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Hydraulic efficiency and safety of branch xylem increases with height in Sequoia sempervirens (D. Don) crowns.
The classical design suffers of a very low hydraulic efficiency.
The latter gave slightly higher hydraulic efficiency and BOD5 removal.
Gleason, S. M. et al. Weak tradeoff between xylem safety and xylem-specific hydraulic efficiency across the world's woody plant species.
Previous studies have indicated that hydraulic efficiency influences treatment performance and that shallow-water FWSs always yield greater hydraulic efficiency than do deep-water FWSs.
A very simple curved blade profile may enhance the hydraulic efficiency up to 46%.
SOs were found to have minor and inconsistent effects in improving hydraulic efficiency.
Finally, the concept of hydraulic efficiency is discussed in the light of these results.
Mathematical equations for the developed pressure, generated by Lorentz electromagnetic force and hydraulic efficiency were derived.
For the HSSF-CW, the strongest influence on the hydraulic efficiency was the length.
Furthermore, increasing water depth and decreasing aspect ratio resulted in lower hydraulic efficiency.
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