Inspection and Maintenance: Green Roofs

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Inspection & Maintenance Guidance of Green roofs best management practices. These specialized roofs are specially engineered and designed to support the growth of vegetation while protecting the structural integrity of the roof, aiding in helping to cool the building and effectively infiltrate, absorb and retain precipitation (TRCA, 2018).[1]

Overview[edit]

Green roofs are engineered rooftop design features that allow the growth of vegetation on rooftops and have numerous benefits. These LID BMPs can also be referred to as vegetated roofs, rooftop gardens or eco-roofs. A green roof acts like a lawn, meadow or garden by intercepting and absorbing a portion of the rainwater or snowmelt that falls on it. The typical layers of a green roof (in ascending order from the roof surface) include a water-proofing membrane, drainage layer, lightweight growing media layer and the vegetation. Excess water that is not absorbed by the growing media or vegetation is collected by the underlying drainage layer, directed to outlet structures and conveyed via the roof drainage system to another BMP or the municipal storm sewer system. A portion of the water absorbed by green roofs is returned to the atmosphere by evaporation and transpiration by plants. Green roofs are typically designed to retain precipitation from small to medium-sized (e.g., 5 to 25 mm rainfall depth) storm events. Overflow outlets are necessary to safely convey flows from major storm events.

Generalized cross-section view of a green roof showing key components and common layers that make up this LID BMP (TRCA, 2018)[1]

Some of the benefits of green roofs include:

  • The ability to reduce the quantity of pollutants and runoff being discharged to municipal storm sewers and receiving waters (i.e., rivers, lakes and wetlands);
  • Growing media and plants retain pollutants deposited from the atmosphere and reduce metals and other pollutants from conventional roof materials transported by runoff;
  • Improve the energy efficiency of the building due to their insulating properties;
  • Reduce the urban heat island effect;
  • Can provide food and shelter for pollinators;
  • Can provide aesthetic value as attractive landscaped features.


Key components of Underground Infiltration Systems to pay close attention to are the:

Associated Practices[edit]

  • Intensive green roofs contain greater than 15 cm depth of growing media, can be planted with deeply rooted plants (e.g., shrubs and trees) and can be designed to handle pedestrian traffic.
  • Extensive green roofs consist of a thinner growing media layer (15 cm depth or less) and are typically planted with.
  • Blue roofs are systems that temporarily capture rainwater using the roof as storage and allow it to evaporate and/or to be used for non-potable requirements (i.e. irrigation, toilet flushing, truck washing) and ultimately offset potable water demands.

Inspection and Testing Framework[edit]

Maintneance of the Green roofs filter bed and vegetation composition/condition being performed by staff (TRCA, 2018).[1]
Visual Indicators Framework - Green Roofs

Component

Indicators

Construction Inspection

Assumption Inspection

Routine Operation Inspection

Verification Inspection
Perimeter
BMP dimensions x x x
Growing medium/filter bed
Green roof structural integrity x x x
Standing water x x x
Filter bed erosion x x
Vegetation
Vegetation cover x x x x
Vegetation condition x x
Vegetation composition x x x
Overflow outlets
Overflow outlet obstruction x x x x



Testing Indicators Framework - Green Roofs

Component

Indicators

Construction Inspection

Assumption Inspection

Routine Operation Inspection

Verification Inspection
Testing Indicators
Soil characterization testing x x (x)
Green roof irrigation system testing x x x
Green roof leak detection testing x x
Note: (x) denotes indicators to be used for Performance Verification inspections only (i.e., not for Maintenance Verification inspections)

Construction Inspection Tasks[edit]

Construction inspections take place during several points in the construction sequence, specific to the type of LID BMP, but at a minimum should be done weekly and include the following:

  1. During site preparation, prior to BMP installation to ensure the roof structure is ready for green roof construction work and confirm that BMP layout area matches approved design drawings and that construction materials meet design specifications
  2. After installation of leak detection system (if applicable) to ensure it was done properly
  3. At installation of water-proofing membrane, prior to installation of root barrier, drainage layer and overflow outlets to ensure it was done properly and to confirm that slopes are acceptable
  4. After installation of root barrier, drainage layer (including filter fabric/layer) and overflow outlets, prior to installation of growing medium and plants to ensure it was done properly and confirm that depth and slopes are acceptable
  5. After installation of growing medium layer and plants to ensure it was done properly and to confirm depth, slopes and elevations at overflow outlets are acceptable; After installation of irrigation system to confirm system is functioning
  6. Prior to hand-off points in the construction sequence when the contractor responsible for the work changes (i.e., hand-offs between the building and green roof installation contractors)
  7. After every large storm event (e.g., 15 mm rainfall depth or greater) to ensure roof drainage or flow diversion devices are functioning and adequately maintained. You can also download and print the table here


A technician using a non-invasive locate method to determine the source of a leak in a Green roof membrane (Construction Canada, 2012.)[2]
Permeable Pavements: Green Roofs

Construction Sequence Step & Timing

Inspection Item

Observations*
Site Preparation - During site preparation, prior to BMP installation Ensure the roof structure is ready for green roof construction work
BMP layout area and dimensions match approved design drawings
CDA is stabilized or runoff is diverted around BMP layout area
Construction materials have been confirmed to meet design specifications
Leak detection System - After installation of leak detection system (if applicable), prior to installation of water-proofing membrane Quality control check leak detection system installation
Water Proofing Membrane – After installation of waterproofing membrane, prior to installation of root barrier, drainage layer and overflow outlets Quality control check membrane installation
Confirm that slopes conform with approved design drawings
Root barrier / Drainage layer and Overflow outlets – After installation of root barrier, drainage layer (including filter fabric) and overflow outlets, prior to installation of growing medium layer and plants Quality control check root barrier and drainage layer installations
Installation of drainage layer (e.g., depth and slope) is acceptable
Installations of overflow outlets (e.g., elevation and slope) are acceptable
Filter bed – After installation of filter bed (growing medium layer and plants) Quality control check installation of any structural components of growing medium layer (if applicable)
Installation of growing medium (e.g., depth, elevations at overflow outlets) is acceptable
Growing medium is free of ruts, local depressions
Planting material meets approved planting plan specifications (plant types and quantities)
Quality control check installation of erosion matting/protection (if applicable)
Irrigation System - After installation of irrigation system Confirm installation is acceptable and system is functioning (through testing)
  1. 1.0 1.1 1.2 TRCA. 2018. Fact Sheet - Inspection and Maintenance of Stormwater Best Management Practices: Green Roofs. https://sustainabletechnologies.ca/app/uploads/2018/02/Green-Roofs-Fact-Sheet.pdf
  2. Construction Canada. 2012. Waterproofing considerations for green roofs. Photo source: Detec Systems. 1 March 2012. Accessed August 8 2022. https://www.constructioncanada.net/waterproofing-considerations-for-green-roofs/2/