Agitation of Complex Fluids in Cylindrical Vessels by Newly Designed Anchor Impellers

Bingham-Papanastasiou Fluids as a Case Study

Authors

  • Benhanifia Kada
    Affiliation

    Laboratory of Energy in Arid Region (ENERGARID), Faculty of Science and Technology, University of Tahri Mohamed Bechar, 08000 Bechar, P.O.B. 417, Algeria

  • Rahmani Lakhdar
    Affiliation

    Laboratory of Energy in Arid Region (ENERGARID), Faculty of Science and Technology, University of Tahri Mohamed Bechar, 08000 Bechar, P.O.B. 417, Algeria

  • Mebarki Brahim
    Affiliation

    Laboratory of Energy in Arid Region (ENERGARID), Faculty of Science and Technology, University of Tahri Mohamed Bechar, 08000 Bechar, P.O.B. 417, Algeria

  • Houari Ameur
    Affiliation

    Department of Technology, University Centre of Naama, 45000 Naama, P.O.B. 66, Algeria

https://doi.org/10.3311/PPme.18438

Abstract

The fluid flows and power consumption in a vessel stirred by anchor impellers are investigated in this paper. The case of rheologically complex fluids modeled by the Bingham-Papanastasiou model is considered. New modifications in the design of the classical anchor impeller are introduced. A horizontal blade is added to the standard geometry of the anchor, and the effect of its inclination angle (α) is explored. Four geometrical configurations are realized, namely: α = 0°, 20°, 40°, and 60°. The effects of the number of added horizontal blades, Reynolds number, and Bingham number are also examined. The obtained findings reveal that the most efficient impeller design is that with (case 4) arm blades inclined by 60°.This case allowed the most expansive cavern size with enhanced shearing in the whole vessel volume. The effect of adding second horizontal arm blades (with 60°) gave better hydrodynamic performance only with a slight increase in power consumption. A significant impact of Bingham number (Bn) was observed, where Bn = 5 allowed obtaining the lowest power input and most expansive well-stirred region.

Keywords:

anchor impellers, bingham-papanastasiou model, power consumption, fluid flows

Published Online

2022-03-22

How to Cite

Kada, B., Lakhdar, R., Brahim, M., Ameur, H. “Agitation of Complex Fluids in Cylindrical Vessels by Newly Designed Anchor Impellers: Bingham-Papanastasiou Fluids as a Case Study”, Periodica Polytechnica Mechanical Engineering, 66(2), pp. 109–119, 2022. https://doi.org/10.3311/PPme.18438

Issue

Section

Articles