Exploring the sensitivity on a soil area-slope-grading relationship to changes in process parameters using a pedogenesis model
This paper generalises the physical dependence of the relationship between contributing area, local slope, and the surface soil grading using a pedogenesis model and allows an exploration of soilscape self-organisation. A parametric study was carried out using different parent materials, erosion, an...
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doaj-924e2c99ef9f4430bcd0dc8b91effd822020-11-25T00:12:36ZengCopernicus PublicationsEarth Surface Dynamics2196-63112196-632X2016-08-014360762510.5194/esurf-4-607-2016Exploring the sensitivity on a soil area-slope-grading relationship to changes in process parameters using a pedogenesis modelW. D. D. P. Welivitiya0G. R. Willgoose1G. R. Hancock2S. Cohen3School of Engineering, The University of Newcastle, Callaghan, 2308, AustraliaSchool of Engineering, The University of Newcastle, Callaghan, 2308, AustraliaSchool of Environment and Life Sciences, The University of Newcastle, Callaghan, 2308, AustraliaDepartment of Geography, University of Alabama, P.O. Box 870322, Tuscaloosa, Alabama 35487, USAThis paper generalises the physical dependence of the relationship between contributing area, local slope, and the surface soil grading using a pedogenesis model and allows an exploration of soilscape self-organisation. A parametric study was carried out using different parent materials, erosion, and weathering mechanisms. These simulations confirmed the generality of the area-slope-<i>d</i><sub>50</sub> relationship. The relationship is also true for other statistics of soil grading (e.g. <i>d</i><sub>10</sub>,<i>d</i><sub>90</sub>) and robust for different depths within the profile. For small area-slope regimes (i.e. hillslopes with small areas and/or slopes) only the smallest particles can be mobilised by erosion and the area-slope-<i>d</i><sub>50</sub> relationship appears to reflect the erosion model and its Shield's Stress threshold. For higher area-slope regimes, total mobilization of the entire soil grading occurs and self-organisation reflects the relative entrainment of different size fractions. Occasionally the interaction between the in-profile weathering and surface erosion draws the bedrock to the surface and forms a bedrock outcrop. The study also shows the influence on different depth-dependent in-profile weathering functions in the formation of the equilibrium soil profile and the grading characteristics of the soil within the profile. We outline the potential of this new model and its ability to numerically explore soil and landscape properties.http://www.earth-surf-dynam.net/4/607/2016/esurf-4-607-2016.pdf |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
W. D. D. P. Welivitiya G. R. Willgoose G. R. Hancock S. Cohen |
spellingShingle |
W. D. D. P. Welivitiya G. R. Willgoose G. R. Hancock S. Cohen Exploring the sensitivity on a soil area-slope-grading relationship to changes in process parameters using a pedogenesis model Earth Surface Dynamics |
author_facet |
W. D. D. P. Welivitiya G. R. Willgoose G. R. Hancock S. Cohen |
author_sort |
W. D. D. P. Welivitiya |
title |
Exploring the sensitivity on a soil area-slope-grading relationship to
changes in process parameters using a pedogenesis model |
title_short |
Exploring the sensitivity on a soil area-slope-grading relationship to
changes in process parameters using a pedogenesis model |
title_full |
Exploring the sensitivity on a soil area-slope-grading relationship to
changes in process parameters using a pedogenesis model |
title_fullStr |
Exploring the sensitivity on a soil area-slope-grading relationship to
changes in process parameters using a pedogenesis model |
title_full_unstemmed |
Exploring the sensitivity on a soil area-slope-grading relationship to
changes in process parameters using a pedogenesis model |
title_sort |
exploring the sensitivity on a soil area-slope-grading relationship to
changes in process parameters using a pedogenesis model |
publisher |
Copernicus Publications |
series |
Earth Surface Dynamics |
issn |
2196-6311 2196-632X |
publishDate |
2016-08-01 |
description |
This paper generalises the physical dependence of the relationship between
contributing area, local slope, and the surface soil grading using a
pedogenesis model and allows an exploration of soilscape self-organisation. A
parametric study was carried out using different parent materials, erosion,
and weathering mechanisms. These simulations confirmed the generality of the
area-slope-<i>d</i><sub>50</sub> relationship. The relationship is also true for other
statistics of soil grading (e.g. <i>d</i><sub>10</sub>,<i>d</i><sub>90</sub>) and robust for different
depths within the profile. For small area-slope regimes (i.e. hillslopes with
small areas and/or slopes) only the smallest particles can be mobilised by
erosion and the area-slope-<i>d</i><sub>50</sub> relationship appears to reflect the
erosion model and its Shield's Stress threshold. For higher area-slope
regimes, total mobilization of the entire soil grading occurs and
self-organisation reflects the relative entrainment of different size
fractions. Occasionally the interaction between the in-profile weathering and
surface erosion draws the bedrock to the surface and forms a bedrock outcrop.
The study also shows the influence on different depth-dependent in-profile
weathering functions in the formation of the equilibrium soil profile and the
grading characteristics of the soil within the profile. We outline the
potential of this new model and its ability to numerically explore soil and
landscape properties. |
url |
http://www.earth-surf-dynam.net/4/607/2016/esurf-4-607-2016.pdf |
work_keys_str_mv |
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