Transient analysis of natural convection along a vertical wavy surface in micropolar fluids
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Publication:1321939
DOI10.1016/0020-7225(94)90146-5zbMath0795.76073OpenAlexW2040517758MaRDI QIDQ1321939
Cheng Ping Chiu, Huann-Ming Chou
Publication date: 3 May 1994
Published in: International Journal of Engineering Science (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/0020-7225(94)90146-5
Related Items (8)
Unsteady mixed convective heat transfer of two immiscible fluids confined between long vertical wavy wall and parallel flat wall ⋮ Non-Darcy natural convection heat and mass transfer from a vertical wavy surface in saturated porous media ⋮ Transient analysis of heat transfer by natural convection along a vertical wavy surface ⋮ Free convection from cylinders of elliptic cross-section in micropolar fluids ⋮ Impact of complex wavy surface on natural convection flow in micropolar fluid ⋮ The effects of variable properties on MHD unsteady natural convection heat and mass transfer over a vertical wavy surface ⋮ Nonsimilar solutions for double diffusive convection near a frustum of a wavy cone in porous media ⋮ Mixed convection of micropolar fluids along a vertical wavy surface
Cites Work
- On the self-excited whirl orbits of a journal in a sleeve bearing lubricated with micropolar fluids
- Mixed convection in micropolar fluid flow over a horizontal plate with surface mass transfer
- Combined forced and free convection in micropolar boundary layer flow on a vertical flat plate
- Temperature field in non-Newtonian flow over a stretching plate with variable heat flux
- Flow and heat transfer in a micropolar fluid past a flat plate with suction and heat sources
- Similarity solutions for laminar free convection flow of a thermomicropolar fluid past a non-isothermal vertical flat plate
- Self-similar solution of incompressible micropolar boundary layer flow over a semi-infinite plate
- Heat transfer in boundary layer flow of a micropolar fluid past a curved surface with suction and injection
- Application of microcontinuum fluid mechanics
- Theory of thermomicrofluids
- Microcontinuum fluid mechanics - a review
- Numerical integration of partial differential equations using cubic splines
- Higher-Order Numerical Solutions Using Cubic Splines
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