A self-validating digital Coriolis mass-flow meter: an overview

A new implementation of a Coriolis mass-flow meter transmitter is described. It is based on digital components, and has improved performance compared with the commercial, mostly analogue, transmitter using the same flowtube (transducer). Improvements are found in flowtube control, measurement precis...

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Main Authors: Henry, M, Clarke, D, Archer, N, Bowles, J, Leahy, M, Liu, R, Vignos, J, Zhou, F
Format: Journal article
Language:English
Published: Elsevier 2000
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author Henry, M
Clarke, D
Archer, N
Bowles, J
Leahy, M
Liu, R
Vignos, J
Zhou, F
author_facet Henry, M
Clarke, D
Archer, N
Bowles, J
Leahy, M
Liu, R
Vignos, J
Zhou, F
author_sort Henry, M
collection OXFORD
description A new implementation of a Coriolis mass-flow meter transmitter is described. It is based on digital components, and has improved performance compared with the commercial, mostly analogue, transmitter using the same flowtube (transducer). Improvements are found in flowtube control, measurement precision, and performance with two-phase and partially-empty conditions, including batching from empty. The new transmitter is viewed as a second-generation sensor validation (SEVA) demonstrator, in which experience from validating the commercial analogue transmitter has led to a redesign using digital technology. The resulting SEVA transmitter provides improved measurement performance and reduced vulnerability to fault conditions, as well as on-line estimates of measurement quality and fault compensation (Henry and Clarke, Control Engineering practice, 1 (4) (1993) 585-610). (C) 2000 Elsevier Science Ltd. All rights reserved.
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spelling oxford-uuid:4cc71084-6f9b-44a3-8fa5-7d74a53a219a2022-03-26T15:51:31ZA self-validating digital Coriolis mass-flow meter: an overviewJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:4cc71084-6f9b-44a3-8fa5-7d74a53a219aEnglishSymplectic Elements at OxfordElsevier2000Henry, MClarke, DArcher, NBowles, JLeahy, MLiu, RVignos, JZhou, FA new implementation of a Coriolis mass-flow meter transmitter is described. It is based on digital components, and has improved performance compared with the commercial, mostly analogue, transmitter using the same flowtube (transducer). Improvements are found in flowtube control, measurement precision, and performance with two-phase and partially-empty conditions, including batching from empty. The new transmitter is viewed as a second-generation sensor validation (SEVA) demonstrator, in which experience from validating the commercial analogue transmitter has led to a redesign using digital technology. The resulting SEVA transmitter provides improved measurement performance and reduced vulnerability to fault conditions, as well as on-line estimates of measurement quality and fault compensation (Henry and Clarke, Control Engineering practice, 1 (4) (1993) 585-610). (C) 2000 Elsevier Science Ltd. All rights reserved.
spellingShingle Henry, M
Clarke, D
Archer, N
Bowles, J
Leahy, M
Liu, R
Vignos, J
Zhou, F
A self-validating digital Coriolis mass-flow meter: an overview
title A self-validating digital Coriolis mass-flow meter: an overview
title_full A self-validating digital Coriolis mass-flow meter: an overview
title_fullStr A self-validating digital Coriolis mass-flow meter: an overview
title_full_unstemmed A self-validating digital Coriolis mass-flow meter: an overview
title_short A self-validating digital Coriolis mass-flow meter: an overview
title_sort self validating digital coriolis mass flow meter an overview
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