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*Anne Arundel County. [http://www.aacounty.org/departments/public-works/wprp/watershed-assessment-and-planning/step-pool-conveyance-systems/ Step Pool Conveyance Systems (SPCS) Design Calculator]. | *Anne Arundel County. [http://www.aacounty.org/departments/public-works/wprp/watershed-assessment-and-planning/step-pool-conveyance-systems/ Step Pool Conveyance Systems (SPCS) Design Calculator]. | ||
*Brown, R.A. and Hunt, W.F. 2010. ''Impacts of construction activity on bioretention performance''. Journal of Hydrologic Engineering. 15(6), 386-394. | *Brown, R.A. and Hunt, W.F. 2010. ''Impacts of construction activity on bioretention performance''. Journal of Hydrologic Engineering. 15(6), 386-394. | ||
− | *Gulliver, J.S., A.J. Erickson, and P.T. Weiss (editors). 2010. Stormwater Treatment: Assessment and Maintenance. University of Minnesota, St. Anthony Falls Laboratory. Minneapolis, MN. | + | *Gulliver, J.S., A.J. Erickson, and P.T. Weiss (editors). 2010. [http://stormwaterbook.safl.umn.edu/ Stormwater Treatment: Assessment and Maintenance]. University of Minnesota, St. Anthony Falls Laboratory. Minneapolis, MN. |
− | *Hatt, B.E., Steinel, A., Deletic, A., and Fletcher, T.D. 2011. Retention of heavy metals by stormwater filtration systems: Breakthrough analysis. Water, Science, and Technology. 64(9), 1913-1919. | + | *Hatt, B.E., Steinel, A., Deletic, A., and Fletcher, T.D. 2011. ''Retention of heavy metals by stormwater filtration systems: Breakthrough analysis''. Water, Science, and Technology. 64(9), 1913-1919. |
− | *Hunt, W.F., Jarrett, A.R., Smith, J.T., and Sharkey, L.J. 2006. Evaluating bioretention hydrology and nutrient removal at three field sites in North Carolina. Journal of Irrigation and Drainage Engineering. 132(6), 600-608. | + | *Hunt, W.F., Jarrett, A.R., Smith, J.T., and Sharkey, L.J. 2006. ''Evaluating bioretention hydrology and nutrient removal at three field sites in North Carolina''. Journal of Irrigation and Drainage Engineering. 132(6), 600-608. |
− | *Lefevre, G.H., P.J. Novak, R.M. Hozalski. 2012. Fate of naphthalene in laboratory-scale bioretention cells: implications for sustainable stormwater management. Environmental Science and Technology 46(2):995-1002. | + | *Lefevre, G.H., P.J. Novak, R.M. Hozalski. 2012. ''Fate of naphthalene in laboratory-scale bioretention cells: implications for sustainable stormwater management''. Environmental Science and Technology 46(2):995-1002. |
− | *Li, H. and Davis, A.P. 2008. Heavy metal capture and accumulation in bioretention media. Environmental Science & Technology. 42, 5247-5253. | + | *Li, H. and Davis, A.P. 2008. ''Heavy metal capture and accumulation in bioretention media''. Environmental Science & Technology. 42, 5247-5253. |
− | *Morgan, J.G., K.A. Paus, R.M. Hozalski and J.S. Gulliver. (2011). Sorption and Release of Dissolved Pollutants Via Bioretention Media. SAFL Project Report No. 559, September 2011. | + | *Morgan, J.G., K.A. Paus, R.M. Hozalski and J.S. Gulliver. (2011). [https://www.pca.state.mn.us/sites/default/files/p-gen3-13s.pdf Sorption and Release of Dissolved Pollutants Via Bioretention Media]. SAFL Project Report No. 559, September 2011. |
− | *North Carolina Department of Environment and Natural Resources. 2009. [https:// | + | *North Carolina Department of Environment and Natural Resources. 2009. [https://deq.nc.gov/media/5076/download NCDENR Stormwater BMP Manual – Section 14, Grassed Swale]. |
*O’Neill, S.W. and Davis, A.P. (2012). ''Water treatment residual as a bioretention amendment for phosphorus. I: Evaluation studies. Journal of Environmental Engineering''. 138(3), 318-327. | *O’Neill, S.W. and Davis, A.P. (2012). ''Water treatment residual as a bioretention amendment for phosphorus. I: Evaluation studies. Journal of Environmental Engineering''. 138(3), 318-327. | ||
− | *Rosgen, D. | + | *Rosgen, D.. 1996. ''Applied River Morphology''. Wildland Hydrology. |
− | *Virginia Department of Conservation and Recreation (VA DCR). 2011. [ | + | *Virginia Department of Conservation and Recreation (VA DCR). 2011. [https://swbmpvwrrc.wp.prod.es.cloud.vt.edu/wp-content/uploads/2017/11/BMP-Spec-No-3_GRASS-CHANNELS_v1-9_03012011.pdf Virginia DCR Stormwater Design Specification No. 3 – Grass Channels]. Version 1.8, March 1, 2011. Division of Soil and Water Conservation. Richmond, VA. |
− | *Virginia Department of Conservation and Recreation (VA DCR). 2011. Virginia DCR Stormwater Design Specification No. 10 – Dry Swales | + | *Virginia Department of Conservation and Recreation (VA DCR). 2011. [https://swbmpvwrrc.wp.prod.es.cloud.vt.edu/wp-content/uploads/2017/11/BMP-Spec-No-10_DRY-SWALE_v1-9_03012011.pdf Virginia DCR Stormwater Design Specification No. 10 – Dry Swales]. Version 1.9, March 1, 2011. Division of Soil and Water Conservation. Richmond, VA. |
− | + | *West Virginia Department of Environmental Protection. 2012. [https://dep.wv.gov/WWE/Programs/stormwater/MS4/Pages/StormwaterManagementDesignandGuidanceManual.aspx West Virginia Stormwater Management and Design Guidance Manual]. Section 4.2.7: Regenerative Stormwater Conveyance System (RSC). November 2012. | |
+ | |||
+ | <noinclude> | ||
+ | [[Category:Level 3 - Best management practices/Structural practices/Step pool]] | ||
+ | [[Category:Level 2 - General information, reference, tables, images, and archives/Reference]] | ||
+ | |||
+ | </noinclude> |
This page was last edited on 25 February 2023, at 02:48.