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Infiltration: Sizing and modeling
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Revision as of 16:34, 29 May 2020
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→To calculate the required depth, where the area of the facility is constrained (3D drainage)
Line 98:
Line 98:
To calculate the time (''t'') to fully drain the facility assuming three-dimensional drainage:
To calculate the time (''t'') to fully drain the facility assuming three-dimensional drainage:
<math>t=\frac{nAr}{f'x}ln\left [ \frac{\left (d+ \frac{Ar}{x} \right )}{\left(\frac{Ar}{x}\right)}\right]</math>
<math>t=\frac{nAr}{f'x}ln\left [ \frac{\left (d+ \frac{Ar}{x} \right )}{\left(\frac{Ar}{x}\right)}\right]</math>
Where "ln" means natural logarithm of the term in square brackets
Where "ln" means natural logarithm of the term in square brackets
<br>
Adapted from CIRIA, The SUDS Manual C753 (2015).
[[category: modeling]]
[[category: modeling]]
[[category: infiltration]]
[[category: infiltration]]
Dean Young
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