Heat transfer enhancement in the boundary layer flow of hybrid nanofluids due to variable viscosity and natural convection. [PDF]
Manjunatha S +4 more
europepmc +1 more source
Unsteady stagnation-point heat transfer during passage of a concentrated vortex [PDF]
The unsteady boundary layer due to a single rectilinear vortex filament approaching a 2-D stagnation point is investigated. Assuming the vortex remains far from the surface, incompressible potential flow theory is used to determine the time dependent ...
Rae, William J., Rigby, David L.
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The wettability of aluminum droplets (Al) on different copper substrates (Cu), where liquid Al spreads on solid Cu surfaces to form a liquid–solid interface, is studied numerically and experimentally. The experimental and numerical results show good agreement in the fast‐spreading regime.
Shan Lyu +8 more
wiley +1 more source
Large-Eddy Simulation of Thermally Stratified Atmospheric Boundary-Layer Flow Using a Minimum Dissipation Model. [PDF]
Abkar M, Moin P.
europepmc +1 more source
Visualization of boundary-layer development on turbomachine blades with liquid crystals [PDF]
This report documents a study of the use of liquid crystals to visualize boundary layer development on a turbomachine blade. A turbine blade model in a linear cascade of blades was used for the tests involved. Details of the boundary layer development on
Okiishi, Theodore H., Vanzante, Dale E.
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EDX elemental map of the pre‐oxidized MgO–steel cermet anode cross section after electrolysis. The development of inert anodes for aluminum electrolysis remains challenging due to the high corrosivity of cryolite‐based melts at 950°C–1000°C. This study investigates the corrosion and process behavior of a carbon‐free MgO–steel cermet anode derived from ...
Alexander Adamczyk +7 more
wiley +1 more source
A novel investigation of a micropolar fluid characterized by nonlinear constitutive diffusion model in boundary layer flow and heat transfer. [PDF]
Sui J +4 more
europepmc +1 more source
Influence of Boundary Layer and Wake on Free Surface Flow around a Ship Model
Mitsuhisa Ikehata, Yusuke Tahara
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Discussion: “Some Preliminary Results of Visual Studies of the Flow Model of the Wall Layers of the Turbulent Boundary Layer” (Kline, S. J., and Runstadler, P. W., 1959, ASME J. Appl. Mech., 26, pp. 166–170) [PDF]
James A. Miller
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