862
Views
0
CrossRef citations to date
0
Altmetric
Articles

Optimum numbering and sizing of infiltration-based water sensitive urban design technologies in South Australia

, , &
Pages 79-86 | Received 02 Aug 2019, Accepted 14 Feb 2020, Published online: 28 Feb 2020

References

  • Ahammed, F. 2017. “A Review of Water-sensitive Urban Design Technologies and Practices for Sustainable Stormwater Management.” Sustainable Water Resources Management 3: 269–282. doi:10.1007/s40899-017-0093-8.
  • Ahammed, F., G. A. Hewa, and J. R. Argue. 2013. “Introducing Laky Well Concept for Stormwater Quantity Control for Dhaka, Bangladesh.” Applied Water Science 3 (1): 115–123. doi:10.1007/s13201-012-0065-y.
  • Argue, J. R. 2004/2013. Water Sensitive Urban Design: Basic Procedure for Source Control of Stormwater: A Handbook for Australian Practice. Adelaide, Australia: Urban Water Resource Centre, University of South Australia.
  • Auckland City Council. 2003. Soakage Design Manual. New Zealand: Auckland City Council.
  • Bai, M., D. Xu, Y. Li, S. Zhang, and S. Liu. 2017. “Coupled Impact of Spatial Variability of Infiltration and Microtopography on Basin Irrigation Performances.” Irrigation Science 35 (5): 437–449. doi:10.1007/s00271-017-0550-z.
  • Bali, M., H. Jridi, S. Farhat, B. Louhichi, and R. Boukchina. 2017. “Treatment of Secondary Effluents by Infiltration-percolation Process Using Sand Fortified with Activated Charcoal.” International Journal of Environmental Science and Technology 14 (6): 1209–1216. doi:10.1007/s13762-016-1222-x.
  • Bali, M., and H. Tlili. 2018. “Removal of Heavy Metals from Wastewater Using Infiltration-percolation Process and Adsorption on Activated Carbon.” International Journal of Environmental Science and Technology 16 (1): 249–258. doi:10.1007/s13762-018-1663-5.
  • Barton, A. B., and J. R. Argue. 2009. “Integrated Urban Water Management for Residential Areas: A Reuse Model.” Water Science and Technology 60 (3): 813–823. doi:10.2166/wst.2009.401.
  • Broadbent, A. M., A. M. Coutts, N. J. Tapper, M. Demuzere, and J. Beringer. 2017. “The Microscale Cooling Effects of Water Sensitive Urban Design and Irrigation in a Suburban Environment.” Theoretical and Applied Climatology 134 (1–2): 1–23. doi:10.1007/s00704-017-2241-3.
  • Browne, D., A. Deletic, G. M. Mudd, and T. D. Fletcher. 2008. “A New Saturated/unsaturated Model for Stormwater Infiltration Systems.” Hydrological Processes 22 (25): 4838–4849. doi:10.1002/hyp.v22:25.
  • de Haan, F. J., B. C. Rogers, N. Frantzeskaki, and R. R. Brown. 2015. “Transitions through a Lens of Urban Water.” Environmental Innovation and Societal Transitions 15: 1–10. doi:10.1016/j.eist.2014.11.005.
  • Dechesne, M., S. Barraud, and J. P. Bardin. 2005. “Experimental Assessment of Stormwater Infiltration Basin Evaluation.” Journal of Environmental Engineering 131 (7): 1090–1098. doi:10.1061/(ASCE)0733-9372(2005)131:7(1090).
  • Fletcher, T. D., W. Shuster, W. F. Hunt, R. Ashley, D. Butler, and S. Arthur. 2014. “SUDS, LID, BMPs, WSUD and More – The Evolution and Application of Terminology Surrounding Urban Drainage.” Urban Water Journal 1 (1): 1–18.
  • Hou, L., B. X. Hu, M. He, X. Xu, and W. Zhang. 2018. “Effect of Intermittent Operation Model on the Function of Soil Infiltration System.” Environmental Science and Pollution Research 25 (10): 9615–9625. doi:10.1007/s11356-018-1238-5.
  • Islam, M M.., F. N.-F.. Chou, and M. R. Kabir. 2011. “Feasibility and Acceptability Study Of Rainwater Use to The Acute Water Shortage Areas in Dhaka City, Bangladesh.” Natural Hazards 56 (1): 93-111. doi:10.1007/s11069-010-9551-4.
  • Kazemi, F., S. Beecham, and B. Myers. 2013. “Water Quality Effects of a Water Sensitive Urban Design Retrofit in an Urban Streetscape in Adelaide, Australia.” Acta Horticulture 999: 321–327. doi:10.17660/ActaHortic.2013.999.46.
  • Larenson, G., S. Laurenson, N. Bolan, S. Beecham, and I. Clark. 2013. “The Role of Bioretention Systems in the Treatment of Stormwater.” Advances in Agronomy 120: 223–274.
  • Liu, B., W. Cao, and Y. Li. 2017. “Evaluation of Turfgrid Porous Pavements for Urban Stormwater Management in Xiamen Island, Southeast China.” Sustainable Water Resources Management 4 (3): 617–626. doi:10.1007/s40899-017-0147-y.
  • Massey, D. S. 2010. “Special Issue of 21st Century Society: Journal of the Academy of Social Sciences: Climate Change in the Social Sciences.” Twenty-First Century Society 5 (2): 194.
  • Meng, C., J. Zhou, M. Dai, S. Zhu, X. Xue, and L. Ye. 2017. “Variable Infiltration Capacity Model with BGSA-based Wavelet Neural Network.” Stochastic Environmental Research and Risk Assessment 31 (7): 1871–1885. doi:10.1007/s00477-017-1413-0.
  • Mitchell, V. 2006. “Applying Integrated Urban Water Management Concepts: A Review of Australian Experience.” Environmental Management 37 (5): 589–605. doi:10.1007/s00267-004-0252-1.
  • Palla, A., and I. Gnecco. 2015. “Hydrologic Modeling of Low Impact Development Systems at the Urban Catchment Scale.” Journal of Hydrology 528 (1): 361–368. doi:10.1016/j.jhydrol.2015.06.050.
  • Pascale, P. J., and J. S. Pascale. 1980. “Item Analysis Using the Statistical Package for the Social Sciences (SPSS).” Educational and Psychological Measurement 40 (1): 163–164. doi:10.1177/001316448004000126.
  • Radcliffe, J. C., D. Page, B. Naumann, and P. Dillon. 2017. “Fifty Years of Water Sensitive Urban Design, Salisbury, South Australia.” Frontiers of Environmental Science & Engineering 11 (4): 7. doi:10.1007/s11783-017-0937-3.
  • Razzaghmanesh, M., and S. Beecham. 2018. “A Review of Permeable Pavement Clogging Investigations and Recommended Maintenance Regimes.” Water 10 (3): 337. doi:10.3390/w10030337.
  • Rodriguez, D. B., E. J. Carter, M. Bryant, S. Diemont, and R. Smardon. 2011. Sustainability Assessment of Green Infrastructure Practices for Stormwater Management: A Comparative Emergy Analysis. New York: UMI Dissertation Publishing.
  • Roldin, M., O. Mark, G. Kuczera, P. S. Mikkelsen, and P. J. Binning. 2012. “Representing Soakaways in a Physically Distributed Urban Drainage Model –upscaling Individual Allotments to an Aggregated Scale.” Journal of Hydrology 414–415: 530–538. doi:10.1016/j.jhydrol.2011.11.030.
  • Saenz, Q. A., and G. A. Rodríguez. 2016. “Guidelines for Inclusion: Ensuring Indigenous Peoples’ Involvement in Water Planning Processes across South Eastern Australia.” Journal of Hydrology 542: 828–835. doi:10.1016/j.jhydrol.2016.09.050.
  • Shi, X., S. Quilty, T. Long, A. Jayakaran, L. Fay, and G. Xu. 2017. “Managing Airport Stormwater Containing Deicers: Challenges and Opportunities.” Frontiers of Structural and Civil Engineering 11 (1): 35–46. doi:10.1007/s11709-016-0366-6.
  • Small, G. E., E. Q. Niederluecke, P. Shrestha, B. D. Janke, and J. C. Finlay. 2019. “The Effects of Infiltration-based Stormwater Best Management Practices on the Hydrology and Phosphorus Budget of a Eutrophic Urban Lake.” Land and Reservoir Management 35 (1): 38–50. doi:10.1080/10402381.2018.1514549.
  • Subhashini, W. H. C., G. A. Hewa, and D. Pezzaniti. 2013. Assessing the Ability of Infiltration-based WSUD Systems to Manage Channel-forming Flow Regimes in Greenfield Catchment Developments: A Catchment Scale Investigation. Australia: Modelling and Simulation Society of Australia and New Zealand Inc.
  • Tennakoon, A., and J. R. Argue. 2011. “Managing Urban Regrowth with an at Capacity Stormwater Infrastructure”. Proceedings of the 34th IAHR World Congress and 33rd Hydrology and Water Resources Symposium, Brisbane, Australia, 2720–2727.
  • Tu, M. C., and R. G. Traver. 2019. “Optimal Configuration of an Underdrain Delivery System for a Stormwater Infiltration Trench.” Journal of Irrigation and Drainage Engineering 145 (8): 05019007. doi:10.1061/(ASCE)IR.1943-4774.0001408.
  • Winchester, T. 2010. A Water Quality Comparison of Stormwater Runoff from Surface and Subsurface Drainage Systems. Canada: Patrimoine de l’édition Heritage Branch.
  • Zhang, X., Y. Lei, Y. Yuan, J. Gao, Y. Jiang, Z. Xu, and S. Zhao. 2018. “Enhanced Removal Performance of Cr(VI) by the Core-shell Zeolites/layered Double Hydroxides (Ldhs) Synthesized from Different Metal Compounds in Constructed Rapid Infiltration Systems.” Environmental Science and Pollution Research 25 (10): 9759–9770. doi:10.1007/s11356-018-1303-0.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.