High-resolution hydraulic parameter maps for surface soils in tropical South America
Modern land surface model simulations capture soil profile water movement through the use of soil hydraulics sub-models, but good hydraulic parameterisations are often lacking, especially in the tropics. We present much-improved gridded data sets of hydraulic parameters for surface soil for the crit...
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doaj-34b40adb7323443da04b3f7d43b0962e2020-11-24T23:14:28ZengCopernicus PublicationsGeoscientific Model Development1991-959X1991-96032014-05-017371172310.5194/gmd-7-711-2014High-resolution hydraulic parameter maps for surface soils in tropical South AmericaT. R. Marthews0C. A. Quesada1D. R. Galbraith2Y. Malhi3C. E. Mullins4M. G. Hodnett5I. Dharssi6Environmental Change Institute, School of Geography and the Environment, University of Oxford, Oxford OX1 3QY, UKInstituto Nacional de Pesquisas da Amazônia, 69060-001 Manaus, BrazilSchool of Geography, University of Leeds, Leeds LS2 9JT, UKEnvironmental Change Institute, School of Geography and the Environment, University of Oxford, Oxford OX1 3QY, UK44 Leadervale Rd., Edinburgh EH16 6PA, UKHigher Park, Pennymoor, Tiverton, Devon EX16 8LL, UKBureau of Meteorology, Melbourne 3001, AustraliaModern land surface model simulations capture soil profile water movement through the use of soil hydraulics sub-models, but good hydraulic parameterisations are often lacking, especially in the tropics. We present much-improved gridded data sets of hydraulic parameters for surface soil for the critical area of tropical South America, describing soil profile water movement across the region to 30 cm depth. Optimal hydraulic parameter values are given for the Brooks and Corey, Campbell, van Genuchten–Mualem and van Genuchten–Burdine soil hydraulic models, which are widely used hydraulic sub-models in land surface models. This has been possible through interpolating soil measurements from several sources through the <i>SOTERLAC</i> soil and terrain data base and using the most recent pedotransfer functions (PTFs) derived for South American soils. All soil parameter data layers are provided at 15 arcsec resolution and available for download, this being 20x higher resolution than the best comparable parameter maps available to date. Specific examples are given of the use of PTFs and the importance highlighted of using PTFs that have been locally parameterised and that are not just based on soil texture. We discuss current developments in soil hydraulic modelling and how high-resolution parameter maps such as these can improve the simulation of vegetation development and productivity in land surface models.http://www.geosci-model-dev.net/7/711/2014/gmd-7-711-2014.pdf |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
T. R. Marthews C. A. Quesada D. R. Galbraith Y. Malhi C. E. Mullins M. G. Hodnett I. Dharssi |
spellingShingle |
T. R. Marthews C. A. Quesada D. R. Galbraith Y. Malhi C. E. Mullins M. G. Hodnett I. Dharssi High-resolution hydraulic parameter maps for surface soils in tropical South America Geoscientific Model Development |
author_facet |
T. R. Marthews C. A. Quesada D. R. Galbraith Y. Malhi C. E. Mullins M. G. Hodnett I. Dharssi |
author_sort |
T. R. Marthews |
title |
High-resolution hydraulic parameter maps for surface soils in tropical South America |
title_short |
High-resolution hydraulic parameter maps for surface soils in tropical South America |
title_full |
High-resolution hydraulic parameter maps for surface soils in tropical South America |
title_fullStr |
High-resolution hydraulic parameter maps for surface soils in tropical South America |
title_full_unstemmed |
High-resolution hydraulic parameter maps for surface soils in tropical South America |
title_sort |
high-resolution hydraulic parameter maps for surface soils in tropical south america |
publisher |
Copernicus Publications |
series |
Geoscientific Model Development |
issn |
1991-959X 1991-9603 |
publishDate |
2014-05-01 |
description |
Modern land surface model simulations capture soil profile water movement
through the use of soil hydraulics sub-models, but good hydraulic
parameterisations are often lacking, especially in the tropics. We present
much-improved gridded data sets of hydraulic parameters for surface soil for
the critical area of tropical South America, describing soil profile water
movement across the region to 30 cm depth. Optimal hydraulic parameter
values are given for the Brooks and Corey, Campbell, van Genuchten–Mualem
and van Genuchten–Burdine soil hydraulic models, which are widely used
hydraulic sub-models in land surface models. This has been possible through
interpolating soil measurements from several sources through the <i>SOTERLAC</i> soil and
terrain data base and using the most recent pedotransfer functions (PTFs)
derived for South American soils. All soil parameter data layers are
provided at 15 arcsec resolution and available for download, this being 20x
higher resolution than the best comparable parameter maps available to date.
Specific examples are given of the use of PTFs and the importance
highlighted of using PTFs that have been locally parameterised and that are
not just based on soil texture. We discuss current developments in soil
hydraulic modelling and how high-resolution parameter maps such as these can
improve the simulation of vegetation development and productivity in land
surface models. |
url |
http://www.geosci-model-dev.net/7/711/2014/gmd-7-711-2014.pdf |
work_keys_str_mv |
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