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[해외논문] Flow and mass balance analysis of eco-bio infiltration system

Frontiers of environmental science & engineering, v.6 no.5, 2012년, pp.612 - 619  

Maniquiz, Marla C. ,  Kim, Lee-Hyung ,  Lee, Soyoung ,  Choi, Jiyeon

초록이 없습니다.

참고문헌 (18)

  1. L. Coffman 2000 Low-Impact Development Design Strategies, an Integrated Design Approach Coffman L. Low-Impact Development Design Strategies, an Integrated Design Approach. Prince George’s County, Maryland: Department of Environmental Resources, Programs and Planning Division, 2000 

  2. B. Ferguson 2002 Handbook of Water Sensitive Planning and Design Ferguson B. Stormwater management and stormwater restoration. In: France R L, ed. Handbook of Water Sensitive Planning and Design. Washington DC: Lewis Publishers, 2002 

  3. S. D. Lloyd 2002 Water Sensitive Urban Design: A Stormwater Management Perspective Lloyd S D, Wong T H F, Chesterfield C. Water Sensitive Urban Design: A Stormwater Management Perspective. Melbourne: CRC for Catchment Hydrology Industry, 2002 

  4. U.S. Department of Defense 2004 Unified Facilities Criteria-Design: Low Impact Development Manual U.S. Department of Defense (US DoD). Unified Facilities Criteria-Design: Low Impact Development Manual. Washington, DC, Unified States: U.S. Army Corps of Engineers, Naval Facilities Engineering Command, and Air Force Civil Engineering Support Agency, 2004 

  5. N. Dunnett 2007 Rain Gardens: Sustainable Rainwater Management for the Garden and Designed Landscape Dunnett N, Clayden A. Rain Gardens: Sustainable Rainwater Management for the Garden and Designed Landscape. Portland: Timber Press, 2007 

  6. R. Bettess 1996 Infiltration Drainage - Manual of Good Practice Bettess R. Infiltration Drainage - Manual of Good Practice. London: Construction Industry Research and Information Association, 1996 

  7. Journal ofWater Resources Planning and Management E. W. Strecker 127 3 144 2001 10.1061/(ASCE)0733-9496(2001)127:3(144) Strecker E W, Quigley M M, Urbonas B R, Jones E J, Clary J K. Determining urban storm water BMP effectiveness. Journal ofWater Resources Planning and Management, 2001, 127(3): 144-149 

  8. N. Weinstein 2006 Decentralized Stormwater Controls for Urban Retrofit and Combined Sewer Overflow Reduction Weinstein N. Decentralized Stormwater Controls for Urban Retrofit and Combined Sewer Overflow Reduction. Alexandria, VA, United States: Water Environment Research Foundation, 2006 

  9. National Research Council 2008 Urban Stormwater Management in the United States National Research Council (NRC). Urban Stormwater Management in the United States. Washington DC: National Academies Press, 2008 

  10. Journal of Contemporary Water Research & Education J. Battiata 146 11 2010 10.1111/j.1936-704X.2010.00388.x Battiata J, Collins K, Hirschman D, Hoffman G. The runoff reduction method. Journal of Contemporary Water Research & Education, 2010, 146: 11-21 

  11. Journal of Environmental Engineering H. Li 135 8 567 2009 10.1061/(ASCE)EE.1943-7870.0000026 Li H, Davis A P. Water quality improvement through reductions of pollutant loads using bioretention. Journal of Environmental Engineering, 2009, 135(8): 567-576 

  12. Journal of Irrigation and Drainage Engineering E. Passeport 135 4 505 2009 10.1061/(ASCE)IR.1943-4774.0000006 Passeport E, Hunt W F, Line D E, Smith R A, Brown R A. Field study of the ability of two grassed bioretention cells to reduce stormwater runoff pollution. Journal of Irrigation and Drainage Engineering, 2009, 135(4): 505-510 

  13. Journal of Environmental Engineering and Science T. B. Wild 135 12 1257 2009 10.1061/(ASCE)EE.1943-7870.0000106 Wild T B, Davis A P. Simulation of the performance of a stormwater BMP. Journal of Environmental Engineering and Science, 2009, 135(12): 1257-1267 

  14. Journal of Contemporary Water Research & Education A. P. Davis 146 3 2010 10.1111/j.1936-704X.2010.00387.x Davis A P, Traver R G, Hunt W F. Improving urban stormwater quality: applying fundamental principles. Journal of Contemporary Water Research & Education, 2010, 146: 3-10 

  15. M. K. Stenstrom 2005 First Flush Phenomenon Characterization Stenstrom M K, Kayhanian M. First Flush Phenomenon Characterization. Sacramento, CA, United States: Department of California Transportation, 2005 

  16. The Science of the Total Environment L. H. Kim 376 1-3 178 2007 10.1016/j.scitotenv.2006.12.053 Kim L H, Ko S O, Jeong S M, Yoon J Y. Characteristics of washedoff pollutants and dynamic EMCs in parking lots and bridges during a storm. The Science of the Total Environment, 2007, 376(1-3): 178-184 

  17. Environmental Engineering Research M. C. Maniquiz 15 4 215 2010 10.4491/eer.2010.15.4.215 Maniquiz M C, Choi J Y, Lee S Y, Cho H J, Kim L H. Appropriate methods in determining the event mean concentration and pollutant removal efficiency of a best management practice. Environmental Engineering Research, 2010, 15(4): 215-223 

  18. Frontiers of Environmental Science & Engineering in China R. Zhang 3 3 354 2009 10.1007/s11783-009-0033-4 Zhang R, Zhou W, Field R, Tafuri A, Yu S, Jin K. Field test of best management practice pollutant removal efficiencies in Shenzhen, China. Frontiers of Environmental Science & Engineering in China, 2009, 3(3): 354-363 

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