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Flood-resilient urban design based on the indigenous landscape in the city of Can Tho, Vietnam

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Abstract

Natural conditions and indigenous culture are fundamental factors creating the hydrological landscape system of the Vietnamese Mekong Delta. A study of the indigenous landscape is critical to understanding the interaction between human activities and natural processes, thereby enhancing the delta’s ability to cope with climate change and to control floods. This paper uses a case study of Can Tho City (CTC) to analyze the spatial distribution pattern of the local landscape system and explores how indigenous knowledge contributes to the sustainability of this landscape. The outcomes show (1) the complexity of balancing territorial organization and agriculture needs and (2) the combination between these two factors and local knowledge of flood resilience making it possible to preserve a landscape system concerning complex hydrological dynamics, in the downstream section of the Mekong River Basin. This paper argues that knowledge of indigenous agriculture cultivation and the functioning of local landscape system should be respected and used in the process of urban design to maintain sustainability over time. A scenario is discussed to emphasize the balance needed between a human-made environment and natural hydrodynamics to preserve the local landscape system and thereby enhance urban resilience to floods and climate change.

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References

  • Abdulkareem M, Elkadi H (2018) From engineering to evolutionary, an overarching approach in identifying the resilience of urban design to flood. International journal of disaster risk reduction 28:176–190

    Article  Google Scholar 

  • Adger WN, Hughes TP, Folke C, Carpenter SR, Rockström J (2005) Social-ecological resilience to coastal disasters. Science 309(5737):1036–1039

    Article  CAS  Google Scholar 

  • Andersen TK, Marshall Shepherd J (2013) Floods in a changing climate. Geogr Compass 7(2):95–115

    Article  Google Scholar 

  • Batica, J. (2015). Methodology for flood resilience assessment in urban environments and mitigation strategy development. Université Nice Sophia Antipolis

  • Berkes F (2007) Understanding uncertainty and reducing vulnerability: lessons from resilience thinking. Nat Hazards 41(2):283–295

    Article  Google Scholar 

  • Bertilsson, L., Wiklund, K., de Moura Tebaldi, I., Rezende, O. M., Veról, A. P., & Miguez, M. G. (2018). Urban flood resilience–a multi-criteria index to integrate flood resilience into urban planning. J Hydrol

  • Colten CE, Sumpter AR (2009) Social memory and resilience in New Orleans. Nat Hazards 48(3):355–364

    Article  Google Scholar 

  • Davoudi S, Shaw K, Haider LJ, Quinlan AE, Peterson GD, Wilkinson C et al (2012) Resilience: a bridging concept or a dead end?“Reframing” resilience: challenges for planning theory and practice interacting traps: resilience assessment of a pasture management system in Northern Afghanistan urban resilience: what does it mean in planning practice? Resilience as a useful concept for climate change adaptation? The politics of resilience for planning: a cautionary note: edited by Simin Davoudi and Libby Porter. Planning theory & practice 13(2):299–333

    Article  Google Scholar 

  • De Bruijn K (2004) Resilience indicators for flood risk management systems of lowland rivers. International Journal of River Basin Management 2(3):199–210

    Article  Google Scholar 

  • De Nijs A, Shannon K (2010) Controlled landscapes and (re) designed nature. Climate change knowledge and practices in the Mekong Delta, the case of Cantho. The Production, Use and Dissemination of Urban Knowledge in Cities of the South N-AERUS XI. KULeuven, ULB, ULG, Brussels, Belgium, 487-502

  • Folke C (2003) Freshwater for resilience: a shift in thinking. Philosophical Transactions of the Royal Society B: Biological Sciences 358(1440):2027–2036

    Article  Google Scholar 

  • Folke C (2006) Resilience: the emergence of a perspective for social–ecological systems analyses. Glob Environ Chang 16(3):253–267

    Article  Google Scholar 

  • GSO. (2016). Retrieved from 2016 Population and Housing Census, Vietnam. Retrieved from http://www.gso.gov.vn

  • Gunderson, L. H. (2001). Panarchy: understanding transformations in human and natural systems: island press

  • Gurnell A, Lee M, Souch C (2007) Urban rivers: hydrology, geomorphology, ecology and opportunities for change. Geogr Compass 1(5):1118–1137

    Article  Google Scholar 

  • Holling CS (1973) Resilience and stability of ecological systems. Annu Rev Ecol Syst 4(1):1–23

    Article  Google Scholar 

  • Holling CS (1996) Engineering resilience versus ecological resilience. Engineering within ecological constraints 31(1996):32

    Google Scholar 

  • Huong H, Pathirana A (2013) Urbanization and climate change impacts on future urban flooding in Can Tho city, Vietnam. Hydrol Earth Syst Sci 17(1):379–394

    Article  Google Scholar 

  • Jia H, Ma H, Wei M (2011) Urban wetland planning: a case study in the Beijing central region. Ecol Complex 8(2):213–221

    Article  Google Scholar 

  • Johannessen Å, Wamsler C (2017) What does resilience mean for urban water services? Ecol Soc 22(1)

  • Käkönen M (2008) Mekong Delta at the crossroads: more control or adaptation? AMBIO: A Journal of the Human Environment 37(3):205–212

    Article  Google Scholar 

  • Klein RJ, Smit MJ, Goosen H, Hulsbergen CH (1998) Resilience and vulnerability: coastal dynamics or Dutch dikes? Geogr J:259–268

  • Le Anh Tuan CTH, Miller F, Sinh BT (2007) Flood and salinity management in the Mekong Delta, Vietnam. Bangkok/Sustainable Mekong Research Network (Sumernet).–2007.–Р, 61

  • Le T (2013) Flood adaptive cities: towards climate change adaption and urban development in the Mekong Delta

  • Lennon M, Scott M, O'Neill E (2014) Urban design and adapting to flood risk: the role of green infrastructure. J Urban Des 19(5):745–758

    Article  Google Scholar 

  • Leopold LB (1994) Flood hydrology and the floodplain. Journal of Contemporary Water Research and Education 95(1):2

    Google Scholar 

  • Leopold LB (2011) Flood hydrology and the floodplain. Journal of Contemporary Water Research & Education 1

  • Liao K-H (2012) A theory on urban resilience to floods—a basis for alternative planning practices. Ecol Soc, 17(4)

  • Liao K-H (2014) From flood control to flood adaptation: a case study on the lower Green River Valley and the City of Kent in King County, Washington. Nat Hazards 71(1):723–750

    Article  Google Scholar 

  • Liao K-H, Le TA, Van Nguyen K (2016) Urban design principles for flood resilience: learning from the ecological wisdom of living with floods in the Vietnamese Mekong Delta. Landsc Urban Plan 155:69–78

    Article  Google Scholar 

  • Liu W, Chen W, Peng C (2014) Assessing the effectiveness of green infrastructures on urban flooding reduction: a community scale study. Ecol Model 291:6–14

    Article  Google Scholar 

  • Meerow S, Newell JP, Stults M (2016) Defining urban resilience: a review. Landsc Urban Plan 147:38–49

    Article  Google Scholar 

  • Miguez MG, Veról AP (2017) A catchment scale integrated flood resilience index to support decision making in urban flood control design. Environment and Planning B: Urban Analytics and City Science 44(5):925–946

    Google Scholar 

  • MONRE (2012) Updated climate change scenarios for Vietnam. Ministry of Environment and Natural Resources, Hanoi

    Google Scholar 

  • Nguyen HH, Dargusch P, Moss P (2016) A review of the drivers of 200 years of wetland degradation in the Mekong Delta of Vietnam. Reg Environ Chang 16(8):2303–2315

    Article  Google Scholar 

  • Nguyen VL, Yuning C (2018) Urban landscape design adaption to flood risk: a case study in can Tho City, Vietnam. Environment and Urbanization ASIA

  • Nienhuis P, Leuven R (2001) River restoration and flood protection: controversy or synergism? Hydrobiologia 444(1–3):85–99

    Article  Google Scholar 

  • Parker D (2000) Introduction to floods and flood management. Floods 1:3–39

    Google Scholar 

  • Shannon K (2009) Landscape as urban structure: the case of Cantho, Vietnam. Landscape–Great Idea! X-LArch III, 54

  • Shannon K, De Nijs, Annelies. (2011). Forming Cantho’s as Found Canal landscape. Nordic Journal of Architectural Research

  • Shannon K, Meulder BD (2012) Kelly Shannon, Bruno de Meulder. Water Urbanism. Topography-based masterplan for the Vietnamese city of Cantho, Mekong Delta. D.W.Calwey

  • Shannon S (2010) Structuring emerging urbanism: interplays of infrastructure and landscape in Cantho (Vietnam). Jovis

  • Shannon S, De Meulder B, De Nijs A (2011) From Above/From Below: The Case of Cantho, Vietnam. New Geographies, 4(accepted)

  • SIURP (2013) Proposed revision of Cantho’s 2030 master plan, Cantho

  • Solomon S, Qin D, Manning M, Chen Z, Marquis M, Averyt KB, … Miller HL (2007) Contribution of working group I to the fourth assessment report of the intergovernmental panel on climate change, 2007. In: Cambridge University Press, Cambridge

  • Son N-T, Thanh B-X (2018) Decadal assessment of urban sprawl and its effects on local temperature using Landsat data in Cantho city, Vietnam. Sustain Cities Soc 36:81–91

    Article  Google Scholar 

  • Sutton-Grier AE, Wowk K, Bamford H (2015) Future of our coasts: the potential for natural and hybrid infrastructure to enhance the resilience of our coastal communities, economies and ecosystems. Environ Sci Pol 51:137–148

    Article  Google Scholar 

  • Tabacchi E, Lambs L, Guilloy H, Planty-Tabacchi AM, Muller E, Decamps H (2000) Impacts of riparian vegetation on hydrological processes. Hydrol Process 14(16–17):2959–2976

    Article  Google Scholar 

  • Thy PTM, Raghavan V, Pawarr N (2010) Urban expansion of Can Tho city, Vietnam: a study based on multi-temporal satellite images. Geoinformatics 21(3):147–160

    Article  Google Scholar 

  • Trogrlić RŠ, Rijke J, Dolman N, Zevenbergen C (2018) Rebuild by Design in Hoboken: a design competition as a means for achieving flood resilience of urban areas through the implementation of green infrastructure. Water 10(5):553

    Article  Google Scholar 

  • Vietnam-Netherlands Cooperation. (2011). Towards a Mekong Delta plan. Synthesis of Water Sector Assessment. Retrieved from

  • Xiang W-N (2014) Doing real and permanent good in landscape and urban planning: ecological wisdom for urban sustainability. Landscape and Urban Planning(121), 65-69

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Correspondence to Yuning Cheng.

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Van Long, N., Cheng, Y. & Le, T.D.N. Flood-resilient urban design based on the indigenous landscape in the city of Can Tho, Vietnam. Urban Ecosyst 23, 675–687 (2020). https://doi.org/10.1007/s11252-020-00941-3

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