Theory of the inertial density-measuring sensor for the oil - liquid - gas mixture | Vestnik Tomskogo gosudarstvennogo universiteta. Matematika i mekhanika – Tomsk State University Journal of Mathematics and Mechanics. 2016. № 5(43). DOI: 10.17223/19988621/43/6

Theory of the inertial density-measuring sensor for the oil - liquid - gas mixture

The Emerson transport company (USA), which is engaged in delivery of oil to consumers, has developed an inertial sensor for medium density measurements. The sensor operating principle is based on Coriolis forces the action of which causes the deflection of a vibrating tube with a moving liquid-gas mixture in it. The real sensor (Emerson) consists of two metal tubes with a gas-liquid mixture flow. In the central part of the system, there are two electromagnets which create axial vibrations of the frames. In this paper, a single pipe and a rigid stand with electromagnets between them are used. The rounded frame is replaced by piecewise linear sections and fixed onto the main channel by rubber elements. On the basis of the angular momentum theory for relative motion around a mobile axis passing through the mass center of the system, the governing equation for torsional vibrations of the meter frame has been obtained. The analytical and numerical solutions of this equation are obtained and used as a basis for estimating the effect of the mixture density on the amplitude of frame torsional vibrations.

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Keywords

torsional vibrations, electromagnets, inertial density sensor, meter frame, oil and gas-liquid mixture, крутильные колебания, электромагниты, рамка расходомера, инерционный датчик плотности, нефтегазожидкостная смесь

Authors

NameOrganizationE-mail
Bubenchikov Aleksey MikhaylovichTomsk State Universityalexy121@mail.ru
Bubenchikov Mikhail AlexeevichGazprom Transgaz Tomsk; Tomsk State Universitymichael121@mail.ru
Dunaevskiy Grigoriy EphimovichTomsk State Universityproecs@mail.tsu.ru
Evseev Igor' AleksandrovichTomsk State University
Kiseleva Ol'ga SergeevnaTomsk State University
Kutenkov Viktor OlegovichTomsk State University
Naymanbaev Farkhat ZhumagalievichTomsk State University
Всего: 7

References

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Bubenchikov M.A., Potekaev A.I., Bubenchikov A.M., et al. The interaction potential of an open nanotubeand its permeability: molecular dynamicssimulation // EPJ Web of Conferences.110, 01061 (2016). Doi 10.1051/epjconf/ 201611001061.
Bubenchikov M.A., Bubenchikov A.M., Usenko O.V., Ukolov A.V. Permeability of ultrathin amorphous carbonfilms // EPJ Web of Conferences.110, 01078 (2016). Doi 10.1051/epjconf/ 201611001077.
Bubenchikov M.A., Bubenchikov A.M., Usenko O.V., Tsyrenova V.B. Ability of fullerene to accumulate hydrogen // EPJ Web of Conferences.110, 01077 (2016). Doi 10.1051/epjconf/ 201611001077.
Bubenchikov A., Bubenchikov M., Matvienko O., et al. Simple energy barrier for component mixture of natural gases // Advanced Materials in Technology and Construction (AMTC-2015): AIP Conf. Proc. 1698, 060007 (2016). Doi 10.1063/1.4937862.
Bubenchikov A., Bubenchikov M., Matvienko O., Shcherbakov N.The mathematical model of the chevronarch gearing transmitter // Advanced Materials in Technology and Construction (AMTC-2015): AIP Conf. Proc. 1698, 060005 (2016). Doi 10.1063/1.4937860.
Bubenchikov A.M., Bubenchikov M.A., Potekaev A.I., et al. Condensed-state physicsthe potential field of carbon bodies as a basis forsorption properties of barrier gas systems // Russ. Phys. J. 2015. V. 58. No. 7. Р. 882-888.
Khudobina J., Bubenchikov A., Bubenchikov M., et al. Numerical Simulation of Oil Pool Boundary Evolution // Advanced Materials in Technology and Construction (AMTC-2015): AIP Conf. Proc. 1698, 060006 (2016). Doi 10.1063/1.4937861.
 Theory of the inertial density-measuring sensor for the oil - liquid - gas mixture | Vestnik Tomskogo gosudarstvennogo universiteta. Matematika i mekhanika – Tomsk State University Journal of Mathematics and Mechanics. 2016. № 5(43). DOI: 10.17223/19988621/43/6

Theory of the inertial density-measuring sensor for the oil - liquid - gas mixture | Vestnik Tomskogo gosudarstvennogo universiteta. Matematika i mekhanika – Tomsk State University Journal of Mathematics and Mechanics. 2016. № 5(43). DOI: 10.17223/19988621/43/6

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