Modal simulation and experiment analysis of coriolis mass flowmeter
This article describes the simulation and experimental determination of the oscillation modes of a Coriolis Mass Flowmeter (CMF). The authors use the SolidWorks software to create a suitable model which is a double U-type of CMF. Based on SolidWorks software, the authors established the double-U tub...
Main Authors: | , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Wiley
2019-12-01
|
Series: | The Journal of Engineering |
Subjects: | |
Online Access: | https://digital-library.theiet.org/content/journals/10.1049/joe.2018.9169 |
_version_ | 1818338511959359488 |
---|---|
author | Juan Zhao Zhongxiang Li Dezhi Zheng Shangchun Fan |
author_facet | Juan Zhao Zhongxiang Li Dezhi Zheng Shangchun Fan |
author_sort | Juan Zhao |
collection | DOAJ |
description | This article describes the simulation and experimental determination of the oscillation modes of a Coriolis Mass Flowmeter (CMF). The authors use the SolidWorks software to create a suitable model which is a double U-type of CMF. Based on SolidWorks software, the authors established the double-U tube model for CMF, adopted ANSYS-Workbench simulation software to make the modal analysis, and the exciting mode and Coriolis force mode of CMF are obtained by simulation. According to the results of modal analysis, the authors made the harmonic response analysis of the Flowmeter, got the displacement amplitude of the U-shaped tube excited by different frequency loads under the exciting force, and the maximum displacement amplitude at the resonant frequency was determined. Next, the authors use a laser vibrometer to perform an experimental modal test on the flowmeter. The result of the simulation of the finite element model was verified by modal test of the flowmeter. Provides an effective reference for CMF modelling and simulation in the future. |
first_indexed | 2024-12-13T15:12:17Z |
format | Article |
id | doaj.art-dda2f9525c5f46829090f8599de390da |
institution | Directory Open Access Journal |
issn | 2051-3305 |
language | English |
last_indexed | 2024-12-13T15:12:17Z |
publishDate | 2019-12-01 |
publisher | Wiley |
record_format | Article |
series | The Journal of Engineering |
spelling | doaj.art-dda2f9525c5f46829090f8599de390da2022-12-21T23:40:50ZengWileyThe Journal of Engineering2051-33052019-12-0110.1049/joe.2018.9169JOE.2018.9169Modal simulation and experiment analysis of coriolis mass flowmeterJuan Zhao0Zhongxiang Li1Dezhi Zheng2Shangchun Fan3Beihang UniversityBeihang UniversityBeihang UniversityBeihang UniversityThis article describes the simulation and experimental determination of the oscillation modes of a Coriolis Mass Flowmeter (CMF). The authors use the SolidWorks software to create a suitable model which is a double U-type of CMF. Based on SolidWorks software, the authors established the double-U tube model for CMF, adopted ANSYS-Workbench simulation software to make the modal analysis, and the exciting mode and Coriolis force mode of CMF are obtained by simulation. According to the results of modal analysis, the authors made the harmonic response analysis of the Flowmeter, got the displacement amplitude of the U-shaped tube excited by different frequency loads under the exciting force, and the maximum displacement amplitude at the resonant frequency was determined. Next, the authors use a laser vibrometer to perform an experimental modal test on the flowmeter. The result of the simulation of the finite element model was verified by modal test of the flowmeter. Provides an effective reference for CMF modelling and simulation in the future.https://digital-library.theiet.org/content/journals/10.1049/joe.2018.9169flowmeterscoriolis forcevibration measurementmechanical engineering computingmodal analysisfinite element analysismodal simulationoscillation modessolidworks softwaredouble u-typedouble-u tube modeladopted ansys-workbench simulation softwaremodal analysisexciting modecoriolis force modeharmonic response analysisu-shaped tubeexciting forcemaximum displacement amplitudeexperimental modal testfinite element modelcmf modellingcoriolis mass flowmeterfrequency loads |
spellingShingle | Juan Zhao Zhongxiang Li Dezhi Zheng Shangchun Fan Modal simulation and experiment analysis of coriolis mass flowmeter The Journal of Engineering flowmeters coriolis force vibration measurement mechanical engineering computing modal analysis finite element analysis modal simulation oscillation modes solidworks software double u-type double-u tube model adopted ansys-workbench simulation software modal analysis exciting mode coriolis force mode harmonic response analysis u-shaped tube exciting force maximum displacement amplitude experimental modal test finite element model cmf modelling coriolis mass flowmeter frequency loads |
title | Modal simulation and experiment analysis of coriolis mass flowmeter |
title_full | Modal simulation and experiment analysis of coriolis mass flowmeter |
title_fullStr | Modal simulation and experiment analysis of coriolis mass flowmeter |
title_full_unstemmed | Modal simulation and experiment analysis of coriolis mass flowmeter |
title_short | Modal simulation and experiment analysis of coriolis mass flowmeter |
title_sort | modal simulation and experiment analysis of coriolis mass flowmeter |
topic | flowmeters coriolis force vibration measurement mechanical engineering computing modal analysis finite element analysis modal simulation oscillation modes solidworks software double u-type double-u tube model adopted ansys-workbench simulation software modal analysis exciting mode coriolis force mode harmonic response analysis u-shaped tube exciting force maximum displacement amplitude experimental modal test finite element model cmf modelling coriolis mass flowmeter frequency loads |
url | https://digital-library.theiet.org/content/journals/10.1049/joe.2018.9169 |
work_keys_str_mv | AT juanzhao modalsimulationandexperimentanalysisofcoriolismassflowmeter AT zhongxiangli modalsimulationandexperimentanalysisofcoriolismassflowmeter AT dezhizheng modalsimulationandexperimentanalysisofcoriolismassflowmeter AT shangchunfan modalsimulationandexperimentanalysisofcoriolismassflowmeter |