Detail publikace

Research of Flow Stability of Non-Newtonian Magnetorheological Fluid Flow in the Gap between Two Cylinders

KOZUBKOVÁ, M. JABLONSKÁ, J. BOJKO, M. POCHYLÝ, F. FIALOVÁ, S.

Anglický název

Research of Flow Stability of Non-Newtonian Magnetorheological Fluid Flow in the Gap between Two Cylinders

Typ

článek v časopise ve Web of Science, Jimp

Jazyk

en

Originální abstrakt

This paper deals with a mathematical modeling of flow stability of Newtonian and non-Newtonian fluids in the gap between two concentric cylinders, one of which rotates. A typical feature of the flow is the formation of a vortex flow, so-called Taylor vortices. Vortex structures are affected by the speed of the rotating cylinder and the physical properties of the fluids, i.e., viscosity and density. Analogy in terms of viscosity is assumed for non-Newtonian and magnetorheological fluids. Mathematical models of laminar, transient and turbulent flow with constant viscosity and viscosity as a function of the deformation gradient were formulated and numerically solved to analyze the stability of single-phase flow. To verify them, a physical experiment was performed for Newtonian fluids using visualizations of vortex structures-Taylor vortices. Based on the agreement of selected numerical and physical results, the experience was used for numerical simulations of non-Newtonian magnetorheological fluid flow.

Anglický abstrakt

This paper deals with a mathematical modeling of flow stability of Newtonian and non-Newtonian fluids in the gap between two concentric cylinders, one of which rotates. A typical feature of the flow is the formation of a vortex flow, so-called Taylor vortices. Vortex structures are affected by the speed of the rotating cylinder and the physical properties of the fluids, i.e., viscosity and density. Analogy in terms of viscosity is assumed for non-Newtonian and magnetorheological fluids. Mathematical models of laminar, transient and turbulent flow with constant viscosity and viscosity as a function of the deformation gradient were formulated and numerically solved to analyze the stability of single-phase flow. To verify them, a physical experiment was performed for Newtonian fluids using visualizations of vortex structures-Taylor vortices. Based on the agreement of selected numerical and physical results, the experience was used for numerical simulations of non-Newtonian magnetorheological fluid flow.

Klíčová slova anglicky

Taylor vortices; non-Newtonian viscosity; magnetorheological fluids; experiment; numerical simulation; CFD

Vydáno

15.10.2021

Nakladatel

MDPI

Místo

BASEL

ISSN

2227-9717

Ročník

9

Číslo

10

Strany od–do

1–16

Počet stran

16

BIBTEX


@article{BUT175898,
  author="Milada {Kozubková} and Jana {Jablonská} and Marian {Bojko} and František {Pochylý} and Simona {Fialová},
  title="Research of Flow Stability of Non-Newtonian Magnetorheological Fluid Flow in the Gap between Two Cylinders",
  year="2021",
  volume="9",
  number="10",
  month="October",
  pages="1--16",
  publisher="MDPI",
  address="BASEL",
  issn="2227-9717"
}