Dynamic Effect of Discharge Flow of a Rushton Turbine Impeller on a Radial Baffle

This paper presents an analysis of the mutual dynamic relation between the impeller discharge flow of a standard Rushton turbine impeller and a standard radial baffle at the wall of a cylindrical mixing vessel under turbulent regime of flow of an agitated liquid. A portion of the torsional moment of...

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Main Authors: J. Kratěna, I. Fořt, O. Brůha
Format: Article
Language:English
Published: CTU Central Library 2001-01-01
Series:Acta Polytechnica
Subjects:
Online Access:https://ojs.cvut.cz/ojs/index.php/ap/article/view/198
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spelling doaj-f6701d6c449642939ef777e2a46c617c2020-11-24T23:07:24ZengCTU Central LibraryActa Polytechnica1210-27091805-23632001-01-01411198Dynamic Effect of Discharge Flow of a Rushton Turbine Impeller on a Radial BaffleJ. KratěnaI. FořtO. BrůhaThis paper presents an analysis of the mutual dynamic relation between the impeller discharge flow of a standard Rushton turbine impeller and a standard radial baffle at the wall of a cylindrical mixing vessel under turbulent regime of flow of an agitated liquid. A portion of the torsional moment of the baffle corresponding to the region of the force interaction of the impeller discharge stream and the baffle is calculated under the assumption of constant angular momentum in the flow region between the impeller and the baffles. This theoretically obtained quantity is compared with the torsional moment of the baffles calculated from the experimentally determined distribution of the peripheral (tangential) component of dynamic pressure along the height of the radial baffle in pilot plant mixing equipment. It follows from the results of our calculations that for both investigated impeller off-bottom clearances the theoretically determined transferred torsional moment of the baffles in the area of interference between the impeller discharge flow and the baffles agrees fairly well with experimentally determined data and, moreover, that more than 2/3 of the transferred torsional moment of the baffles as a whole is located in the above mentioned interference area.https://ojs.cvut.cz/ojs/index.php/ap/article/view/198Rushton turbine impellerimpeller discharge streamdynamic pressure
collection DOAJ
language English
format Article
sources DOAJ
author J. Kratěna
I. Fořt
O. Brůha
spellingShingle J. Kratěna
I. Fořt
O. Brůha
Dynamic Effect of Discharge Flow of a Rushton Turbine Impeller on a Radial Baffle
Acta Polytechnica
Rushton turbine impeller
impeller discharge stream
dynamic pressure
author_facet J. Kratěna
I. Fořt
O. Brůha
author_sort J. Kratěna
title Dynamic Effect of Discharge Flow of a Rushton Turbine Impeller on a Radial Baffle
title_short Dynamic Effect of Discharge Flow of a Rushton Turbine Impeller on a Radial Baffle
title_full Dynamic Effect of Discharge Flow of a Rushton Turbine Impeller on a Radial Baffle
title_fullStr Dynamic Effect of Discharge Flow of a Rushton Turbine Impeller on a Radial Baffle
title_full_unstemmed Dynamic Effect of Discharge Flow of a Rushton Turbine Impeller on a Radial Baffle
title_sort dynamic effect of discharge flow of a rushton turbine impeller on a radial baffle
publisher CTU Central Library
series Acta Polytechnica
issn 1210-2709
1805-2363
publishDate 2001-01-01
description This paper presents an analysis of the mutual dynamic relation between the impeller discharge flow of a standard Rushton turbine impeller and a standard radial baffle at the wall of a cylindrical mixing vessel under turbulent regime of flow of an agitated liquid. A portion of the torsional moment of the baffle corresponding to the region of the force interaction of the impeller discharge stream and the baffle is calculated under the assumption of constant angular momentum in the flow region between the impeller and the baffles. This theoretically obtained quantity is compared with the torsional moment of the baffles calculated from the experimentally determined distribution of the peripheral (tangential) component of dynamic pressure along the height of the radial baffle in pilot plant mixing equipment. It follows from the results of our calculations that for both investigated impeller off-bottom clearances the theoretically determined transferred torsional moment of the baffles in the area of interference between the impeller discharge flow and the baffles agrees fairly well with experimentally determined data and, moreover, that more than 2/3 of the transferred torsional moment of the baffles as a whole is located in the above mentioned interference area.
topic Rushton turbine impeller
impeller discharge stream
dynamic pressure
url https://ojs.cvut.cz/ojs/index.php/ap/article/view/198
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