A Study of Green Roof Hydrologic Performance in the Cascadia Region
To evaluate the viability of green roofs for stormwater management and low impact development (LID) in the Cascadia region, Seattle Public Utilities (SPU) initiated the Green Roof Performance Study (GRPS). The GRPS research project, led by Taylor Associates, Inc., is currently collecting up to three...
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Published in: | Low Impact Development for Urban Ecosystem and Habitat Protection Vol. 333; pp. 1 - 10 |
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Main Authors: | , , , , |
Format: | Book Chapter Conference Proceeding |
Language: | English |
Published: |
2009
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Abstract | To evaluate the viability of green roofs for stormwater management and low impact development (LID) in the Cascadia region, Seattle Public Utilities (SPU) initiated the Green Roof Performance Study (GRPS). The GRPS research project, led by Taylor Associates, Inc., is currently collecting up to three years of continuous hydrologic data at five different buildings with green roofs located throughout Seattle. The data set from each roof will include rainfall, supplemental irrigation, solar radiation, wind speed, air temperature, relative humidity, and runoff. These continuous hydrologic records will be used to calibrate a continuous hydrologic model, which in turn will provide a long term simulation of green roof performance based on a regional 40-year rainfall record. Such long-term monitoring and simulations of green roof performance have not yet been developed in literature or widely used as a basis for zoning, design criteria, or building code incentives. Preliminary results from the GRPS show that green roofs can reduce the volume and peak flow rates of stormwater runoff on an individual storm basis and over the course of a year. |
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AbstractList | To evaluate the viability of green roofs for stormwater management and low impact development (LID) in the Cascadia region, Seattle Public Utilities (SPU) initiated the Green Roof Performance Study (GRPS). The GRPS research project, led by Taylor Associates, Inc., is currently collecting up to three years of continuous hydrologic data at five different buildings with green roofs located throughout Seattle. The data set from each roof will include rainfall, supplemental irrigation, solar radiation, wind speed, air temperature, relative humidity, and runoff. These continuous hydrologic records will be used to calibrate a continuous hydrologic model, which in turn will provide a long term simulation of green roof performance based on a regional 40-year rainfall record. Such long-term monitoring and simulations of green roof performance have not yet been developed in literature or widely used as a basis for zoning, design criteria, or building code incentives. Preliminary results from the GRPS show that green roofs can reduce the volume and peak flow rates of stormwater runoff on an individual storm basis and over the course of a year. To evaluate the viability of green roofs for management and low impact development (LID) in Cascadia region, Seattle Public Utilities (SPU) the Green Roof Performance Study (GRPS). The GRPS project, led by Taylor Associates, Inc., is collecting up to three years of continuous data at five different buildings with green roofs throughout Seattle. The data set from each roof include rainfall, supplemental irrigation, solar wind speed, air temperature, relative humidity, runoff. These continuous hydrologic records will used to calibrate a continuous hydrologic model, in turn will provide a long term simulation of roof performance based on a regional 40-year record. Such long-term monitoring and simulations green roof performance have not yet been in literature or widely used as a basis for design criteria, or building code incentives. results from the GRPS show that green roofs can the volume and peak flow rates of stormwater on an individual storm basis and over the course a year. |
Author | Beyerlein, Doug Spencer, Bob Marx, Kurt W Wachter, Heidi M Berkompas, Bryan |
Author_xml | – givenname: Heidi M surname: Wachter fullname: Wachter, Heidi M – givenname: Kurt W surname: Marx fullname: Marx, Kurt W – givenname: Bryan surname: Berkompas fullname: Berkompas, Bryan – givenname: Bob surname: Spencer fullname: Spencer, Bob – givenname: Doug surname: Beyerlein fullname: Beyerlein, Doug |
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Snippet | To evaluate the viability of green roofs for stormwater management and low impact development (LID) in the Cascadia region, Seattle Public Utilities (SPU)... To evaluate the viability of green roofs for management and low impact development (LID) in Cascadia region, Seattle Public Utilities (SPU) the Green Roof... |
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Title | A Study of Green Roof Hydrologic Performance in the Cascadia Region |
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