Optoelectronic tools of the laboratory microwave evaluator of a composition of crude oil
DOI:
https://doi.org/10.1109/ICATT.2011.6170764Keywords:
crude oil, optoelectronic tools, microwave separation distillation and glycolysis processAbstract
In article problems of an estimate of methodological approaches to optoelectronic system recordings of the gained components of crude oil build-up after its microwave processing in the evaluator are considered. Approaches for various types of the analysis are given: separation, distillation and glycolysis chemical reaction; the negative factors influencing the optical channel, methods of their elimination or minimisation from the point of view of problems: measurings, detection and discernments; an estimate efficiency of optoelectronic tools application, in structure of the laboratory microwave evaluator of a composition of crude oil from analysis types.References
THUERY, JACQUES; Microwaves: Industrial, Scientific and Medical Applications. Boston, London: Artech House, 1992, 673 p.
MOROZOV, G.A.; SEDELNIKOV, Y.E. (eds.). Low-Intensity Microwave Technologies (and Problems of Implementation). Moscow: Radio, 2003, 112 p.
MOROZOV, G.A.; MOROZOV, O.G.; SAMIGULLIN, R.R.; ET AL. Microwave modules control water content of emulsions of crude oil. Proc. of 13th Int. Crimean Microwave Conf. on Microwave and Telecommunication Technology, 2003, Sevastopol, Ukraine. Sevastopol: Weber, 2003, p.217.
MOROZOV, GENNADY; MOROZOV, OLEG; SAMIGULLIN, RUSTEM. Assessment of metrological characteristics of automated microwave modules for the analysis of crude oil. Physics of Wave Processes and Radio Technical Systems, 2004, v.7, n.1, p.76-78.
MOROZOV, G.A.; MOROZOV, O.G.; SAMIGULLIN, R.R.; GALIMOV, R.C.; KHAZIEV, D.R. Microwave installation for percent determination of extracted crude oil composition. Proc. of 44th Annual Microwave Power Symp., 2010, Denver, Colorado, USA. 2010.
MOROZOV, O.G.; SAMIGULLIN, R.R.; KHAZIEV, D.R. Microwave analyzer determination of fractional composition of crude oil. Proc. of V Int. Conf. on Physics and Technical Applications of Wave Processes, 2006, Samara. 2006, p.241.
MOROZOV, O.G.; NASYBULLIN, A.R.; SAMIGULLIN, R.R. Microwave technology in processing and recycling of municipal plastic waste. Proc. of the Samara Scientific Center, Russian Academy of Sciences, 2010, v.12(33), n.4(3), p.580-582.
MOROZOV, G.A.; MOROZOV, O.G.; SAMIGULLIN, R.R.; NASIBULLIN, A.R. Microwave recycling of pet bottles and its technical realization. Proc. of 45th Annual Microwave Power Symp., 2011, New Orleans, Louisiana, USA. 2011, p.163-166.
FETISOV, V.S. Photometric Measurements of the Concentration Field Means of Liquid Disperse Systems. Ufa: USATU, 2005, 233 p.
ANFINOGENTOV, V.I.; MOROZOV, G.A.; MOROZOV, O.G.; SAMIGULLIN, R.R. Mathematical modeling of the effects of EMF on the microwave dielectric structures in cylindrical and coaxial separation volume. Proc. of V Int. Conf. on Physics and Technical Applications of Wave Processes, Samara, 2006.
AVERIN, E.A.; MOROZOV, G.A.; MOROZOV, O.G.; NASYBULLIN, A.R.; SAMIGULLIN, R.R. Laboratory analysis of liquid funds optoelectronic disperse systems. Proc. of the Samara Scientific Center, Russian Academy of Sciences, 2010, v.12(33), n.4(3), p.660-663.
ANFINOGENTOV, V.I. Mathematical Modeling of Microwave Heating of Dielectrics. Kazan: Kazan Univ. State. Tech., 2006, 140 p.
MOROZOV, O.G.; MYAGCHENKOV, A.B.; TURPITKO, V.A. Detector oil concentration in water. Proc. of V Int. Conf. on Physics and Technical Applications of Wave Processes, Samara, 2006, p.267-268.
MOROZOV, O.G.; SAMIGULLIN, R.R.; KHAZIEV, D.R. Microwave separation and distillation of crude oil water cut sensors. Modern Problems of Radio Electronics: Sat. scientific. Art. Krasnoyarsk: Siberian Federal University Press, Polytechnic Institute, 2007, 690 p.
GOST 2477-65. Crude oil and oil products. Methods for determining the water content.