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− | <font size=3>'''Infiltration | + | <font size=3>'''Infiltration material specifications'''</font size><br> |
− | Link to this [[Infiltration media and material specifications|table]] | + | Link to this [[Infiltration media and material specifications|table]]. To open this table in Excel format, [http://stormwater.pca.state.mn.us/index.php/File:Materials_specifications_all_infiltration.xlsx link here]. |
<table class="sortable"> | <table class="sortable"> | ||
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<td>[[Infiltration design guideline - Observation well|Observation well]]</td> | <td>[[Infiltration design guideline - Observation well|Observation well]]</td> | ||
<td colspan=6> | <td colspan=6> | ||
− | *Vertical 4- to 6-inch Schedule 40 PVC perforated pipe according to [ | + | *Vertical 4- to 6-inch Schedule 40 PVC perforated pipe according to [https://www.dot.state.mn.us/pre-letting/spec/ MNDOT Manual Section 3248] with a lockable cap and anchor plate within gravel portion of bed |
*Install one per 50 ft. of length of infiltration practice | *Install one per 50 ft. of length of infiltration practice | ||
− | *Cap should be flush with the surface of the infiltration practice</td> | + | *Cap should be flush with or above the surface of the infiltration practice</td> |
<td> | <td> | ||
− | *Vertical 4- to 6-inch Schedule 40 PVC perforated pipe according to [ | + | *Vertical 4- to 6-inch Schedule 40 PVC perforated pipe according to [https://www.dot.state.mn.us/pre-letting/spec/ MNDOT Manual Section 3248] with a lockable cap and anchor plate within gravel portion of bed |
*Install one per 50 ft. of length of infiltration practice | *Install one per 50 ft. of length of infiltration practice | ||
*Install at downstream end of all permeable pavement systems >10,000 ft<sup>2</sup> contributing drainage area</td> | *Install at downstream end of all permeable pavement systems >10,000 ft<sup>2</sup> contributing drainage area</td> | ||
<td> | <td> | ||
− | *Vertical 4- to 6-inch Schedule 40 PVC perforated pipe according to [ | + | *Vertical 4- to 6-inch Schedule 40 PVC perforated pipe according to [https://www.dot.state.mn.us/pre-letting/spec/ MNDOT Manual Section 3248] with a lockable cap and anchor plate within gravel portion of bed |
*Install one per 50 ft. of length of infiltration practice | *Install one per 50 ft. of length of infiltration practice | ||
− | *Cap should be flush with the surface of the infiltration practice</td> | + | *Cap should be flush with or above the surface of the infiltration practice</td> |
</tr> | </tr> | ||
<tr> | <tr> | ||
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<td colspan=3> | <td colspan=3> | ||
*All infiltration beds should be designed with overflow spillway for extreme storm events | *All infiltration beds should be designed with overflow spillway for extreme storm events | ||
− | *Properly designed vegetated filters are required from the overflow of all infiltration systems | + | *Properly designed vegetated filters are required from the overflow of all infiltration systems |
− | + | *[http://stormwater.pca.state.mn.us/images/0/01/Infiltration_Basin_INFILTRATION_BASIN_PLAN_%26_PROFILE_%281%29.pdf See detail]</td> | |
− | |||
<td>NA</td> | <td>NA</td> | ||
+ | <td>A surcharge pipe should be constructed as an emergency overflow device for Dry Wells which receive runoff directly from a roof leader. [http://www.bfenvironmental.com/pdfs/Frenchdrains.pdf]</td> | ||
<td>NA</td> | <td>NA</td> | ||
+ | <td>See [[Design criteria for permeable pavement]]</td> | ||
<td>Tree box filters should be designed with an emergency overflow pipe</td> | <td>Tree box filters should be designed with an emergency overflow pipe</td> | ||
</tr> | </tr> | ||
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<td>Buffer vegetation</td> | <td>Buffer vegetation</td> | ||
<td colspan=2> | <td colspan=2> | ||
− | *Keep adjacent vegetation from forming overhead canopy above infiltration practices. This keeps | + | *Keep adjacent vegetation from forming an overhead canopy above infiltration practices. This keeps leaf litter, fruits, and other vegetative material from clogging stone. |
*Trees may be planted along side slopes but must be 15 ft away from pipes and 25 ft away from risers</td> | *Trees may be planted along side slopes but must be 15 ft away from pipes and 25 ft away from risers</td> | ||
<td> | <td> | ||
*Grass strip or other vegetated buffer at least 20 feet wide should be maintained around trenches accepting surface runoff as sheet flow | *Grass strip or other vegetated buffer at least 20 feet wide should be maintained around trenches accepting surface runoff as sheet flow | ||
*Slope of filter strip should be approximately 1% along entire length and 0% across width</td> | *Slope of filter strip should be approximately 1% along entire length and 0% across width</td> | ||
− | <td colspan=2>Keep adjacent vegetation from forming overhead canopy above infiltration practices. This keeps | + | <td colspan=2>Keep adjacent vegetation from forming an overhead canopy above infiltration practices. This keeps leaf litter, fruits, and other vegetative material from clogging stone.</td> |
<td> | <td> | ||
*Planted with turf grass, tall meadow grasses, decorative herbaceous cover, or trees | *Planted with turf grass, tall meadow grasses, decorative herbaceous cover, or trees | ||
− | *See [ | + | *See [https://www.dot.state.mn.us/pre-letting/spec/ MNDOT Standards and Specs Section 3876 for Seed Requirements] for Dry Swales |
*If receiving runoff from an impervious area, construct an adjacent grass filter strip, gravel diaphragm, or gravel flow spreader to provide pretreatment</td> | *If receiving runoff from an impervious area, construct an adjacent grass filter strip, gravel diaphragm, or gravel flow spreader to provide pretreatment</td> | ||
<td>NA</td> | <td>NA</td> | ||
<td> | <td> | ||
*Although deep rooted, native species are preferred, noninvasive cultivars may be used or combined with native species to achieve desired landscape aesthetic qualities | *Although deep rooted, native species are preferred, noninvasive cultivars may be used or combined with native species to achieve desired landscape aesthetic qualities | ||
− | *See [ | + | *See [https://www.dot.state.mn.us/pre-letting/spec/ MNDOT Standards and Specifications for Native Species] |
*Energy dissipator Stones placed over the mulch layer may be used as a pretreatment to reduce velocity of inflow</td> | *Energy dissipator Stones placed over the mulch layer may be used as a pretreatment to reduce velocity of inflow</td> | ||
</tr> | </tr> | ||
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**Wet meadow species for lower portions | **Wet meadow species for lower portions | ||
*Mulch (2-3 inch layer) must be free of weeds and consist of aged, double-shredded hardwood bark mulch or shredded leaf mulch | *Mulch (2-3 inch layer) must be free of weeds and consist of aged, double-shredded hardwood bark mulch or shredded leaf mulch | ||
− | *Sand, if used, must comply with [ | + | *Sand, if used, must comply with [https://www.dot.state.mn.us/pre-letting/spec/ MNDOT Sand Cover in Section 3149 K] |
*Deep-rooted, native species for vegetative cover | *Deep-rooted, native species for vegetative cover | ||
*If sod is used, grow over permeable soils</td> | *If sod is used, grow over permeable soils</td> | ||
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<td> | <td> | ||
*3" layer of mulch on surface to enhance plant survival | *3" layer of mulch on surface to enhance plant survival | ||
− | *See [ | + | *See [https://www.dot.state.mn.us/pre-letting/spec/ MNDOT Standards and Specs Section 3882] for Mulch Requirements |
*Erosion control matting can be used in lieu of mulch where flow velocities may wash mulch away</td> | *Erosion control matting can be used in lieu of mulch where flow velocities may wash mulch away</td> | ||
<td> | <td> | ||
*Porous Asphalt Course: 3 to 7 inch thick layer with 15% to 20% void content | *Porous Asphalt Course: 3 to 7 inch thick layer with 15% to 20% void content | ||
− | *Pervious Concrete Course: | + | *Pervious Concrete Course: 5 to 8 inch thick layer with 15% to 25% void content<sup>1</sup> |
*Plastic Grid Pavers: depends on fill material | *Plastic Grid Pavers: depends on fill material | ||
*Concrete Grid Pavers: 3.5 inch thick layer with 20% to 50% void content | *Concrete Grid Pavers: 3.5 inch thick layer with 20% to 50% void content | ||
− | *Concrete Interlocking Pavers: 3 | + | *Concrete Interlocking Pavers: 3 inch thick layer with 5% to 15% void content<sup>1</sup> |
*Min Thickness (NAPA, 2008) | *Min Thickness (NAPA, 2008) | ||
**Parking: 2.5 in | **Parking: 2.5 in | ||
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<td> | <td> | ||
*3" layer of mulch on surface to enhance plant survival | *3" layer of mulch on surface to enhance plant survival | ||
− | *See [ | + | *See [https://www.dot.state.mn.us/pre-letting/spec/ MNDOT Standards and Specs Section 3882] for Mulch Requirements</td> |
</tr> | </tr> | ||
<tr> | <tr> | ||
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<td>NA</td> | <td>NA</td> | ||
<td>NA</td> | <td>NA</td> | ||
− | <td>Choker Layer: A 2 to 8 inch bedding coarse of Medium Filter Aggregate ([ | + | <td>Choker Layer: A 2 to 8 inch bedding coarse of Medium Filter Aggregate ([https://www.dot.state.mn.us/pre-letting/spec/ MNDOT Section 3149 J.1]) is usually placed over the top of the base material to help stabilize the irregular surface</td> |
<td>NA</td> | <td>NA</td> | ||
</tr> | </tr> | ||
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<td> | <td> | ||
*1 to 3-foot thick layer of double-washed, uniform (uniformity coefficient of 2 or smaller with a void ratio of 0.40) aggregate between 1.5 and 3.0 inch diameter | *1 to 3-foot thick layer of double-washed, uniform (uniformity coefficient of 2 or smaller with a void ratio of 0.40) aggregate between 1.5 and 3.0 inch diameter | ||
− | *[ | + | *[https://www.dot.state.mn.us/pre-letting/spec/ MNDOT Coarse Aggregate Bedding (Section 3149 G.2)] ranging 1-2 inch in gradation</td> |
<td>Bioinfiltration engineered soil mix</td> | <td>Bioinfiltration engineered soil mix</td> | ||
<td colspan=2> | <td colspan=2> | ||
*1 to 4-foot thick layer of double-washed, uniform (uniformity coefficient of 2 or smaller with a void ratio of 0.40) aggregate between 1.5 and 3.0 inch diameter | *1 to 4-foot thick layer of double-washed, uniform (uniformity coefficient of 2 or smaller with a void ratio of 0.40) aggregate between 1.5 and 3.0 inch diameter | ||
− | *[ | + | *[https://www.dot.state.mn.us/pre-letting/spec/ MNDOT Coarse Aggregate Bedding (Section 3149 G.2)] ranging 1-2 inch in gradation</td> |
<td> | <td> | ||
*Double-washed, uniform (uniformity coefficient of 2 or smaller with a void ratio of 0.40) aggregate between 1.5 and 3.0 inch diameter | *Double-washed, uniform (uniformity coefficient of 2 or smaller with a void ratio of 0.40) aggregate between 1.5 and 3.0 inch diameter | ||
− | *[ | + | *[https://www.dot.state.mn.us/pre-letting/spec/ MNDOT Coarse Aggregate Bedding (Section 3149 G.2)] ranging 1-2 inch in gradation</td> |
<td>20-30 inch layer of permeable manufactured soil mixture meeting the bioinfiltration soil mix</td> | <td>20-30 inch layer of permeable manufactured soil mixture meeting the bioinfiltration soil mix</td> | ||
<td> | <td> | ||
*Reservoir Layer: 1 to 4-foot deep bed of double-washed, uniform (uniformity coefficient of 2 or smaller with a void ratio of 0.40) aggregate between 1.5 and 3.0 inch diameter | *Reservoir Layer: 1 to 4-foot deep bed of double-washed, uniform (uniformity coefficient of 2 or smaller with a void ratio of 0.40) aggregate between 1.5 and 3.0 inch diameter | ||
− | *[ | + | *[https://www.dot.state.mn.us/pre-letting/spec/ MNDOT Coarse Aggregate Bedding (Section 3149 G.2)] ranging 1-2 inch in gradation</td> |
<td>3' of bioinfiltration Soil Media</td> | <td>3' of bioinfiltration Soil Media</td> | ||
</tr> | </tr> | ||
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*Top of geotextile should be 6-12 inches below upper surface of drainage media with 12" overlap of fabric seams | *Top of geotextile should be 6-12 inches below upper surface of drainage media with 12" overlap of fabric seams | ||
*Fabric should be placed between side walls and between stone and gravel layers but not on the basin bottom | *Fabric should be placed between side walls and between stone and gravel layers but not on the basin bottom | ||
− | *Geotextile must meet [https://www. | + | *Geotextile must meet [https://www.dot.state.mn.us/pre-letting/spec/ MNDOT Type I Non-woven geotextile] |
*Examples: Mirafi 140N, Amoco 4547, and Geotex 451.</td> | *Examples: Mirafi 140N, Amoco 4547, and Geotex 451.</td> | ||
<td> | <td> | ||
*Geotextile or a pea gravel filter separating stone and soil media | *Geotextile or a pea gravel filter separating stone and soil media | ||
− | *Geotextile must meet [https://www. | + | *Geotextile must meet [https://www.dot.state.mn.us/pre-letting/spec/ MNDOT Type I non-woven geotextile] |
*Examples: Mirafi 140N, Amoco 4547, and Geotex 451</td> | *Examples: Mirafi 140N, Amoco 4547, and Geotex 451</td> | ||
<td> | <td> | ||
*Surround fill on sides with filter fabric with 12" overlap of fabric seams. A separate piece should be used for the top layer to act as a failure plane. Fabric should be placed between side walls and between stone and gravel layers but not on the trench bottom. | *Surround fill on sides with filter fabric with 12" overlap of fabric seams. A separate piece should be used for the top layer to act as a failure plane. Fabric should be placed between side walls and between stone and gravel layers but not on the trench bottom. | ||
− | *Geotextile must meet [https://www. | + | *Geotextile must meet [https://www.dot.state.mn.us/pre-letting/spec/ MNDOT Type I non-woven geotextile] |
*Examples: Mirafi 140N, Amoco 4547, and Geotex 451</td> | *Examples: Mirafi 140N, Amoco 4547, and Geotex 451</td> | ||
<td> | <td> | ||
*Surround fill on sides with filter fabric with 12" overlap of fabric seams | *Surround fill on sides with filter fabric with 12" overlap of fabric seams | ||
− | *Geotextile must meet [https://www. | + | *Geotextile must meet [https://www.dot.state.mn.us/pre-letting/spec/ MNDOT Type I non-woven geotextile] |
*Examples: Mirafi 140N, Amoco 4547, and Geotex 451</td> | *Examples: Mirafi 140N, Amoco 4547, and Geotex 451</td> | ||
<td> | <td> | ||
*Geotextile on trench sides and top keyed into drywell | *Geotextile on trench sides and top keyed into drywell | ||
− | *Geotextile must meet [https://www. | + | *Geotextile must meet [https://www.dot.state.mn.us/pre-letting/spec/ MNDOT Type I non-woven geotextile] |
*Examples: Mirafi 140N, Amoco 4547, and Geotex 451</td> | *Examples: Mirafi 140N, Amoco 4547, and Geotex 451</td> | ||
<td> | <td> | ||
*A pea gravel choking layer (3 to 4 inches thick) should be placed below the filter media and above the bottom aggregate | *A pea gravel choking layer (3 to 4 inches thick) should be placed below the filter media and above the bottom aggregate | ||
− | *If a geotextile is used in lieu of the pea gravel layer, it must meet [https://www. | + | *If a geotextile is used in lieu of the pea gravel layer, it must meet [https://www.dot.state.mn.us/pre-letting/spec/ MNDOT Type I non-woven geotextile] |
*Examples: Mirafi 140N, Amoco 4547, and Geotex 451</td> | *Examples: Mirafi 140N, Amoco 4547, and Geotex 451</td> | ||
<td> | <td> | ||
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**8 inch layer of sand or filter fabric (Fine Aggregate) | **8 inch layer of sand or filter fabric (Fine Aggregate) | ||
**3" thick of 3/8" pea gravel | **3" thick of 3/8" pea gravel | ||
− | **[https://www. | + | **[https://www.dot.state.mn.us/pre-letting/spec/ MNDOT Type I non-woven geotextile] |
*Examples: Mirafi 140N, Amoco 4547, and Geotex 451 (K) | *Examples: Mirafi 140N, Amoco 4547, and Geotex 451 (K) | ||
*Geotextile should be placed on filter bed sides between filter media and in-situ soils</td> | *Geotextile should be placed on filter bed sides between filter media and in-situ soils</td> | ||
<td> | <td> | ||
*Geotextile lining engineered media on sides | *Geotextile lining engineered media on sides | ||
− | *[https://www. | + | *[https://www.dot.state.mn.us/pre-letting/spec/ Geotextile must meet MNDOT Type I non-woven geotextile] |
*Examples: Mirafi 140N, Amoco 4547, and Geotex 451.</td> | *Examples: Mirafi 140N, Amoco 4547, and Geotex 451.</td> | ||
</tr> | </tr> | ||
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**6 to 8 inch clean sand (1-2% fines or less) | **6 to 8 inch clean sand (1-2% fines or less) | ||
**3/8" pea gravel | **3/8" pea gravel | ||
− | **6-12" layer of [ | + | **6-12" layer of [https://www.dot.state.mn.us/pre-letting/spec/ MNDOT Fine Filter Aggregate (Section 3149 J.2)] |
**12" of gravel or sand (good for cold climates)</td> | **12" of gravel or sand (good for cold climates)</td> | ||
<td> | <td> | ||
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**Uniformly graded, crushed, clean-washed stone. (less than 0.5% wash loss, by mass, per AASHTO T-11 wash loss test | **Uniformly graded, crushed, clean-washed stone. (less than 0.5% wash loss, by mass, per AASHTO T-11 wash loss test | ||
**Grass turf that can be inundated for +72 hrs | **Grass turf that can be inundated for +72 hrs | ||
− | **[ | + | **[https://www.dot.state.mn.us/pre-letting/spec/ MNDOT Coarse Aggregate Bedding (Section 3149 G.2)] |
**Coarse organic material (composted mulch or erosion control mix) tilled into soil, soaked and allowed to dry</td> | **Coarse organic material (composted mulch or erosion control mix) tilled into soil, soaked and allowed to dry</td> | ||
<td colspan=3> | <td colspan=3> | ||
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**6 to 8 inch clean sand (1-2% fines or less) | **6 to 8 inch clean sand (1-2% fines or less) | ||
**3/8" pea gravel | **3/8" pea gravel | ||
− | **6-12" layer of [ | + | **6-12" layer of [https://www.dot.state.mn.us/pre-letting/spec/ MNDOT Fine Filter Aggregate (Section 3149 J.2)] |
**12" of gravel or sand (good for cold climates)</td> | **12" of gravel or sand (good for cold climates)</td> | ||
<td> | <td> | ||
*Double-washed, uniform (uniformity coefficient of 2 or smaller with a void ratio of 0.40) aggregate between 1.5 and 3.0 inch diameter | *Double-washed, uniform (uniformity coefficient of 2 or smaller with a void ratio of 0.40) aggregate between 1.5 and 3.0 inch diameter | ||
− | *[ | + | *[https://www.dot.state.mn.us/pre-letting/spec/ MNDOT Coarse Aggregate Bedding (Section 3149 G.2)] ranging 1-2 inch in gradation.</td> |
− | <td>Bottom Layer: 4" min depth of .75" crushed stone [ | + | <td>Bottom Layer: 4" min depth of .75" crushed stone [https://www.dot.state.mn.us/pre-letting/spec/ MNDOT Coarse Aggregate Bedding (Section 3149 G.2)]</td> |
<td>2' layer of clean, washed angular gravel 0.75 to 1.5 inch diameter</td> | <td>2' layer of clean, washed angular gravel 0.75 to 1.5 inch diameter</td> | ||
</tr> | </tr> | ||
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</tr> | </tr> | ||
</table> | </table> | ||
+ | <font size=1><sup>1</sup>Thickness will vary depending on traffic conditions.Typically, thicker configurations are needed for heavier traffic loads.</font size> | ||
+ | |||
+ | <noinclude> | ||
+ | [[Category:Level 3 - General information, reference, tables, images, and archives/Tables/Infiltration basin, trench, underground infiltration]] | ||
+ | </noinclude> |
Infiltration material specifications
Link to this table. To open this table in Excel format, link here.
Component | Infiltration basin | Bioinfiltration basin | Infiltration trench | Underground infiltration | Dry well | Dry swale with check dams | Permeable pavement | Tree trench/box/planter |
---|---|---|---|---|---|---|---|---|
Observation well |
|
|
|
|||||
Emergency overflow structure |
|
NA | A surcharge pipe should be constructed as an emergency overflow device for Dry Wells which receive runoff directly from a roof leader. [1] | NA | See Design criteria for permeable pavement | Tree box filters should be designed with an emergency overflow pipe | ||
High flow bypass structure |
|
|
NA | NA | NA | NA | ||
Buffer vegetation |
|
|
Keep adjacent vegetation from forming an overhead canopy above infiltration practices. This keeps leaf litter, fruits, and other vegetative material from clogging stone. |
|
NA |
|
||
Surface cover | For stone cover: apply a two inch layer of pea gravel or river stone |
|
3-inch layer of river stone or pea gravel with filter fabric and additional aggregate on top |
|
Covered by a minimum of 12 inches of topsoil |
|
|
|
Intermediate layer | NA | NA | NA | NA | NA | NA | Choker Layer: A 2 to 8 inch bedding coarse of Medium Filter Aggregate (MNDOT Section 3149 J.1) is usually placed over the top of the base material to help stabilize the irregular surface | NA |
Filter bed (stone) |
|
Bioinfiltration engineered soil mix |
|
|
20-30 inch layer of permeable manufactured soil mixture meeting the bioinfiltration soil mix |
|
3' of bioinfiltration Soil Media | |
Filter fabric |
|
|
|
|
|
|
|
|
Bottom |
|
|
|
|
Bottom Layer: 4" min depth of .75" crushed stone MNDOT Coarse Aggregate Bedding (Section 3149 G.2) | 2' layer of clean, washed angular gravel 0.75 to 1.5 inch diameter | ||
in-situ soils | NRCS Type A and B soils are the most efficient soils for proper infiltration. Type C soils are acceptable of the infiltration practice meets the required 48 hour drawdown period | |||||||
Miscellaneous | All material must be placed such that compaction is avoided. See the Construction Specifications webpage for more details | To increase the runoff capture storage volume of trenches, plastic, aluminum or concrete gallery frames can be inserted All material must be placed such that compaction is avoided. See the Construction Specifications webpage for more details |
|
1Thickness will vary depending on traffic conditions.Typically, thicker configurations are needed for heavier traffic loads.
This page was last edited on 4 August 2022, at 20:46.