially axially in the valve bore (104) relative to the valve seat (107) and with the non-rotating needle (120) being blocked from rotating. The needle valve (100) further includes a knob (160) rotatably coupled to the valve body (102) and configured to be manually-operated, with rotation of the knob (160) moving the non-rotating needle (120) substantially axially, without the knob (160) moving axially with respect to the valve body (102).
    • 根据本发明提供一种针阀(100)。 针阀(100)包括阀体(102),阀体(102)包括阀孔(104)和阀座(107)。 针阀(100)还包括非旋转针(120),其构造成相对于阀座(107)大致轴向地在阀孔(104)中移动,并且非旋转针(120)被阻止旋转 。 针阀(100)还包括可旋转地联接到阀体(102)并且构造成手动操作的旋钮(160),其中旋钮(160)基本轴向移动非旋转针(120)的旋转, 没有旋钮(160)相对于阀体(102)轴向移动。
    • 7. 发明申请
    • VERY HIGH FREQUENCY VIBRATORY FLOW METER
    • 非常高频率的振动流量计
    • WO2009134827A1
    • 2009-11-05
    • PCT/US2009/042016
    • 2009-04-29
    • MICRO MOTION, INC.WEINSTEIN, Joel
    • WEINSTEIN, Joel
    • G01F1/84
    • G01F1/74G01F1/8436G01F1/8477G01F15/02G01F25/0007Y10T29/49826Y10T137/0402
    • A very high frequency vibratory flow meter (100) is provided. The very high frequency vibratory flow meter (100) includes a flow meter assembly (10) including one or more flow conduits (103A, 103B). The flow meter assembly (10) is configured to generate a very high frequency response that is above a predetermined maximum decoupling frequency for the flow fluid independent of a foreign material size or a foreign material composition. The very high frequency vibratory flow meter (100) further includes meter electronics (20) coupled to the flow meter assembly (10) and configured to receive the very high frequency vibrational response and generate one or more flow measurements therefrom.
    • 提供非常高频率的振动流量计(100)。 超高频振动流量计(100)包括包括一个或多个流动管道(103A,103B)的流量计组件(10)。 流量计组件(10)被配置为产生非常高的频率响应,该频率响应高于用于流体流体的预定的最大去耦频率,而与异物大小或异物组成无关。 超高频振动流量计(100)还包括耦合到流量计组件(10)并且被配置为接收非常高频率的振动响应并从其产生一个或多个流量测量的仪表电子装置(20)。
    • 8. 发明申请
    • VIBRATORY FLOW METER AND METHOD FOR DETERMINING A FLUID TEMPERATURE OF A FLOW MATERIAL
    • 振动流量计及流动物质流体温度测定方法
    • WO2009051588A1
    • 2009-04-23
    • PCT/US2007/081413
    • 2007-10-15
    • MICRO MOTION, INC.STACK, Charles, Paul
    • STACK, Charles, Paul
    • G01F1/84
    • G01F1/8477G01F15/024G01K7/427
    • A vibratory flow meter (5) for determining a derived fluid temperature T f-derive of a flow material is provided according to the invention. The vibratory flow meter (5) includes a flow meter assembly (10) including one or more flow conduits (103), a meter temperature sensor (204) configured to measure a meter temperature T m , an ambient temperature sensor (208) for measuring an ambient temperature T a , and meter electronics (20) coupled to the meter temperature sensor (204) and to the ambient temperature sensor (208). The meter electronics (20) is configured to receive the meter temperature T m and the ambient temperature T a and determine the derived fluid temperature T f-deriv of the flow material in the vibratory flow meter (5) using the meter temperature T m and the ambient temperature T a .
    • 根据本发明提供了一种用于确定流动材料的衍生流体温度Tf-导出的振动流量计(5)。 振动流量计(5)包括流量计组件(10),其包括一个或多个流动管道(103),配置成测量仪表温度Tm的仪表温度传感器(204),用于测量仪表温度Tm的环境温度传感器(208) 环境温度Ta和与仪表温度传感器(204)和环境温度传感器(208)耦合的仪表电子设备(20)。 仪表电子设备(20)被配置为接收仪表温度Tm和环境温度Ta,并且使用仪表温度Tm和环境温度Ta确定振动流量计(5)中的流动材料的导出流体温度Tf-导出 。