Data: Cutting the costs of coastal protection by integrating vegetation in flood defences.
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Contributors
Description
File: levee_crest_height_reduction_per_country_version_July2021.nc
Fields: (1) Crest height reduction m per km along the populated coastline susceptible to flooding (return period = 100 years)
(2) Crest height reduction cost saving per country in million USD2005 PPP along the populated coastline susceptible to flooding (return period = 100 years)
(3) Cost savings as percentage of GDP2005 along the urban populated coastline susceptible to flooding (return period = 100 years)
File: transectdata_version_July2021.nc
Transectdata of vegetated transects within the study area.
Fields:
(1) rps = return period
(2) fid = id of the transects
(3) centroids = coordinates of the transects
(4) inun = (1) in area susceptible to flooding
(5) urban = (1) in urban area, (0) not in urban area
(6) veg_width = derived coastal vegetation belt width along the foreshore
(7) veg_type = derived coastal vegetation type along the foreshore (1: salt marshes, 2: mangroves)
(8) hsig = Offshore significant wave heights (multiple return periods) corresponding to the transects
(9) wave period = Offshore peak wave period (multiple return periods) corresponding to the transects
(10) surge = Extreme water level combination of surge and tide (m +MSL) (multiple return periods)
(11) veg_z0 = elevation at the start of the vegetated zone (m +MSL)
(12) hrms_end_noveg = root mean square wave height at the end of the foreshore (without vegetation) (multiple return periods)
(13) hrms_endveg = root mean square wave height at the end of the foreshore (with vegetation) (multiple return periods)
(14) pdens_15km = population density derived using buffer of 15 kilometre radius
Files
README.txt
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Additional details
Related works
- Is referenced by
- Journal article: 10.1038/s41467-021-26887-4 (DOI)