Results 111 to 120 of about 6,301 (210)
The present examination focuses on the Falkner-Skan flow of micropolar hybridized nanofluid via a wedge surface. The proposed study examines thermal radiative fluxing and heat dissipation in hybridized nanoparticle aqueous solutions.
MD. Shamshuddin +5 more
doaj +1 more source
Numerical Analysis and Comparison of Three Iterative Methods Based on Finite Element for the 2D/3D Stationary Micropolar Fluid Equations. [PDF]
Xing X, Liu D.
europepmc +1 more source
Modelling and numerical computation for flow of micropolar fluid towards an exponential curved surface: a Keller box method. [PDF]
Shi QH +5 more
europepmc +1 more source
Flows of Linear Polymer Solutions and Other Suspensions of Rod-like Particles: Anisotropic Micropolar-Fluid Theory Approach. [PDF]
Shelukhin V.
europepmc +1 more source
Impact of Cattaneo-Christov heat flux model on MHD hybrid nano-micropolar fluid flow and heat transfer with viscous and joule dissipation effects. [PDF]
Tassaddiq A.
europepmc +1 more source
Exponential convergence of the stochastic micropolar and magneto-micropolar fluid systems
Summary: We study the micropolar and magneto-micropolar fluid systems with random forces in two-dimensional case. The additional terms on the equations that govern the time evolution of the velocity and micro-rotational velocity vector fields are more singular than many other equations that have been previously studied, for example Bénard or magnetic ...
openaire +2 more sources
New fundamental solutions for micropolar fluids have been obtained in explicit form by considering Stokes and Oseen flows due to a point force and a point couple. Fundamental solutions that do not exist in Newtonian flows have emerged in this paper owning to the existence of microrotational velocity field in micropolar fluids.
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This study is significant for advancing the design of porous heat-transfer systems such as geothermal exchangers, catalytic reactors, and polymer processing units by analyzing how multiple physical mechanisms jointly influence micropolar fluid behavior ...
S. Karthik +4 more
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Basic Equations of Micropolar Magnetic Fluids
A complete set of the basic equations for magnetic fluids with internal rotation is proposed in this paper. The basic equations and constitutive equations are derived by the thermodynamical method in which free energy and dissipation function are used on basis of the conservation laws.
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