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==Construction Phase O&M Considerations== | ==Construction Phase O&M Considerations== | ||
Proper construction methods and sequencing play a significant role in reducing O&M problems. Some key items during the construction phase include: | Proper construction methods and sequencing play a significant role in reducing O&M problems. Some key items during the construction phase include: | ||
− | *Before construction begins | + | *'''Before construction begins''' |
− | **Ensure that the pervious parts of the contributing drainage area are fully stabilized with native vegetation (see [ | + | **Ensure that the pervious parts of the contributing drainage area are fully stabilized with <span title="A species that has been observed in the form of a naturally occurring and self-sustaining population in historical times. Non-natives do not meet this definition."> '''native vegetation'''</span> (see [https://www.pca.state.mn.us/water/plants-stormwater-design Plants for Stormwater Design]) prior to the beginning of construction. If this is not possible, use barriers or diversions to direct stormwater flows from the contributing drainage area away from the practice. |
**Install any needed erosion and <span title="practices designed to prevent or minimize loss of eroded soil at a site"> [https://stormwater.pca.state.mn.us/index.php?title=Sediment_control_practices '''sediment controls''']</span> in your construction site and prepare a [https://stormwater.pca.state.mn.us/index.php?title=SWPPP_Template_for_Small_Construction_Sites storm water pollution prevention plan] (SWPPP). | **Install any needed erosion and <span title="practices designed to prevent or minimize loss of eroded soil at a site"> [https://stormwater.pca.state.mn.us/index.php?title=Sediment_control_practices '''sediment controls''']</span> in your construction site and prepare a [https://stormwater.pca.state.mn.us/index.php?title=SWPPP_Template_for_Small_Construction_Sites storm water pollution prevention plan] (SWPPP). | ||
**Hold a pre-construction meeting to review the construction plans and the sequencing of construction. | **Hold a pre-construction meeting to review the construction plans and the sequencing of construction. | ||
− | *During construction | + | *'''During construction''' |
**If permeable pavement is part of a larger project, those practices should be constructed towards the end of the construction sequence to prevent problems due to construction traffic and / or sedimentation. | **If permeable pavement is part of a larger project, those practices should be constructed towards the end of the construction sequence to prevent problems due to construction traffic and / or sedimentation. | ||
− | **Construct any | + | **Construct any pretreatment devices first to trap sediments. |
− | **Ensure heavy equipment does not enter the footprint of the practice to avoid compaction of the infiltration | + | **Ensure heavy equipment does not enter the footprint of the practice to avoid <span title="The process in which a stress applied to a soil causes densification as air is displaced from the pores between the soil grains. Compaction is desired in construction practices and undesirable when promoting infiltration into soil."> [https://stormwater.pca.state.mn.us/index.php/Alleviating_compaction_from_construction_activities '''compaction''']</span> of the infiltration <span title="Engineered media is a mixture of sand, fines (silt, clay), and organic matter utilized in stormwater practices, most frequently in bioretention practices. The media is typically designed to have a rapid infiltration rate, attenuate pollutants, and allow for plant growth."> [https://stormwater.pca.state.mn.us/index.php?title=Design_criteria_for_bioretention#Materials_specifications_-_filter_media '''media''']</span>. |
**Store any soil or gravel media away from the practice footprint to avoid clogging the infiltration medium. | **Store any soil or gravel media away from the practice footprint to avoid clogging the infiltration medium. | ||
**Inspect the practice during construction to ensure that the permeable pavement practice is built in accordance with the approved design and standards and specifications. Use a detailed inspection checklists that include sign-offs by qualified individuals at critical stages of construction, to ensure that the contractor’s interpretation of the plan is acceptable to the professional designer. An example construction phase inspection checklist is provided on the [https://www.princegeorgescountymd.gov/DocumentCenter/View/11099/Permeable-Pavement-Construction-PDF?bidId= Prince George County website]. | **Inspect the practice during construction to ensure that the permeable pavement practice is built in accordance with the approved design and standards and specifications. Use a detailed inspection checklists that include sign-offs by qualified individuals at critical stages of construction, to ensure that the contractor’s interpretation of the plan is acceptable to the professional designer. An example construction phase inspection checklist is provided on the [https://www.princegeorgescountymd.gov/DocumentCenter/View/11099/Permeable-Pavement-Construction-PDF?bidId= Prince George County website]. | ||
− | *After construction | + | *'''After construction''' |
**Verify that the permeable pavement practice was built in accordance with the approved design and standards and specifications. | **Verify that the permeable pavement practice was built in accordance with the approved design and standards and specifications. | ||
**Verify that the contributing drainage area is fully stabilized with vegetation prior to removing any barriers, diversions, or erosion and sediment control measures. | **Verify that the contributing drainage area is fully stabilized with vegetation prior to removing any barriers, diversions, or erosion and sediment control measures. | ||
− | **Verify that the practice actually captures and infiltrates runoff. Conduct a full facility test to inspect the underdrain and outflow function (filling test and surface infiltration test). All water should drain within 48 hours. **Infiltration rate should not exceed 8.3 inches per hour. | + | **Verify that the practice actually captures and infiltrates runoff. Conduct a full facility test to inspect the <span title="An underground drain or trench with openings through which the water may percolate from the soil or ground above"> '''underdrain'''</span> and outflow function (filling test and surface infiltration test). All water should drain within 48 hours. **Infiltration rate should not exceed 8.3 inches per hour. |
**Use a detailed inspection checklists that include sign-offs by qualified individuals at the completion of construction, to ensure that the contractor’s interpretation of the plan is acceptable to the professional designer. **An example construction phase inspection checklist is provided on the [https://www.princegeorgescountymd.gov/DocumentCenter/View/11099/Permeable-Pavement-Construction-PDF?bidId= Prince George County website]. | **Use a detailed inspection checklists that include sign-offs by qualified individuals at the completion of construction, to ensure that the contractor’s interpretation of the plan is acceptable to the professional designer. **An example construction phase inspection checklist is provided on the [https://www.princegeorgescountymd.gov/DocumentCenter/View/11099/Permeable-Pavement-Construction-PDF?bidId= Prince George County website]. | ||
− | **The design/construction team should provide the O&M team with the following information to be included in the O&M plan | + | **The design/construction team should provide the O&M team with the following information to be included in the O&M plan. |
− | ***The plant warranty | + | ***The plant warranty |
− | ***The | + | ***The “<span title="As-built refers to a drawing that shows the existing dimensions and conditions of a stormwater structure or device."> '''as-built'''</span>” plans of the practice |
− | ***A list of conditions that might cause failure of the practice if not properly maintained | + | ***A list of conditions that might cause failure of the practice if not properly maintained |
==Post-Construction Phase O&M== | ==Post-Construction Phase O&M== |
This page provides guidance for operation and maintenance (O&M) of permeable pavement.
Supplemental information can be found on the page called Operation and maintenance (O&M) of permeable pavement - supplemental information . Supplemental information includes the following.
Permeable pavement practices are designed to capture, filter and infiltrate stormwater runoff through the surface and into a storage layer. These practices have fewer “green” components than other green stormwater infrastructure, but they offer a stormwater benefit over what would otherwise be impervious area. Permeable pavements are most common in dense urban areas and experience heavy vehicular and pedestrian traffic. These practices require dedicated and regular maintenance to ensure proper and long-lasting operation, but they can operate effectively for up to 30 years if maintained (TRCA, 2016). The most frequently cited O&M concerns for pervious pavement practices include the following.
The sections below describe best practices to prevent or minimize these common problems.
Permeable pavement practices may be subject to high public visibility, sedimentation and vegetation growth and load due to vehicular traffic. Designers should design these practices in ways that prevent or minimize O&M issues. Examples include the following.
Designers should consult and include any local requirements regarding green infrastructure. O&M considerations often depend on whether the practice is located on public land, private land, or in the public right of way. For example, permeable pavement in the public right of way should be located where traffic loads are most suitable.
Designers should also recognize the need to perform frequent maintenance to remove trash, check for clogging, and if necessary perform practice cleaning. Designers can incorporate design solutions to facilitate maintenance activities. Examples include providing
The designer should also provide a site-specific O&M plan that includes the following.
For more information on see Operation and maintenance (O&M) of permeable pavement - supplemental information.
Proper construction methods and sequencing play a significant role in reducing O&M problems. Some key items during the construction phase include:
Effective short and long-term operation of permeable pavement practices requires a dedicated and routine maintenance plan with clear guidelines, expectations, and schedules. Proper maintenance will not only increase the expected lifespan of the facility but will improve aesthetics and property value. A maintenance plan clarifying maintenance responsibilities should be required for all practices.
Some important post-construction considerations are provided below along with recommended maintenance standards.
The table below provides an overview and schedule of general maintenance activities.
Link to this table
First Year of Operation | ||||
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Activity | Frequency | Time Period | Level of Effort | O&M Benefita |
Check pretreatment for proper flow/filtration. If applicable, assess the health of plantings and replant as necessary. | At least twice after storm events > 0.5 inches within 30 minutes of the event, then biannually | Within the first 6 months then during Spring / Fall | 2 hours | 1 |
Check that there is no ponding | At least twice after storm events > 0.5 inches within 30 minutes of the event | Within the first 6 months | 2 hours | 1 |
Check permeable parts of drainage area to make sure they are clean of debris and evidence of erosion | Biannually | All year long | 1,5 | |
Check for accumulation of sediment and organic debris on the permeable pavement surface. | Biannually | All year long | 1,5 | |
Check for damaged pavement | Biannually | All year long, especially after winter season | 1,5 | |
Replace any joint fill material, if applicable | Annually | As needed | 1,5 | |
Practice surface cleaning (vacuuming) | Biannually | Spring / Fall | 1 | |
Perform surface infiltration test | Biannually | After practice cleaning | 1 | |
Replace any joint fill material, if applicable | Annually | As needed | 1,5 | |
Clean underdrain | Biannually | Spring / Fall | 1 | |
After First Year of Operation | ||||
Activity | Frequency | Time Period | Level of Effort per Visit | O&M Benefita |
Check pretreatment for proper flow/filtration. If applicable, assess the health of plantings and replant as necessary. | Biannually | Spring / Fall | 2 hours | 1 |
Check that there is no ponding | Biannually | All year long | 2 hours | 1 |
Check permeable parts of drainage area to make sure they are clean of debris and evidence of erosion | Biannually | All year long | 1,5 | |
Check for accumulation of sediment and organic debris on the permeable pavement surface. | Biannually | All year long | 1,5 | |
Check for damaged pavement | Biannually | All year long, especially after winter season | 1,5 | |
Replace any joint fill material, if applicable | Annually | As needed | 1,5 | |
Practice surface cleaning (vacuuming) | Biannually | Spring / Fall | 1 | |
Perform surface infiltration test | Biannually | After practice cleaning | 1 | |
Perform surface infiltration test | Biannually | After practice cleaning | 1 | |
Clean underdrain | Biannually | Spring / Fall | 1 | |
After 5+ Years of Operation (non-routine maintenance) | ||||
Activity | Frequency | Time Period | Level of Effort per Visit | O&M Benefita |
After long term operation of the practice, some occasional and infrequent maintenance activities might be required, such as bigger repairs, partial rehabilitation, or redesign of key elements of the practice. | As needed | As needed | Could be significant depending on the activity | 1,5 |
aKey to Maintenance Benefits:
b. Note that many practitioners are minimizing the use of mulch or using alternatives to mulch to control weeds. Using mulch can cause clogging of inlet, outlet, and bypass pipes, and can introduce invasive species such as jump worms. Alternatives to mulch include ground vegetation such as clover or sedges, or arranging plantings in more dense configurations so as to minimize use of mulch. |
Link to this table
Troubleshooting Common Problems | ||
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Symptom | Possible Causes | Solution |
Standing water on permeable pavement area |
|
|
Maintenance costs will vary on a number of factors, including but not limited to:
Maintenance costs will vary depending on the size of the practice, its contributing drainage area, type of plantings, and whether it is part of a larger GI effort. Preventative maintenance is key to minimizing major costs associated with repairs. A general rule of thumb to estimate annual maintenance costs is 3%-6% of the installation costs. Maintenance costs should account for the number of hours of labor, the cost for different types of labor expertise required, and any equipment needed to successfully complete the maintenance activities.
A study published in 2017 by ASCE shows the range of annual maintenance cost of permeable pavement systems was estimated to be $0.06/sq ft to $0.31/sq ft in 2014 dollars. This translates to costs of $0.07/sq ft to $0.37/sq ft in 2021 dollars, though the estimates were based on data from 2005-2009 (Clary, 2017).
No special equipment is necessary for winter maintenance, however, regenerative air vacuum sweepers and other specialized cleaning equipment may be necessary to remove and prevent clogs.
Topics discussed include:
MPCA has compiled publicly available O&M resources related to green infrastructure. This non-exhaustive catalog is intended as a resource to practitioners. https://docs.google.com/spreadsheets/d/1TNGVghLhudcWPgXKLbLAu2cUWv6O3ZeS7-FIuLSGIPM/edit#gid=0
Document | Link |
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Operation & Maintenance Plan |
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Construction phase inspection checklist |
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O&M inspection checklist |
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O&M example report |
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Maintenance Agreements |
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Toronto and Region Conservation Authority (TRCA). 2016. Low Impact Development Stormwater Management Practice Inspection and Maintenance Guide https://sustainabletechnologies.ca/app/uploads/2016/08/LID-IM-Guide-7.4-Permeable-Pavements.pdf