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Applications and Perspectives of Ultrasonic Multi-Gas Analysis with Simultaneous Flowmetry
We have developed ultrasonic instrumentation for simultaneous flow and composition measurement in a variety of gas mixtures. Flow and composition are respectively derived from measurements of the difference and average of sound transit times in opposite directions in a flowing process gas. We have d...
Autores principales: | , , , , , , , , , |
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Lenguaje: | eng |
Publicado: |
2021
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.3390/instruments5010006 http://cds.cern.ch/record/2759171 |
_version_ | 1780970290454462464 |
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author | Hallewell, Gregory Dingley, John Doubek, Martin Feuillassier, Robin Katunin, Sergey Nagai, Koichi Robinson, David Rozanov, Alexandre Williams, David Vacek, Vaclav |
author_facet | Hallewell, Gregory Dingley, John Doubek, Martin Feuillassier, Robin Katunin, Sergey Nagai, Koichi Robinson, David Rozanov, Alexandre Williams, David Vacek, Vaclav |
author_sort | Hallewell, Gregory |
collection | CERN |
description | We have developed ultrasonic instrumentation for simultaneous flow and composition measurement in a variety of gas mixtures. Flow and composition are respectively derived from measurements of the difference and average of sound transit times in opposite directions in a flowing process gas. We have developed a sound velocity-based algorithm to compensate for the effects of additional gases, allowing the concentrations of a pair of gases of primary interest to be acoustically measured on top of a varying baseline from ‘third party’ gases whose concentrations in the multi-gas mixture are measured by other means. Several instruments are used in the CERN ATLAS experiment. Three monitor C$_3$F$_8$, (R218), and CO$_2$ coolant leaks into N$_2$-purged environmental envelopes. Precision in molar concentration of better than $2 \times 5^{-5}$ is routinely seen in mixtures of C$_3$F$_8$ in N$_2$ in the presence of varying known concentrations of CO$_2$. Further instruments monitor air ingress and C$_3$F$_8$ vapor flow (at high mass flows around 1.1 kg s$^{-1}$) in the 60 kW thermosiphon C$_3$F$_8$ evaporative cooling recirculator. This instrumentation and analysis technique, targeting binary pairs of gases of interest in multi-gas mixtures, is promising for mixtures of anesthetic gases, particularly in the developing area of xenon anesthesia. |
id | oai-inspirehep.net-1847000 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2021 |
record_format | invenio |
spelling | oai-inspirehep.net-18470002021-03-26T22:19:11Zdoi:10.3390/instruments5010006http://cds.cern.ch/record/2759171engHallewell, GregoryDingley, JohnDoubek, MartinFeuillassier, RobinKatunin, SergeyNagai, KoichiRobinson, DavidRozanov, AlexandreWilliams, DavidVacek, VaclavApplications and Perspectives of Ultrasonic Multi-Gas Analysis with Simultaneous FlowmetryDetectors and Experimental TechniquesWe have developed ultrasonic instrumentation for simultaneous flow and composition measurement in a variety of gas mixtures. Flow and composition are respectively derived from measurements of the difference and average of sound transit times in opposite directions in a flowing process gas. We have developed a sound velocity-based algorithm to compensate for the effects of additional gases, allowing the concentrations of a pair of gases of primary interest to be acoustically measured on top of a varying baseline from ‘third party’ gases whose concentrations in the multi-gas mixture are measured by other means. Several instruments are used in the CERN ATLAS experiment. Three monitor C$_3$F$_8$, (R218), and CO$_2$ coolant leaks into N$_2$-purged environmental envelopes. Precision in molar concentration of better than $2 \times 5^{-5}$ is routinely seen in mixtures of C$_3$F$_8$ in N$_2$ in the presence of varying known concentrations of CO$_2$. Further instruments monitor air ingress and C$_3$F$_8$ vapor flow (at high mass flows around 1.1 kg s$^{-1}$) in the 60 kW thermosiphon C$_3$F$_8$ evaporative cooling recirculator. This instrumentation and analysis technique, targeting binary pairs of gases of interest in multi-gas mixtures, is promising for mixtures of anesthetic gases, particularly in the developing area of xenon anesthesia.oai:inspirehep.net:18470002021 |
spellingShingle | Detectors and Experimental Techniques Hallewell, Gregory Dingley, John Doubek, Martin Feuillassier, Robin Katunin, Sergey Nagai, Koichi Robinson, David Rozanov, Alexandre Williams, David Vacek, Vaclav Applications and Perspectives of Ultrasonic Multi-Gas Analysis with Simultaneous Flowmetry |
title | Applications and Perspectives of Ultrasonic Multi-Gas Analysis with Simultaneous Flowmetry |
title_full | Applications and Perspectives of Ultrasonic Multi-Gas Analysis with Simultaneous Flowmetry |
title_fullStr | Applications and Perspectives of Ultrasonic Multi-Gas Analysis with Simultaneous Flowmetry |
title_full_unstemmed | Applications and Perspectives of Ultrasonic Multi-Gas Analysis with Simultaneous Flowmetry |
title_short | Applications and Perspectives of Ultrasonic Multi-Gas Analysis with Simultaneous Flowmetry |
title_sort | applications and perspectives of ultrasonic multi-gas analysis with simultaneous flowmetry |
topic | Detectors and Experimental Techniques |
url | https://dx.doi.org/10.3390/instruments5010006 http://cds.cern.ch/record/2759171 |
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