Finite element solution of flow and heat transfer of a micropolar fluid over a stretching sheet
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Publication:908758
DOI10.1016/0020-7225(89)90065-7zbMath0693.76010OpenAlexW2061927199MaRDI QIDQ908758
A. V. S. Balaji, R. S. Agarwal, Rama Bhargava
Publication date: 1989
Published in: International Journal of Engineering Science (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/0020-7225(89)90065-7
finite element methodheat transferstretching sheetsteady, incompressible micropolar fluid flowvariational Ritz model
Related Items (8)
Finite element solution of nonsteady three-dimensional micropolar fluid flow at a stagnation point ⋮ Thermal radiation effects on magnetohydrodynamic mixed convection flow of a micropolar fluid past a continuously moving semi-infinite plate for high temperature differences ⋮ Thermal boundary layer flow over a stretching sheet in a micropolar fluid with radiation effect ⋮ Numerical solution of the momentum and heat transfer equations for a hydromagnetic flow due to a stretching sheet of a non-uniform property micropolar liquid ⋮ Effect of viscous dissipation and heat source on unsteady boundary layer flow and heat transfer past a stretching surface embedded in a porous medium using element free Galerkin method ⋮ Finite element solution of mixed convection micropolar flow driven by a porous stretching sheet ⋮ Finite element and Chebyshev finite difference methods for micropolar flow past a stretching surface with heat and mass transfer ⋮ Generalized crane flows of micropolar fluids
Cites Work
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- Flow and heat transfer of a micropolar fluid past a continuously moving porous plate
- On the numerical solution of differential equations by the finite element method. I: An introduction to the finite element method (The Ritz models)
- Self-similar solution of incompressible micropolar boundary layer flow over a semi-infinite plate
- Micropolar boundary layer flow at a stagnation point on a moving wall
- Simple microfluids
- Theory of thermomicrofluids
- Hydromagnetic flow and heat transfer over a stretching sheet
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