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As depth increases, the wall pressure increases for all cases.
Though this could give the impression of an unfinished project, the design certainly increases the wall space.
Increasing the voltage during anodization increases the wall thickness and the band gap shifts toward visible region with an improvement of the photo-generated current density.
It is shown that high particle mass loading systematically increases the wall fluxes of momentum (shear stress), heat and particle mass, much like the effects associated with "massive suction" in the single-phase LBL theory.
As the liquid's mass flux increases, the wall temperature decreases and vice versa.
As the jet Reynolds number increases, the wall temperature decreases as seen in Figure 6.
Similar(52)
When the surrounding interstitial fluid pressure increases, the walls of the lymphatics are stretched and open to passage of cells or fluids.
To increase the wall admittance will reduce this interference effect.
Increasing the wall thermal conductivity and mass flows can increase system stability.
It was shown that the addition of a thermal absorbent surface can increase the wall temperature.
However, this is done by increasing the wall thickness of the bottom course or strake.
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