

Rheological Dynamics and Pipeline Transport of Grinding Sludge
https://doi.org/10.18412/1816-0395-2012-5-24-27
Abstract
There are presented rheological models of non-Newtonian fluids flow. For grinding sludge suspensions, there are obtained complete rheological flow curves, rheological properties of such slurries are studied and rheological constants i.e. yield stress, flow index and coefficient of consistency are found. Critical flow velocities of grinding sludge suspensions for pipelines of industrial diameters are defined.
About the Author
L. I. SokolovRussian Federation
References
1. Уилкинсон У.Л. Неньютоновские жидкости. Гидромеханика, перемешивание и теплообмен: Пер. с англ. М.: Мир, 1964.
2. Рейнер М. Реология. М.: Наука, 1965.
3. Bird R.B., Stewart W.E., Lightfoot E.N. Transport phenomena. N.Y.-L.: Gohn Wiley, 1962.
4. Escher F , Albisser-Rotach S. Zur Bestimmung des FlieBverhaltens vor halbflussigen Zebensmitteln. ZFL Zeitschrift fьr Zebensmittel // Technologie und Verfahrenstechnik. 34(4), 1983.
5. Соколов Л.И., Курганов А.М. Напорный гидротранспорт аномальных систем. Анализ и оценка промышленного применения. Прогнозы, проблемы, суждения // Черметинформация. №3Д/2668. М., 1985.
6. Roels J.A.,van den Berg J., Voncken R.M. The Reology of Mycelial Broth, Biotech. Bioeg, 16,181, 1974.
7. Соколов Л.И. Течение неньютоновских жидкостей. Вологда: ВоГТУ, 2007.
8. Dean vortex membrane microfiltration non-Newtonian viscosity effects. Schutyser Maarten Belfort Georges // Ind. and Eng. Chem. Res. 2002. 41, № 3.
Review
For citations:
Sokolov L.I. Rheological Dynamics and Pipeline Transport of Grinding Sludge. Ecology and Industry of Russia. 2012;(5):24-27. (In Russ.) https://doi.org/10.18412/1816-0395-2012-5-24-27