Analysis on vibration characteristics of coriolis mass flow sensor

Wang Shuai*, Zheng Dezhi, Fan Shangchun

*Corresponding author for this work

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

4 Citations (Scopus)

Abstract

Coriolis mass flowmeter(CMF) is significant in many industrial and commercial areas. The Coriolis mass flow sensor is one of the CMF components, which is essential to the performance and precise. The objectives of the work to be presented here were to investigate the vibration characteristics of Coriolis mass flow sensor by experiment, using commercial meters (U-shape tubes). By applying an external impulse force on the sensor tubes with a hammer attached to a force transducer. The detecting sensors detect the amplitude of tube motion, which are connected to the data acquisition and signal processing system (DASP) for data sampling and analysis. Firstly, get the amplitude and phase frequency chart data of two detecting sensors. Secondly, get the amplitude-frequency chart data of three knock points. From these results, characteristics of this Coriolis mass flow sensors can be got, and it will direct to enhance the performance of the meters. Also the influencing factors can be amended in details from this type of experiment.

Original languageEnglish
Title of host publicationICEMI 2009 - Proceedings of 9th International Conference on Electronic Measurement and Instruments
Pages2842-2845
Number of pages4
DOIs
Publication statusPublished - 2009
Externally publishedYes
Event9th International Conference on Electronic Measurement and Instruments, ICEMI 2009 - Beijing, China
Duration: 16 Aug 200919 Aug 2009

Publication series

NameICEMI 2009 - Proceedings of 9th International Conference on Electronic Measurement and Instruments

Conference

Conference9th International Conference on Electronic Measurement and Instruments, ICEMI 2009
Country/TerritoryChina
CityBeijing
Period16/08/0919/08/09

Keywords

  • Coriolis force
  • Flowmeters
  • Resonant frequency
  • Sensors
  • Vibration analysis

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