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* Step 4: Calculate the surface (i.e footprint) area of the practice (A<sub>p</sub>) needed to capture runoff produced from the catchment during the design storm event:<br>
 
* Step 4: Calculate the surface (i.e footprint) area of the practice (A<sub>p</sub>) needed to capture runoff produced from the catchment during the design storm event:<br>
 
For practices where flow is delivered to the filter media bed:
 
For practices where flow is delivered to the filter media bed:
<math>A_{p}=i\times D\times A_{i}/((d_{a} + (f_{m, min} \times D))
+
<math>A_{p}=i\times D\times A_{i}/((d_{a} + (f_{m, min} \times D))</math>
 
{{Plainlist|1=Where:
 
{{Plainlist|1=Where:
 
*i = Design storm intensity (mm/h)
 
*i = Design storm intensity (mm/h)
 
*D = Design storm duration (h)
 
*D = Design storm duration (h)
 
*A<sub>i</sub> = Catchment impervious area (m<sup>2</sup>)
 
*A<sub>i</sub> = Catchment impervious area (m<sup>2</sup>)
*f<sub>m, min</sub> = minimum infiltration rate of the filter media (mm/h)}}</math>
+
*f<sub>m, min</sub> = minimum infiltration rate of the filter media (mm/h)}}
 
  −
 
      
==Determine the active storage depth of the practice==
 
==Determine the active storage depth of the practice==

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