Hidden levees: Small-scale flood defense on rural coasts
Tài liệu tham khảo
Anisfeld, 2017, Upslope development of a tidal marsh as a function of upland land use, Glob. Change Biol., 23, 755, 10.1111/gcb.13398
Arkema, 2013, Coastal habitats shield people and property from sea-level rise and storms, Nat. Clim. Change, 3, 913, 10.1038/nclimate1944
Auerbach, 2015, Flood risk of natural and embanked landscapes on the Ganges–Brahmaputra tidal delta plain, Nat. Clim. Change, 5, 153, 10.1038/nclimate2472
Bertness, 2002
Blum, 2009, Drowning of the Mississippi Delta due to insufficient sediment supply and global sea-levelrise, Nat. Geosci., 2, 488, 10.1038/ngeo553
Borchert, 2018, Coastal wetland adaptation to sea level rise: quantifying potential for landward migration and coastal squeeze, J. Appl. Ecol., 55, 2876, 10.1111/1365-2664.13169
Brinson, 1995, Multiple states in the sea-level induced transition from terrestrial forest to estuary, Estuaries, 18, 648, 10.2307/1352383
Costanza, 2021, The global value of coastal wetlands for storm protection, Glob. Environ. Change, 70
Danielson, J., Tyler, D. , 2016. Topobathymetric Model for Chesapeake Bay Region - District of Columbia, States of Delaware, Maryland, Pennsylvania, and Virginia, 1859 to 2015. 〈https://topotools.cr.usgs.gov/topobathy_viewer/dwndata.htm〉. (Accessed 29 January 2020).
Dewan, C., Mukherji, A., Buisson, M.C. , 2015. Evolution of Water Management in Coastal Bangladesh: From Temporary Earthen Embankments to Depoliticized Community-managed Polders, 40(3), 401–416. 〈http://Dx.Doi.Org/10.1080/02508060.2015.1025196〉; https://doi.org/10.1080/02508060.2015.1025196.
Doody, 2013, Coastal squeeze and managed realignment in southeast England, does it tell us anything about the future?, Ocean Coast. Manag., 79, 34, 10.1016/j.ocecoaman.2012.05.008
Enwright, 2016, Barriers to and opportunities for landward migration of coastal wetlands with sea-level rise, Front. Ecol. Environ., 14, 307, 10.1002/fee.1282
Gedan, 2009, Centuries of human-driven change in salt marsh ecosystems, Annu. Rev. Mar. Sci., 117, 10.1146/annurev.marine.010908.163930
Gotham, 2020, Antagonisms of adaptation: climate change adaptation measures in New Orleans and New York City, 93
Guimond, 2021, Effects of marsh migration on flooding, saltwater intrusion, and crop yield in coastal agricultural land subject to storm surge inundation, Water Resour. Res., 57, 10.1029/2020WR028326
Haasnoot, 2021, Pathways to coastal retreat, Science, 372, 1287, 10.1126/science.abi6594
Hardie, 2012, Measuring soil salinity, Methods Mol. Biol., 913, 415, 10.1007/978-1-61779-986-0_28
Hinkel, 2018, The ability of societies to adapt to twenty-first-century sea-level rise, Nat. Clim. Change, 8, 570, 10.1038/s41558-018-0176-z
Hussein, 2009, Modeling of sea-level rise and deforestation in submerging coastal ultisols of Chesapeake Bay, Soil Sci. Soc. Am. J., 73, 185, 10.2136/sssaj2006.0436
Kabat, 2005, Climate proofing the Netherlands, Nature, 438, 283, 10.1038/438283a
Kennish, 2001, Coastal salt marsh systems in the U.S.: a review of anthropogenic impacts, J. Coast. Res., 17, 731
Kirwan, 2019, Sea-level driven land conversion and the formation of ghost forests, Nat. Clim. Change, 9, 450, 10.1038/s41558-019-0488-7
Kirwan, 2013, Tidal wetland stability in the face of human impacts and sea-level rise, Nature, 504, 53, 10.1038/nature12856
Kirwan, 2016, Sea level driven marsh expansion in a coupled model of marsh erosion and migration, Geophys. Res. Lett., 43, 4366, 10.1002/2016GL068507
Langston, 2021, The effect of marsh age on ecosystem function in a rapidly transgressing marsh, Ecosystems
Ma, 2014, Rethinking China’s new great wall, Science, 346, 912, 10.1126/science.1257258
Markle, D.G., Taylor, M.S. , 1988. Effectiveness of expedient levee-raising structures: experimental model investigation. Technical Report, U.S. Army Engineer Waterways Experiment Station, U.S. Coastal Engineering Research Center and U.S. Engineer Research and Development Center. 〈https://erdc-library.erdc.dren.mil/jspui/handle/11681/12411〉.
McLeod, 2011, A blueprint for blue carbon: toward an improved understanding of the role of vegetated coastal habitats in sequestering CO2, Front. Ecol. Environ., 9, 552, 10.1890/110004
Narayan, 2016, The effectiveness, costs and coastal protection benefits of natural and nature-based defences, PLoS One, 11, 1, 10.1371/journal.pone.0154735
NOAA Tides & Currents. (n.d.). Datums for 8637689, Yorktown USCG Training Center VA 〈https://tidesandcurrents.noaa.gov/datums.html?datum=NAVD88&units=1&epoch=0&id=8637689&name=Yorktown+USCG+Training+Center&state=VA〉. (Accessed 9 January 2020).
Oppenheimer, 2019, Sea level rise and implications for low-lying islands, coasts and communities
Schieder, 2019, Sea-level driven acceleration in coastal forest retreat, Geology, 47, 1151, 10.1130/G46607.1
Schieder, 2018, Massive upland to wetland conversion compensated for historical marsh loss in Chesapeake Bay, USA, Estuar. Coasts, 41, 940, 10.1007/s12237-017-0336-9
Schinko, 2020, Economy-wide effects of coastal flooding due to sea level rise: a multi-model simultaneous treatment of mitigation, adaptation, and residual impacts, Environ. Res. Commun., 2
Schuerch, 2018, Future response of global coastal wetlands to sea-level rise, Nature, 561, 231, 10.1038/s41586-018-0476-5
Sherren, 2016, Climate adaptation in ‘new world’ cultural landscapes: the case of Bay of Fundy agricultural dykelands (Nova Scotia, Canada), Land Use Policy, 51, 267, 10.1016/j.landusepol.2015.11.018
Temmerman, 2015, Building land with a rising sea, Science, 349, 588, 10.1126/science.aac8312
Torio, 2013, Assessing coastal squeeze of tidal wetlands, J. Coast. Res., 29, 1049, 10.2112/JCOASTRES-D-12-00162.1
Tully, 2019, The invisible flood: the chemistry, ecology, and social implications of coastal saltwater intrusion, BioScience, 69, 368, 10.1093/biosci/biz027
US Army Corps of Engineers
Van Dolah, 2020, Marsh migration, climate change, and coastal resilience: human dimensions considerations for a fair path forward, Wetlands, 40, 1751, 10.1007/s13157-020-01388-0
van Proosdij, 2013, Development and application of a geo-temporal atlas for climate change adaptation in Bay of Fundy Dykelands, J. Coast. Res., 65, 1069, 10.2112/SI65-181.1
White, 2021, Climate change driving widespread loss of coastal forested wetlands throughout the North American Coastal Plain, Ecosystems