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Based on boundary layer assumptions for the gas phase, a one-dimensional "moving boundary" model for the deposition surface is formulated.
Skin friction dominates at high relative submergence (Y ≫ D) and models for such conditions are based on boundary layer theory and the results of its application to engineering studies of pipe flow.
The proposed scheme is applied to a number of scenarios for the Falkner-Skan system based on boundary layer flow over a moving wall with mass transfer in the presence of a free stream with power-law velocity distributions.
Based on boundary layer renewal, an approximate analysis was carried out for the heat transfer from a discrete heat source on a solid wall to the liquid near an oscillating air/liquid interface and an interface undergoing wave movement.
Based on boundary layer characteristics predicted using the large eddy simulations, new model for point wall pressure spectra is proposed to account for the effect of favorable pressure gradient over the blunt flat plate on the wall pressure spectra.
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The procedure of calculation of the viscous compressible flow in vaneless diffusers (VLD) with parallel walls, based on boundary-layer theory is presented in the paper.
For higher Archimedes numbers, i.e. for particles protruding into the buffer layer and into the turbulent near wall layer, criteria based on the boundary layer flow turn out not to be suitable.
The algorithm is based on boundary region identification (and not only maximum intensity), and allows automatic resolution of very close layers of different reflectivity.
The work presented by Ravikishore Kommajosyula and Emilio Baglietto on "A cavity-size-independent model for bubble departure frequency based on thermal boundary layer energy limit" was given the best poster award in the 10th International Conference on Boiling and Condensation Heat Transfer, held during 11 15 March 2018 in Nagasaki.
Two approaches are employed, one empirical and the second based on internal boundary layer theory.
In addition, the mechanisms of different drag reductions based on the boundary layer control and the potential applications in fluid engineering are discussed.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com