LAPSE:2020.1100
Published Article

LAPSE:2020.1100
Numerical Simulation of Water Based Ferrofluid Flows along Moving Surfaces
November 9, 2020
Abstract
The steady two-dimensional boundary layer flow past a stretching flat sheet in a water-based ferrofluid is investigated. The spatially varying magnetic field is created by two line currents. The similarity method is applied to transform the governing equations into a system of coupled ordinary differential equations. Numerical investigations are performed for ferrofluids, the suspensions of water, and three types of ferroparticles (magnetite, cobalt ferrite, and Mn-Zn ferrite). The impact of the solid volume fraction, the surface stretching parameter, and the ferromagnetic coefficient on the dimensionless velocity and temperature profiles, the skin friction coefficient, and the local Nusselt number are analysed for the three types of ferrofluid.
The steady two-dimensional boundary layer flow past a stretching flat sheet in a water-based ferrofluid is investigated. The spatially varying magnetic field is created by two line currents. The similarity method is applied to transform the governing equations into a system of coupled ordinary differential equations. Numerical investigations are performed for ferrofluids, the suspensions of water, and three types of ferroparticles (magnetite, cobalt ferrite, and Mn-Zn ferrite). The impact of the solid volume fraction, the surface stretching parameter, and the ferromagnetic coefficient on the dimensionless velocity and temperature profiles, the skin friction coefficient, and the local Nusselt number are analysed for the three types of ferrofluid.
Record ID
Keywords
ferrofluid, fluid flow, non-uniform magnetic field, Nusselt number, Sakiadis flow, skin friction coefficient, stretching sheet
Subject
Suggested Citation
Bognár G, Hriczó K. Numerical Simulation of Water Based Ferrofluid Flows along Moving Surfaces. (2020). LAPSE:2020.1100
Author Affiliations
Journal Name
Processes
Volume
8
Issue
7
Article Number
E830
Year
2020
Publication Date
2020-07-13
ISSN
2227-9717
Version Comments
Original Submission
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PII: pr8070830, Publication Type: Journal Article
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Published Article

LAPSE:2020.1100
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https://doi.org/10.3390/pr8070830
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[v1] (Original Submission)
Nov 9, 2020
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Nov 9, 2020
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https://psecommunity.org/LAPSE:2020.1100
Record Owner
Calvin Tsay
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