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Gas Pressure Evaluation through Radial Velocity Measurement of Fluid Flow Modeled by Drift Flux Model
<?xml version="1.0" encoding="UTF-8"?> <article key="pdf/10004875" mdate="2016-05-01 00:00:00"> <author>Aicha Rima Cheniti and Hatem Besbes and Joseph Haggege and Christophe Sintes</author> <title>Gas Pressure Evaluation through Radial Velocity Measurement of Fluid Flow Modeled by Drift Flux Model</title> <pages>1312 - 1319</pages> <year>2016</year> <volume>10</volume> <number>7</number> <journal>International Journal of Computer and Information Engineering</journal> <ee>https://publications.waset.org/pdf/10004875</ee> <url>https://publications.waset.org/vol/115</url> <publisher>World Academy of Science, Engineering and Technology</publisher> <abstract>In this paper, we consider a drift flux mixture model of the blood flow. The mixture consists of gas phase which is carbon dioxide and liquid phase which is an aqueous carbon dioxide solution. This model was used to determine the distributions of the mixture velocity, the mixture pressure, and the carbon dioxide pressure. These theoretical data are used to determine a measurement method of mean gas pressure through the determination of radial velocity distribution. This method can be applicable in experimental domain. </abstract> <index>Open Science Index 115, 2016</index> </article>