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2014 (published: 11.09.2014)
Number 3(21)
Home > Issue > The experimental study the of hydraulic impedance occurring during flow of the water-grain suspense in pipelines
Alexander G. Novoselov, Chebotar A.V., Gulyaeva Yu. N. , Meradzhi V.V.
Present study reviews methods for calculating dependencies for the purposes of studying the flow of non-Newtonian liquids in pipelines and proposes two ways to evaluate hydraulic resistance of the flow. Furthermore, we suggest a novel sequence for use of the rheodynamic data for engineering design of pipelines. Also, we propose hydrodynamic testing set-up to model water-thermal treatment of milled grain. We present data obtained during the study of hydraulic impendфnce of the water-grain suspensions flow in pipelines. In particular, we show dependence between the friction coefficient and the Reynolds’s number measured during flow of water-grains suspension through the studied section of a pipeline at hydro module value of 1:4 and at various temperature values.
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Keywords: hydrodynamics, water-grain suspension, hydraulic impedance.
This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License
UDC 637.143
The experimental study the of hydraulic impedance occurring during flow of the water-grain suspense in pipelines
Present study reviews methods for calculating dependencies for the purposes of studying the flow of non-Newtonian liquids in pipelines and proposes two ways to evaluate hydraulic resistance of the flow. Furthermore, we suggest a novel sequence for use of the rheodynamic data for engineering design of pipelines. Also, we propose hydrodynamic testing set-up to model water-thermal treatment of milled grain. We present data obtained during the study of hydraulic impendфnce of the water-grain suspensions flow in pipelines. In particular, we show dependence between the friction coefficient and the Reynolds’s number measured during flow of water-grains suspension through the studied section of a pipeline at hydro module value of 1:4 and at various temperature values.
Read the full article
Keywords: hydrodynamics, water-grain suspension, hydraulic impedance.
This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License