Determining the thermal and physicals properties of oil processing products

Authors

  • Viktoria I. Kryvda Odessа Polytechnic National University

DOI:

https://doi.org/10.15276/opu.1.45.2015.15

Keywords:

thermal physical properties, adequacy, dispersion analysis

Abstract

In the last decades both technological process’ improvement and primary energy resources saving are the main tasks of oil refineries. Using various oil products does impose an accurate knowledge of their properties. The dispersion analysis applied makes possible to construct a model simulating the primary oil refining products’ and raw materials’ thermal physical properties. As a result of data approximation there were obtained polynomials with coefficients differing from attributable to the studied oil products fractions. The research represents graphic dependences of thermal physical properties on temperature values for diesel oil fraction. The linear character of density and calorific capacity dependencies from temperature is represented with a proportional error in calculations. The relative minimum error is below 2% that confirms the implemented calculations’ adequacy. The resulting model can be used in calculations for further technological process improvements.

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Author Biography

Viktoria I. Kryvda, Odessа Polytechnic National University

канд. техн. наук, доц.

References

Пат. 107027 Україна, МПК С10G 7/00, B01D 3/00. Установка атмосферної вакуумної трубчатки для підготовки і первинної переробки нафти / Максимов М.В., Кривда В.І.; патентовласники Максимов М.В., Кривда В.І. ― № a201303011; заяв. 11.03.2013; надр. 10.11.2014, Бюл. № 21/2014.

Максимов, М.В. Определение минимального температурного напора между холодными и горячими потоками для рекуперативных теплообменников ЭЛОУ-АВТ / М.В. Максимов, В.И. Крывда // Холодил. техніка і технологія. ― 2011. ― № 3(131). ― С. 56―62.

Liao, T. Performance characteristics of a low concentrated photovoltaic–thermoelectric hybrid power generation device / T. Liao, B. Lin, Z. Yang // International Journal of Thermal Sciences. ― 2014. ― Vol. 77. ― PP. 158―164.

Шишков, В.И. Термодинамические свойства нитрита ванадия / В.И. Шишков, В.М. Жихарев // Вестник Южно-Уральского государственного университета. Серия «Металлургия». ― 2012. ― № 15. ― С. 46―49.

Железный, В.П. Новые структурно-аддитивные методы прогнозирования теплофизических свойств углеводородов / В.П. Железный, А.С. Маркварт //Актуальные вопросы исследований пластовых систем месторождений углеводородов: сб. науч. статей: в 2 ч. / под ред. Б.А. Григорьева. ― М.: Газпром ВНИИГАЗ, 2011. ― Ч. 1. ― С. 207―218.

Heat transfer properties of engine oils / S. Wrenick, P. Sutor, H. Pangilinan, E.E. Schwarz / Proceedings of WTC2005 World Tribology Congress III, Washington, D.C., USA, September 12–16, 2005. ― 2005. ― Vol. 1. ― PP. 595―596.

The temperature dependence of parachor / V.P. Zhelezny, Yu.V. Semenyuk, S.N. Ancherbak, N.V. Emel’yanenko // Russian Journal of Physical Chemistry A. ― 2009. ― Vol. 83, Issue 2. ― PP.182―186.

Particulate fouling of CuO–water nanofluid at isothermal diffusive condition inside the conventional heat exchanger-experimental and modeling / V. Nikkhah, M.M. Sarafraz, F. Hormozi, S.M. Peyghambarzadeh // Experimental Thermal and Fluid Science. ― 2015. ― Vol. 60. ― PP. 83―95.

Published

2015-02-15

How to Cite

[1]
Kryvda, V.I. 2015. Determining the thermal and physicals properties of oil processing products. Proceedings of Odessa Polytechnic University. 1(45) (Feb. 2015), 92–95. DOI:https://doi.org/10.15276/opu.1.45.2015.15.