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MX2013009162A - Determinacion de tiempos de retardo para medidores de flujo ultrasonicos. - Google Patents

Determinacion de tiempos de retardo para medidores de flujo ultrasonicos.

Info

Publication number
MX2013009162A
MX2013009162A MX2013009162A MX2013009162A MX2013009162A MX 2013009162 A MX2013009162 A MX 2013009162A MX 2013009162 A MX2013009162 A MX 2013009162A MX 2013009162 A MX2013009162 A MX 2013009162A MX 2013009162 A MX2013009162 A MX 2013009162A
Authority
MX
Mexico
Prior art keywords
flow meter
ultrasonic flow
delay times
flow meters
determining delay
Prior art date
Application number
MX2013009162A
Other languages
English (en)
Original Assignee
Daniel Measurement & Control
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Daniel Measurement & Control filed Critical Daniel Measurement & Control
Publication of MX2013009162A publication Critical patent/MX2013009162A/es

Links

Classifications

    • GPHYSICS
    • G01MEASURING; TESTING
    • G01FMEASURING VOLUME, VOLUME FLOW, MASS FLOW OR LIQUID LEVEL; METERING BY VOLUME
    • G01F1/00Measuring the volume flow or mass flow of fluid or fluent solid material wherein the fluid passes through a meter in a continuous flow
    • G01F1/66Measuring the volume flow or mass flow of fluid or fluent solid material wherein the fluid passes through a meter in a continuous flow by measuring frequency, phase shift or propagation time of electromagnetic or other waves, e.g. using ultrasonic flowmeters
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01FMEASURING VOLUME, VOLUME FLOW, MASS FLOW OR LIQUID LEVEL; METERING BY VOLUME
    • G01F1/00Measuring the volume flow or mass flow of fluid or fluent solid material wherein the fluid passes through a meter in a continuous flow
    • G01F1/66Measuring the volume flow or mass flow of fluid or fluent solid material wherein the fluid passes through a meter in a continuous flow by measuring frequency, phase shift or propagation time of electromagnetic or other waves, e.g. using ultrasonic flowmeters
    • G01F1/662Constructional details
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01FMEASURING VOLUME, VOLUME FLOW, MASS FLOW OR LIQUID LEVEL; METERING BY VOLUME
    • G01F1/00Measuring the volume flow or mass flow of fluid or fluent solid material wherein the fluid passes through a meter in a continuous flow
    • G01F1/66Measuring the volume flow or mass flow of fluid or fluent solid material wherein the fluid passes through a meter in a continuous flow by measuring frequency, phase shift or propagation time of electromagnetic or other waves, e.g. using ultrasonic flowmeters
    • G01F1/667Arrangements of transducers for ultrasonic flowmeters; Circuits for operating ultrasonic flowmeters
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01FMEASURING VOLUME, VOLUME FLOW, MASS FLOW OR LIQUID LEVEL; METERING BY VOLUME
    • G01F25/00Testing or calibration of apparatus for measuring volume, volume flow or liquid level or for metering by volume
    • G01F25/10Testing or calibration of apparatus for measuring volume, volume flow or liquid level or for metering by volume of flowmeters

Landscapes

  • Physics & Mathematics (AREA)
  • Fluid Mechanics (AREA)
  • General Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Measuring Volume Flow (AREA)
  • Investigating Or Analyzing Materials By The Use Of Ultrasonic Waves (AREA)

Abstract

Un sistema y método para calibrar un medidor de flujo ultrasónico. En una modalidad, un método incluye disponer un dispositivo de circulación de fluido dentro de un medidor de flujo. Los fluidos son circulados en el medidor de flujo mediante la operación del dispositivo de circulación de fluido. Se mide un tiempo de tránsito de señal acústica dentro del medidor de flujo durante la circulación. Con base en la medición, se determina una porción del tiempo de tránsito de la señal acústica causada por la latencia inducida por los componentes del medidor de flujo.
MX2013009162A 2011-02-11 2012-01-19 Determinacion de tiempos de retardo para medidores de flujo ultrasonicos. MX2013009162A (es)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US13/025,223 US8302455B2 (en) 2011-02-11 2011-02-11 Determining delay times for ultrasonic flow meters
PCT/US2012/021825 WO2012108992A2 (en) 2011-02-11 2012-01-19 Determining delay times for ultrasonic flow meters

Publications (1)

Publication Number Publication Date
MX2013009162A true MX2013009162A (es) 2013-11-01

Family

ID=46620709

Family Applications (1)

Application Number Title Priority Date Filing Date
MX2013009162A MX2013009162A (es) 2011-02-11 2012-01-19 Determinacion de tiempos de retardo para medidores de flujo ultrasonicos.

Country Status (8)

Country Link
US (1) US8302455B2 (es)
EP (1) EP2673598B1 (es)
CN (2) CN102636226B (es)
BR (1) BR112013020393B8 (es)
CA (1) CA2826869C (es)
MX (1) MX2013009162A (es)
RU (1) RU2546855C1 (es)
WO (1) WO2012108992A2 (es)

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US8974114B2 (en) * 2012-05-02 2015-03-10 Daniel Measurement And Control, Inc. Temperature verification for ultrasonic flow meters
WO2014008553A1 (en) * 2012-07-13 2014-01-16 Rubicon Research Pty Ltd Control gates and valves
US9696216B2 (en) * 2013-09-04 2017-07-04 Siemens Energy, Inc. Acoustic transducer in system for gas temperature measurement in gas turbine engine
US9891085B2 (en) * 2013-10-11 2018-02-13 General Electric Company Ultrasound fuel flow sensing and control
US9709448B2 (en) 2013-12-18 2017-07-18 Siemens Energy, Inc. Active measurement of gas flow temperature, including in gas turbine combustors
US9453767B2 (en) * 2013-12-18 2016-09-27 Siemens Energy, Inc. Active temperature monitoring in gas turbine combustors
US9752959B2 (en) * 2014-03-13 2017-09-05 Siemens Energy, Inc. Nonintrusive transceiver and method for characterizing temperature and velocity fields in a gas turbine combustor
US9927325B2 (en) * 2014-03-13 2018-03-27 Siemens Energy, Inc. Method and system for determining distribution of temperature and velocity in a gas turbine engine
US9945737B2 (en) 2014-03-13 2018-04-17 Siemens Energy, Inc. Method for determining waveguide temperature for acoustic transceiver used in a gas turbine engine
US9746360B2 (en) 2014-03-13 2017-08-29 Siemens Energy, Inc. Nonintrusive performance measurement of a gas turbine engine in real time
US9404782B2 (en) 2014-10-21 2016-08-02 Honeywell International, Inc. Use of transducers with a piezo ceramic array to improve the accuracy of ultra sonic meters
CN104406642B (zh) * 2014-11-24 2017-10-03 天津商业大学 一种时差法超声波流量计精确测量方法
US10222252B2 (en) * 2016-05-06 2019-03-05 Big Elk Energy Systems, LLC Portable verification system and method for use in verifying a gas pipeline flow meter when in field
CN113720406A (zh) 2016-07-18 2021-11-30 沃恩房地产投资有限责任公司 水计量系统
US11821770B2 (en) 2016-07-18 2023-11-21 Vaughn Realty Ventures LLC Water metering system
US12222231B2 (en) 2016-07-18 2025-02-11 Vaughn Realty Ventures LLC Water metering system
US11326928B2 (en) 2017-05-06 2022-05-10 Big Elk Energy Systems, LLC Portable verification system and method used to verify an in-field gas flow meter
US10620060B2 (en) * 2017-07-19 2020-04-14 Georg Fischer Signet, LLC Combined ultrasonic temperature and conductivity sensor assembly
US12480793B2 (en) * 2018-11-30 2025-11-25 Baker Hughes Holdings Llc In situ ultrasonic flow meter validation
US11402254B2 (en) * 2019-08-13 2022-08-02 Badger Meter, Inc. Ultrasonic flow meter calibration system and method
US12181317B2 (en) 2019-12-23 2024-12-31 Belimo Holding Ag System and method for improved measurement of a flow of fluid through a channel
CN111964737B (zh) * 2020-08-13 2022-11-18 李卓 一种自动标定的超声波流量计的计算方法
CN113671215B (zh) * 2021-07-30 2024-02-20 苏州斯威高科信息技术有限公司 一种提高超声波风传感器精度的测量和校准方法及系统
US12276530B2 (en) 2022-04-06 2025-04-15 Big Elk Energy Systems, LLC Portable verification system and method for use in lower pressure commercial and residential gas flow meters
DE102022115042A1 (de) * 2022-06-15 2023-12-21 Diehl Metering Gmbh Verfahren zur Ermittlung eines Fluiddrucks in einem Fluidversorgungsnetz für Fluid sowie Ultraschallfluidzähler
CN115452075A (zh) * 2022-07-29 2022-12-09 广东艾科技术股份有限公司 一种超声波水表测温方法、系统、计算机设备及存储介质
CN116878599B (zh) * 2023-09-06 2024-01-09 青岛鼎信通讯科技有限公司 一种超声水表的流量计量方法

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SU569854A1 (ru) * 1975-07-16 1977-08-25 Предприятие П/Я А-1686 Ультразвуковой расходомер
GB9119742D0 (en) * 1991-09-16 1991-10-30 British Gas Plc Measurement system
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US7152490B1 (en) * 2005-08-15 2006-12-26 Daniel Measurement And Control, Inc. Methods for determining transducer delay time and transducer separation in ultrasonic flow meters
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US8170812B2 (en) * 2007-10-16 2012-05-01 Daniel Measurement And Control, Inc. Method and system for detecting deposit buildup within an ultrasonic flow meter
US7917321B2 (en) * 2008-02-25 2011-03-29 Daniel Measurement And Control, Inc. Method and system of determining a pattern of arrival time cycle skip in an acoustic flow meter
US7942068B2 (en) * 2009-03-11 2011-05-17 Ge Infrastructure Sensing, Inc. Method and system for multi-path ultrasonic flow rate measurement
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US7823463B1 (en) 2009-11-28 2010-11-02 Murray F Feller Ultrasonic flow sensor using two streamlined probes

Also Published As

Publication number Publication date
CN102636226B (zh) 2015-06-17
BR112013020393A2 (pt) 2016-10-25
CN102636226A (zh) 2012-08-15
BR112013020393B8 (pt) 2023-02-14
EP2673598B1 (en) 2017-08-30
WO2012108992A3 (en) 2012-10-04
CA2826869A1 (en) 2012-08-16
EP2673598A4 (en) 2015-06-17
US8302455B2 (en) 2012-11-06
EP2673598A2 (en) 2013-12-18
CA2826869C (en) 2016-06-21
RU2546855C1 (ru) 2015-04-10
BR112013020393B1 (pt) 2020-11-10
RU2013137674A (ru) 2015-03-20
US20120204620A1 (en) 2012-08-16
CN202974353U (zh) 2013-06-05
WO2012108992A2 (en) 2012-08-16

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