Study of Pumping Capacity of Pitched Blade Impellers

A study was made of the pumping capacity of pitched blade impellers in a cylindrical pilot plant vessel with four standard radial baffles at the wall under a turbulent regime of flow. The pumping capacity was calculated from the radial profile of the axial flow, under the assumption of axial symmetr...

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Main Authors: I. Fořt, T. Jirout, R. Sperling, S. Jambere, F. Rieger
Format: Article
Language:English
Published: CTU Central Library 2002-01-01
Series:Acta Polytechnica
Subjects:
Online Access:https://ojs.cvut.cz/ojs/index.php/ap/article/view/380
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spelling doaj-0f6f6a4049254282be9187e5e54e14cd2020-11-25T00:53:51ZengCTU Central LibraryActa Polytechnica1210-27091805-23632002-01-01424380Study of Pumping Capacity of Pitched Blade ImpellersI. FořtT. JiroutR. SperlingS. JambereF. RiegerA study was made of the pumping capacity of pitched blade impellers in a cylindrical pilot plant vessel with four standard radial baffles at the wall under a turbulent regime of flow. The pumping capacity was calculated from the radial profile of the axial flow, under the assumption of axial symmetry of the discharge flow. The mean velocity was measured using laser Doppler anemometry in a transparent vessel of diameter T = 400 mm, provided with a standard dished bottom. Three and six blade pitched blade impellers (the pitch angle varied within the interval a Îá24°; 45°ń) of impeller/vessel diameter ratio D/T = 0.36, as well as a three blade pitched blade impeller with folded blades of the same diameter, were tested. The calculated results were compared with the results of experiments mentioned in the literature, above all in cylindrical vessels with a flat bottom. Both arrangements of the agitated system were described by the impeller energetic efficiency, i.e, a criterion including in dimensionless form both the impeller energy consumption (impeller power input) and the impeller pumping effect (impeller pumping capacity). It follows from the results obtained with various geometrical configurations that the energetic efficiency of pitched blade impellers is significantly lower for configurations suitable for mixing solid-liquid suspensions (low impeller off bottom clearances) than for blending miscible liquids in mixing (higher impeller off bottom clearances).https://ojs.cvut.cz/ojs/index.php/ap/article/view/380pitched blade impellerimpeller pumping capacityturbulent flowlaser Doppler anemometerimpeller energetic efficiency
collection DOAJ
language English
format Article
sources DOAJ
author I. Fořt
T. Jirout
R. Sperling
S. Jambere
F. Rieger
spellingShingle I. Fořt
T. Jirout
R. Sperling
S. Jambere
F. Rieger
Study of Pumping Capacity of Pitched Blade Impellers
Acta Polytechnica
pitched blade impeller
impeller pumping capacity
turbulent flow
laser Doppler anemometer
impeller energetic efficiency
author_facet I. Fořt
T. Jirout
R. Sperling
S. Jambere
F. Rieger
author_sort I. Fořt
title Study of Pumping Capacity of Pitched Blade Impellers
title_short Study of Pumping Capacity of Pitched Blade Impellers
title_full Study of Pumping Capacity of Pitched Blade Impellers
title_fullStr Study of Pumping Capacity of Pitched Blade Impellers
title_full_unstemmed Study of Pumping Capacity of Pitched Blade Impellers
title_sort study of pumping capacity of pitched blade impellers
publisher CTU Central Library
series Acta Polytechnica
issn 1210-2709
1805-2363
publishDate 2002-01-01
description A study was made of the pumping capacity of pitched blade impellers in a cylindrical pilot plant vessel with four standard radial baffles at the wall under a turbulent regime of flow. The pumping capacity was calculated from the radial profile of the axial flow, under the assumption of axial symmetry of the discharge flow. The mean velocity was measured using laser Doppler anemometry in a transparent vessel of diameter T = 400 mm, provided with a standard dished bottom. Three and six blade pitched blade impellers (the pitch angle varied within the interval a Îá24°; 45°ń) of impeller/vessel diameter ratio D/T = 0.36, as well as a three blade pitched blade impeller with folded blades of the same diameter, were tested. The calculated results were compared with the results of experiments mentioned in the literature, above all in cylindrical vessels with a flat bottom. Both arrangements of the agitated system were described by the impeller energetic efficiency, i.e, a criterion including in dimensionless form both the impeller energy consumption (impeller power input) and the impeller pumping effect (impeller pumping capacity). It follows from the results obtained with various geometrical configurations that the energetic efficiency of pitched blade impellers is significantly lower for configurations suitable for mixing solid-liquid suspensions (low impeller off bottom clearances) than for blending miscible liquids in mixing (higher impeller off bottom clearances).
topic pitched blade impeller
impeller pumping capacity
turbulent flow
laser Doppler anemometer
impeller energetic efficiency
url https://ojs.cvut.cz/ojs/index.php/ap/article/view/380
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