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The results showed that increasing windward area is an effective method to reduce resistance and improve purification performance.
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The face velocity of foam nickels was reduced by increasing skillfully windward area so that the problems of quite low removal efficiency and high pressure loss at high flow velocities were solved.
Part 1 of this study showed that strong winds can increase the windward intake flow rate by as much as 45%.
It is also noticed from the variation of wind pressure coefficients on side walls at section x x across the depth of models at 0° wind incidence angle that in case of square-plan building model-Sq-1 (side ratio = 1), suction on side faces increases from windward to leeward edges.
Increasing particle diameter moved the deposition zones towards the windward side of tubes.
In HTR scenario, Cm on windward and top surfaces were greatly affected, increasing along the HTR values.
These ice accumulations may be partly attributed to increased flow through the windward intake.
For W=10 m and by increasing H from 10 m to 80 m, the surface-averaged CHTC/(U0.8410) on the windward facade increases by about 20%.
Part 1 of this study demonstrated that wind will cause a dramatic increase in air flow through the windward intake, which may partially account for the increased ice formation at the windward intake.
The mean and fluctuating internal pressure coefficients are small in the nominally sealed building; and increase with increasing windward/leeward open-area ratio.
These results indicate that winds strongly influence the flow entering the tower, especially the flow through the windward intake which increased by as much as 45%.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com