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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...

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Autores principales: Hallewell, Gregory, Dingley, John, Doubek, Martin, Feuillassier, Robin, Katunin, Sergey, Nagai, Koichi, Robinson, David, Rozanov, Alexandre, Williams, David, Vacek, Vaclav
Lenguaje:eng
Publicado: 2021
Materias:
Acceso en línea:https://dx.doi.org/10.3390/instruments5010006
http://cds.cern.ch/record/2759171
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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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