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Modeling Solute Transport by DLA in Soils of Northeastern Egypt.

Hamed, Yasser Ahmed ; Yasuda, Hiroshi ; Persson, Magnus LU ; Berndtsson, Ronny LU orcid and Wang, Xin-Ping (2015) In PLoS ONE 10(3).
Abstract
Arid soils in Egypt display large variability in solute transport properties, causing problems in soil management. To characterize this variability, dye infiltration experiments were conducted on four plots representing three main soil types in northeastern Egypt. The plots represented both cultivated and uncultivated land use. The observed dye patterns displayed a large variability and especially the clay soils indicated a high degree of preferential flow. The loamy sand and sandy soils displayed a more uniform dye distribution indicating more homogeneous soil properties. The observed dye patterns were modeled using a diffusion limited aggregation (DLA) model. The DLA is a random walk model where model parameters can be optimized using... (More)
Arid soils in Egypt display large variability in solute transport properties, causing problems in soil management. To characterize this variability, dye infiltration experiments were conducted on four plots representing three main soil types in northeastern Egypt. The plots represented both cultivated and uncultivated land use. The observed dye patterns displayed a large variability and especially the clay soils indicated a high degree of preferential flow. The loamy sand and sandy soils displayed a more uniform dye distribution indicating more homogeneous soil properties. The observed dye patterns were modeled using a diffusion limited aggregation (DLA) model. The DLA is a random walk model where model parameters can be optimized using genetic algorithms (GA). The DLA model reproduced the observed dye patterns for all soils in an excellent way. The best fit was obtained with a specific combination of directional random walk probabilities Pu, Pd, Pr, and Pl for each plot (correlation 0.97-0.99). To account for soil layers with different hydraulic properties a two layer DLA model was developed. For all plots the Pu (upward random walk probability) was higher for the upper more homogeneous soil layer. The overall results showed that spatial variability resulting from solute transport for the investigated soils can be modeled using a DLA approach. (Less)
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author
; ; ; and
organization
publishing date
type
Contribution to journal
publication status
published
subject
in
PLoS ONE
volume
10
issue
3
article number
e0119943
publisher
Public Library of Science (PLoS)
external identifiers
  • pmid:25790463
  • wos:000351425400119
  • scopus:84925434585
  • pmid:25790463
ISSN
1932-6203
DOI
10.1371/journal.pone.0119943
language
English
LU publication?
yes
id
bc5fabe3-8dfd-490e-89a0-9e1d74876b7e (old id 5258045)
date added to LUP
2016-04-01 15:06:01
date last changed
2023-09-03 23:36:08
@article{bc5fabe3-8dfd-490e-89a0-9e1d74876b7e,
  abstract     = {{Arid soils in Egypt display large variability in solute transport properties, causing problems in soil management. To characterize this variability, dye infiltration experiments were conducted on four plots representing three main soil types in northeastern Egypt. The plots represented both cultivated and uncultivated land use. The observed dye patterns displayed a large variability and especially the clay soils indicated a high degree of preferential flow. The loamy sand and sandy soils displayed a more uniform dye distribution indicating more homogeneous soil properties. The observed dye patterns were modeled using a diffusion limited aggregation (DLA) model. The DLA is a random walk model where model parameters can be optimized using genetic algorithms (GA). The DLA model reproduced the observed dye patterns for all soils in an excellent way. The best fit was obtained with a specific combination of directional random walk probabilities Pu, Pd, Pr, and Pl for each plot (correlation 0.97-0.99). To account for soil layers with different hydraulic properties a two layer DLA model was developed. For all plots the Pu (upward random walk probability) was higher for the upper more homogeneous soil layer. The overall results showed that spatial variability resulting from solute transport for the investigated soils can be modeled using a DLA approach.}},
  author       = {{Hamed, Yasser Ahmed and Yasuda, Hiroshi and Persson, Magnus and Berndtsson, Ronny and Wang, Xin-Ping}},
  issn         = {{1932-6203}},
  language     = {{eng}},
  number       = {{3}},
  publisher    = {{Public Library of Science (PLoS)}},
  series       = {{PLoS ONE}},
  title        = {{Modeling Solute Transport by DLA in Soils of Northeastern Egypt.}},
  url          = {{http://dx.doi.org/10.1371/journal.pone.0119943}},
  doi          = {{10.1371/journal.pone.0119943}},
  volume       = {{10}},
  year         = {{2015}},
}