Difference between revisions of "Bioretention: Partial infiltration"
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==Overview== | ==Overview== | ||
Over soils with slow infiltration rates, it is advantageous to drain a portion of the stored water prior to any upcoming storm. This popular design choice can optimize annual water balance, mitigate peak flow rates and by ensuring water flow through, can reduce the accumulation of sodium and chlorine ions from winter salting. | Over soils with slow infiltration rates, it is advantageous to drain a portion of the stored water prior to any upcoming storm. This popular design choice can optimize annual water balance, mitigate peak flow rates and by ensuring water flow through, can reduce the accumulation of sodium and chlorine ions from winter salting. | ||
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==Materials== | ==Materials== | ||
*[[Underdrain]] | *[[Underdrain]] | ||
*[[Biomedia]] | *[[Biomedia]] | ||
− | *[[Erosion control blankets|Erosion control]] | + | *[[Erosion control blankets|Erosion control]] |
− | *[[ | + | *[[Mulch]] |
*[[Bioretention: Planting plans|Planting considerations]] and [[Bioretention: Plant list| Recommended species]] | *[[Bioretention: Planting plans|Planting considerations]] and [[Bioretention: Plant list| Recommended species]] | ||
Line 17: | Line 15: | ||
{{:Bioretention:_Partial_infiltration_volume}} | {{:Bioretention:_Partial_infiltration_volume}} | ||
− | [[Bioretention cells| | + | {{Clickable button|[[Bioretention cells|Back to Bioretention]]}} |
− | [[category:Infiltration | + | [[category: Infiltration]] |
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Revision as of 19:57, 17 January 2019
Overview[edit]
Over soils with slow infiltration rates, it is advantageous to drain a portion of the stored water prior to any upcoming storm. This popular design choice can optimize annual water balance, mitigate peak flow rates and by ensuring water flow through, can reduce the accumulation of sodium and chlorine ions from winter salting.
Materials[edit]
Research[edit]
Bioretention: Partial infiltration volume