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Experiments with a drag reducing polymer in an ash-slag hydrotransport pipeline
Experiments were carried out in the 18 km long, 600 mm diameter pipeline at the thermal power station complex at Tusimice in Czechoslovakia. This pipeline carries a pumped slurry of pulverised ash and slag to the final disposal lagoon. The soluble polymer, Separan AP-302, was injected into this pipeline as a possible means of increasing the solids transport rate to 2 Mm3 per annum. Pressure gradients, velocities, solids concentration and polymer concentration were measured and gave encouraging results. Laboratory tests in small pipes with the same materials showed a high level of drag reduction and no adverse behaviour due to the solids loading.
Experiments with a drag reducing polymer in an ash-slag hydrotransport pipeline
Experiments were carried out in the 18 km long, 600 mm diameter pipeline at the thermal power station complex at Tusimice in Czechoslovakia. This pipeline carries a pumped slurry of pulverised ash and slag to the final disposal lagoon. The soluble polymer, Separan AP-302, was injected into this pipeline as a possible means of increasing the solids transport rate to 2 Mm3 per annum. Pressure gradients, velocities, solids concentration and polymer concentration were measured and gave encouraging results. Laboratory tests in small pipes with the same materials showed a high level of drag reduction and no adverse behaviour due to the solids loading.
Experiments with a drag reducing polymer in an ash-slag hydrotransport pipeline
Kolăŕ, Vaclav (Autor:in) / Pollert, Jaroslav (Autor:in) / Sellin, Robert H. J. (Autor:in) / Vlasak, Pavel (Autor:in)
Journal of Hydraulic Research ; 26 ; 143-158
01.03.1988
16 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
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