PARAMETERS OF STRUCTURED SUSPENSION SOLID PHASE TAKEN INTO ACCOUNT IN THE OSWALD-RAYNER AND BINGAME-SHVEDOV FORMULAS

UDC 532.584.002.612:622.33

Authors:

Semenenko E.V., D. Sc. (Tech.), Senior Researcher (IGTM NAS of Ukraine)

Demchenko T.D. Sc. of. Master (IGTM NAS of Ukraine)

Abstract.

This article focuses on studying influence of rheological properties of the structured suspension solid phase and on specifying interdependence between parameters of the Oswald-Rayner and Bingam-Shwedov rheological laws. Results of domestic and foreign experts’ studies were selected for the analysis, which state a possibility to apply the Oswald Rayner and Bingam-Shwedov rheological laws for describing rheological properties of the structured suspension in geotechnical systems. The article analyzes experimental results on rheological characteristics of the structured suspensions of different coal grades. It is for the first time when a relationship was established between the constants of the Oswald-Rayner rheological law and rheological characteristics used in the Bingam-Shwedov formula, as well as dependence of effective viscosity and initial shear stress of the structured coal suspensions on volatile substances outlet to the ash mass in the solid fraction particles.

Keywords:

structured suspension, effective viscosity, rheological characteristic, coal.

References:

1. Krut, O.A. (2002), Water-coal fuel [Hydrocarbon fuel], Naukova Dumka, kiev, ukaine.

2. Svitliy, Yu.G. and Krut, O.A. (2010), Gidravlichniy transport tverdih materialiv [Hydraulic transport of solid materials], Shidniy vidavnichiy dim, Donetsk, ukaine.

3. Kanenkov, V.V.  (2006), “Reducing the energy intensity of the hydraulic transportation polydisper-tion of slurries in the mining industry”, Ph.D. Thesis, GGI, St.-Petersburg, Russia.

4. Almager, M.V. (2006), “Substantiation of technological schemes and parameters of a complex for the transport of highly concentrated slurry laterite quarries (Republic of Cuba)”, Ph.D. Thesis, GGI, St.-Petersburg, Russia.

5. Avksentev, S.Yu. (2009), “The definition of rational modes of hydrotransport paste tailings of copper-zinc ore”, Ph.D. Thesis, GGI, St.-Petersburg, Russia.

6. Biletskiy, V.S. (2006), ” Study of characteristics of coal-water fuel, depending on the properties of the coal”, Naukovyi visnyk Natsionalnogo girnychogo universytetu, no.6, pp. 46 – 49.

7. Krut, A.A. and Papayani, F.A. (2001), “The technology of preparation of coal-water fuel with prior shmesani-eat source components”, Zbirnyk naukovykh prats Natsionalnogo girnychogo universytetu, Dnepropetrovsk, Ukraine, no. 3, pp. 111-118.

8. IGTM NAS of Ukraine (2014), Identifikatsiya reologicheskih parametrov strukturirovannyih suspenziy [Identification of rheological parameters of structured suspensions]: report on research projects (intermediate), IGTM NAS of Ukraine, Dnepropetrovsk, Ukraine.

9. Semenenko, E.,  Nykyforova, N., Tatarko, L. (2014), “The method of hydraulic gradient and critical velocity calculation for hydrotransportation of particles with substantially different densities”, 15th International Freight Pipeline Society Symposium, June, 24-27 2014, Prague, Czech Republic, p. 248 – 256.

About the authors:

Semenenko Evgeniy Vlsdimirovich, Doctor of Technical Sciences (D. Sc.), Senior Researcher,  Head of Department of Mine Energy Complexes, M.S. Polyakov Institute of Geotechnical Mechanics under the National Academy of Science of Ukraine (IGTM, NASU), Dnepropetrovsk, Ukraine, Ця електронна адреса захищена від спам-ботів. вам потрібно увімкнути JavaScript, щоб побачити її.

Demchenko TatianaDmitrivna, Master of Science, Engineer in Department of Mine Energy Complexes, M.S. Polyakov Institute of Geotechnical Mechanics under the National Academy of Sciences of Ukraine (IGTM, NASU), Dnepropetrovsk, Ukraine, Ця електронна адреса захищена від спам-ботів. вам потрібно увімкнути JavaScript, щоб побачити її. .