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Correction factors are derived for flow in a thin rectangular channel to account for viscous drag at the edges, an effect not considered in infinite parallel plate models.
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The equations of motion governing the two-dimensional flow of pedestrians are derived for flows of both single and multiple pedestrian types.
The appropriate split form of (energy preserving) central schemes is derived for flows of smoothly varying specific heats ratio, such that spurious pressure oscillations are prevented.
Analytical expressions are derived for the flow velocity and ionic current for the electroosmotic flow (EOF) in a charge-regulated circular channel, focusing on the effect of types of ions and their concentrations.
Laser Doppler velocimetry (LDV) determinations of peak velocity gradients in the oxidizer flow of the counterflow flames were found to be linearly correlated with the expression for global strain rate derived for plug flow boundary conditions.
All of these methods have been derived for a flow emerging from a free spill edge, where there is no wall vertically extending above the edge.
While analytical expressions have been derived for homogeneous flow fields, incomplete characterization of the hydraulic conductivity field causes uncertainty in predicting plume lengths in heterogeneous domains.
An improved look-up table for film-boiling heat-transfer coefficients has been derived for steam water flow inside vertical tubes.
Further, scaling relationships between an average particle size and the process conditions are derived for three flow configurations, which are useful for design and optimization of the hydrothermal process for nanoparticle production.
In this work, a two-dimensional model for fiber deformation subject to out-of-plane movement restrictions is derived for creeping flow conditions by analogy with non-Brownian suspensions of particles with confining potentials.
To induce fluid flow, laminar inlet and ambient pressure outlet conditions were applied to the respective fluid domains and Darcy's law derived for creeping flows was applied to the porous media domain.
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CEO of Professional Science Editing for Scientists @ prosciediting.com