|Table of Contents|

Plant Selection and Design of Rain Garden(PDF)

《北方园艺》[ISSN:1001-0009/CN:23-1247/S]

Issue:
2012年19期
Page:
77-81
Research Field:
Publishing date:

Info

Title:
Plant Selection and Design of Rain Garden
Author(s):
WANG JiaWANG Si-siCHE WuLI Jun-qi
Key Laboratory of Urban Stormwater System and Water Environment (Ministry of Education),University of Civil Engineering and Architecture,Beijing 100044
Keywords:
low impact developmentrain garden(bioretention)plant specieslandscape design
PACS:
S 688
DOI:
-
Abstract:
Rain garden is one of important low impact development practices for stormwater management,which could dramatically improve the quality of runoff,reduce runoff volumes,peak flows,peak runoff rate and has landscape and ecological functions at site scale.Plant is a critical component of rain garden,playing a vital role on retention and purification of runoff,and has outstanding aesthetic value and ecological function.The functions of plants and environmental factors which influence the growth of plants in rain garden based on literature review in and abroad were summarized.Then the principles and the design essentials of plants,and different kinds of plant species for rain garden in Beijing were summed up.Finally,the anticipates future work necessary to be further studied in China.

References:

[1]Dietz M E.Low impact development practicesa review of current research and recommendations for future directions[J].Water Air Soil Pollut,2007,186:351-363.

[2]王建龙,车伍,易红星.基于低影响开发的城市雨洪控制与利用方法[J].中国给水排水,2009,25(14):6-9,16.

[3]美国景观设计师协会[DB/OL].http://www.asla.org/.

[4]Davis A P,Hunt W F,Traver R G,et al.Bioretention technologyoverview of current practice and future needs[J].Journal of Environmental Engineering,2009,135(3):109-117.

[5]Roy-Poirier A,Champagne P,Asce A M,et al.Review of bioretention system research and designpastpresentand future[J].Journal of Environmental Engineering,2010,136(9):878-889.

[6]Lucas W C,Greenway M.Nutrient retention in vegetated and nonvegetated bioretention mesocosms[J].Journal of Irrigation and Drainage Engineering,2008,134(5):613-623.

[7]Fletcher T,Zinger Y,Deletic A,et al.Treatment efficiency of biofiltersresults of a large-scale column study[C].Rainwater & Urban Design Conference,Sydney,Australia,2007.

[8]Read J,Wevill T,Fletcher T,et al.Variation among plant species in pollutant removal from stormwaterin biofiltration systems[J].Water Research,2008,42:893-902.

[9]Read J,Fletcher T D,Wevill T,et al.Plant traits that entance pollutant removal from stormwater in biofiltration systems[J].International Journal of Phytoremediation,2010,12:34-53.

[10]Lewis J FHatt B E,Deletic A,et al.The impact of vegetation on the hydraulic conductivity of stormwater biofiltration systems[C].11th International Conference on Urban Drainage,Edinburgh,Scotland,UK,2008.

[11]Denich C,Bradford A.Cold climate issues for bioretentionassessing impacts of salt and aggregate application on plant healthmedia clogging and groundwater quality[C].2008 International Low Impact Development Conference,Seattle,Washington,2008.

[12]Casanova M T,Brock M A.How do depth,duration and frequency of flooding influence the establishment of wetland plant communities [J].Plant Ecology,2000,147:237-250.

[13]Shaw DSchmidt R.Plants for stormwater designspecies selection for the upper midwest[M].Minnesota Pollution Control Agency,2003.

[14]罗红梅,车伍,李俊奇,.雨水花园在雨洪控制与利用中的应用[J].中国给水排水,2008,24(6):48-52.

[15]向露露,李俊奇,车伍,.雨水花园设计方法探析[J].给水排水,2008,34(6):47-51.

[16]种玉麒,曹惠贤.北京市城区雨洪利用对策[J].北京水利科技,1991(4):19-26.

Memo

Memo:
-
Last Update: 2014-09-04