Results 121 to 130 of about 11,023,822 (180)
Bioconvection driven flow of magnetized micropolar hybrid nanofluid with Ohmic heating and variable thermal conductivity. [PDF]
Saleem M +4 more
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Machine learning based prediction of Williamson-Casson fluid flow with Cattaneo-Christov heat transfer over a curved stretching sheet. [PDF]
Algehyne EA +5 more
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Electromagnetohydrodynamic flow and heat transfer of a dusty hybrid nanofluid over a rotating disk in a porous medium. [PDF]
Grace DS, Durgaprasad P.
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Artificial Life, 2016
New types of robots inspired by biological principles of assembly, locomotion, and behavior have been recently described. In this work we explored the concept of robots that are based on more fundamental physical phenomena, such as fluid dynamics, and their potential capabilities. We report a robot made entirely of non-Newtonian fluid, driven by shear
Guy Hachmon +6 more
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New types of robots inspired by biological principles of assembly, locomotion, and behavior have been recently described. In this work we explored the concept of robots that are based on more fundamental physical phenomena, such as fluid dynamics, and their potential capabilities. We report a robot made entirely of non-Newtonian fluid, driven by shear
Guy Hachmon +6 more
openaire +3 more sources
ON THE NON-NEWTONIAN INCOMPRESSIBLE FLUIDS
Mathematical Models and Methods in Applied Sciences, 1993The Navier-Stokes equations can be included as a special case into the class of non-Newtonian incompressible fluids with the nonlinear stress tensor τ=τ(e), the components of which satisfy the p-growth condition. Measure-valued solutions already exist for p>2n/(n+2).
Málek, Josef +2 more
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Modelling of non-Newtonian fluids
Mathematics and Computers in Simulation, 2007zbMATH Open Web Interface contents unavailable due to conflicting licenses.
Jirí Kren, Ludek Hyncík
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Regularity of Non-Newtonian Fluids
Journal of Mathematical Fluid Mechanics, 2013zbMATH Open Web Interface contents unavailable due to conflicting licenses.
Bae, Hyeong-Ohk, Jin, Bum Ja
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Turbulence in Non-Newtonian Fluids
The Physics of Fluids, 1964The dissipation of turbulent energy is examined in incompressible isotropic fluids in which deformation depends only on current values of strain rate (Reiner-Rivlin fluids). For isotropic, homogeneous, decaying turbulence, two special cases are examined exactly—the Gaussian process and the inertial subrange.
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2021
In this chapter we concentrate on a large class of problems arising from the dynamics of incompressible non-Newtonian fluids with nonstandard rheology. By non-Newtonian fluids we mean here fluids which do not satisfy Newton’s law of viscosity, i.e. viscosity is constant and independent of stress.
Iwona Chlebicka +3 more
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In this chapter we concentrate on a large class of problems arising from the dynamics of incompressible non-Newtonian fluids with nonstandard rheology. By non-Newtonian fluids we mean here fluids which do not satisfy Newton’s law of viscosity, i.e. viscosity is constant and independent of stress.
Iwona Chlebicka +3 more
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Bubble Shape in Non-Newtonian Fluids
Journal of Applied Mechanics, 2002The study of the behavior of bubbles in complex fluids is of industrial as well as of academic importance. Bubble velocity-volume relations, bubble shapes, as well as viscous, elastic, and surfactant effects play a role in bubble dynamics. In this note we extend the analysis of Richardson to a non-Newtonian fluid.
De Kee, D. +2 more
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