Results 11 to 20 of about 143 (128)
Magnetohydrodynamic and Ferrohydrodynamic Fluid Flow Using the Finite Volume Method
Many problems in fluid mechanics describe the change in the flow under the effect of electromagnetic forces. The present study explores the behaviour of an electric conducting, Newtonian fluid flow applying the magnetohydrodynamics (MHD) and ...
Grigorios Chrimatopoulos +2 more
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Biomagnetic flow over a flat plate embedded by a magnetic dipole in a porous media
The present study used a simplified axisymmetric biomagnetic fluid dynamics and porous mediamodel which includes FHD (Ferrohydrodynamics), porosity and inertia effects saturated by magnetic dipole to study the influences of the leading parameters on ...
Ferdows Mohammad, Sadia Anjum Jumana
doaj +1 more source
In this study, we examined the biomagnetic flow and heat transfer of an incompressible electrically conductive fluid (blood) containing gold nanoparticles over a stretching sheet in the presence of a magnetic dipole.
Jahangir Alam +3 more
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Advances in analytical microfluidic workflows for differential cancer diagnosis
Microfluidics holds a great potential for an analytical examination of liquid biopsy and the development of point‐of‐care testing devices. This review overviews fundamentals and technological breakthroughs of immunolabeled and label‐free analytical microfluidic devices for screening and examining CTCs, describes engineering‐driven workflows for ...
Morteza Hasanzadeh Kafshgari +1 more
wiley +1 more source
The current study has investigated the influence of a non-uniform magnetic field on heat transfer and entropy generation through the convection flow of ferrofluid filled inside the cavity in the presence of thermal radiation.
Babar Iftikhar +2 more
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The Velocity Slip Boundary Condition Effects on Non‐Newtonian Ferrofluid over a Stretching Sheet
In this work, radioactive heat transfer analysis in non‐Newtonian Ferrofluid over a stretchable sheet is considered. Furthermore, the effects of Arrhenius activation energy, magnetic dipole, velocity slip, and mass convective boundary condition are taken into account.
Hussan Zeb +6 more
wiley +1 more source
A magnetic fluid is composed of a base fluid and magnetic particles, where magnetic particles are carefully distraught in the base fluid. Here, we will assume that blood is the base fluid that exhibits electrical conductivity and polarization properties and Fe3O4 as magnetic particles.
Abdulaziz Alsenafi +2 more
wiley +1 more source
The present article summarized the effects of double magnetic dipole for chemically reactive viscoelastic fluid in the presence of two different ferromagnetic particles, namely, nickel zinc ferrite (NiZnFe2O4) and magnetite ferrite (Fe3O4). Due to double magnetic dipole, an external magnetic field is applied normal to the flow.
N. Kousar +5 more
wiley +1 more source
In this study, a numerical investigation of the effect of different magnetic fields on ferrofluid-fluid mixing processes in a two-dimensional microchannel is performed An improved version of smoothed particle hydrodynamics, SPH, by shifting particle ...
Mohsen Abdolahzadeh +3 more
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The document is presented to investigate momentum and thermal attributes of Maxwell liquid flow over a stretchable surface by inducting ferrite particles along with taking account of homogeneous‐heterogeneous reactions. Two types of ferrite particles, namely, nickel zinc ferrite (NiZnFe2O4) and magnetite ferrite (Fe3O4), are considered and non ...
W. Tahir +6 more
wiley +1 more source

