Concentration distribution and deposition limit of medium-coarse sand-water slurry in inclined pipe

Author:

Vlasák Pavel1,Matoušek Václav1,Chára Zdeněk1,Krupička Jan1,Konfršt Jiří1,Kesely Mikoláš1

Affiliation:

1. Institute of Hydrodynamics of the Czech Academy of Sciences , v. v. i., Pod Patankou 30/5, 160 00 , Prague 6 , Czech Republic .

Abstract

Abstract Sand-water slurry was investigated on an experimental pipe loop of inner diameter D = 100 mm with the horizontal, inclined, and vertical smooth pipe sections. A narrow particle size distribution silica sand of mean diameter 0.87 mm was used. The experimental investigation focused on the effects of pipe inclination, overall slurry concentration, and mean velocity on concentration distribution and deposition limit velocity. The measured concentration profiles showed different degrees of stratification for the positive and negative pipe inclinations. The degree of stratification depended on the pipe inclination and on overall slurry concentration and velocity. The ascending flow was less stratified than the corresponding descending flow, the difference increasing from horizontal flow up to an inclination angle of about +30°. The deposition limit velocity was sensitive to the pipe inclination, reaching higher values in the ascending than in the horizontal pipe. The maximum deposition limit value was reached for an inclination angle of about +25°, and the limit remained practically constant in value, about 1.25 times higher than that in the horizontal pipe. Conversely, in the descending pipe, the deposition limit decreased significantly with the negative slopes and tended to be zero for an inclination angle of about −30°, where no stationary bed was observed.

Publisher

Walter de Gruyter GmbH

Reference31 articles.

1. Clift, R., Clift, D.H.M., 1981. Continuous measurement of the density of flowing slurries. International Journal of Multiphase Flow, 7, 5, 555–561.

2. Doron, M., Simkhis, M., Barnea, D., 1997. Flow of solid-liquid mixtures in inclined pipes. International Journal of Multiphase Flow, 23, 313–323.

3. Durand, R., Condolios, E., 1952. Étude expérimentale du refoulement des matériaux en conduite. 2émes Journées de l´Hydralique, SHF, Grenoble.

4. Gillies, R.G., Schaan, J., Summer, R.J., Mc Kibben, M.J., Shook, C.A., 2000. Deposition velocities for Newtonian Slurries in Turbulent Flow. Can. J. Chemical Engineering, 78, 704–708.

5. De Hoog, E., in’t Veld, M., Van Wijk, J., Talmon, A., 2017. An experimental study into flow assurance of coarse inclined slurries. In: Proceedings of 18th Transport and Sedimentation of Solids Particles, Prague, Czech Republic, pp. 113–120.

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