Hydraulic Parameters Sensitivity Analysis of Porous Media at Inverse Solution of Bromide Transport

Simulation of water and salt transfer in soil is very effective in managing optimal water and fertilizer use in the field. In this study, the HYDRUS-1D model was used to simulate the transfer of water and bromide in a laboratory column of soil with clay loam texture. Soil hydraulic parameters (inclu...

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Main Authors: F. Ansari samani, S. H. Tabatabaei, F. Abbasi, E. Alaei
Format: Article
Language:fas
Published: Isfahan University of Technology 2019-12-01
Series:علوم آب و خاک
Subjects:
Online Access:http://jstnar.iut.ac.ir/article-1-3731-en.html
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spelling doaj-1eec8e9b80f14133b59e0ac67bb4e4362021-04-20T08:18:13ZfasIsfahan University of Technology علوم آب و خاک2476-35942476-55542019-12-01233355366Hydraulic Parameters Sensitivity Analysis of Porous Media at Inverse Solution of Bromide TransportF. Ansari samani0S. H. Tabatabaei1F. Abbasi2E. Alaei3 1- Department of Water Engineering, Faculty of Agriculture, Shahrekord University, Shahrekord, Iran. 1- Department of Water Engineering, Faculty of Agriculture, Shahrekord University, Shahrekord, Iran. 2- Agricultural Engineering Research Institute, Agricultural Research, Education and Extension Organization, Karaj, Iran. 3- Environmental and Biotechnology Department, Research Institute of Petroleum Industry, Tehran, Iran. Simulation of water and salt transfer in soil is very effective in managing optimal water and fertilizer use in the field. In this study, the HYDRUS-1D model was used to simulate the transfer of water and bromide in a laboratory column of soil with clay loam texture. Soil hydraulic parameters (including air entry point) α, (saturated hydraulic conductivity) ks, (residual moisture content) θr (saturation moisture content) θs, (pore and particle joint parameter) l (parameter of moisture curve shape) n through measurement and using Retc software was obtained Solubility transfer parameters including difiusion coefficient and actual velocity were estimated using soil hydraulic parameters and bromide concentration data by reverse modeling method. According to the target coefficients, the sensitivity analysis of the physical model was performed .The results showed that the correlation coefficient of observation and simulation bromide concentration in optimal mode was 0.84%. accordingly, the diffusion coefficient was estimated to be 4.9 cm. based on the results of the sensitivity analysis, the saturation hydraulic conductivity had the greatest effect on the variation of this parameter, so that the amount sensitivity coefficient of this parameter was 2.64 The RMSE coefficient with a value of 0.04 was the lowest and ME coefficient with the value of -0.0001 had the most parameter variations.http://jstnar.iut.ac.ir/article-1-3731-en.htmldispersionsimulationbromidehydrus
collection DOAJ
language fas
format Article
sources DOAJ
author F. Ansari samani
S. H. Tabatabaei
F. Abbasi
E. Alaei
spellingShingle F. Ansari samani
S. H. Tabatabaei
F. Abbasi
E. Alaei
Hydraulic Parameters Sensitivity Analysis of Porous Media at Inverse Solution of Bromide Transport
علوم آب و خاک
dispersion
simulation
bromide
hydrus
author_facet F. Ansari samani
S. H. Tabatabaei
F. Abbasi
E. Alaei
author_sort F. Ansari samani
title Hydraulic Parameters Sensitivity Analysis of Porous Media at Inverse Solution of Bromide Transport
title_short Hydraulic Parameters Sensitivity Analysis of Porous Media at Inverse Solution of Bromide Transport
title_full Hydraulic Parameters Sensitivity Analysis of Porous Media at Inverse Solution of Bromide Transport
title_fullStr Hydraulic Parameters Sensitivity Analysis of Porous Media at Inverse Solution of Bromide Transport
title_full_unstemmed Hydraulic Parameters Sensitivity Analysis of Porous Media at Inverse Solution of Bromide Transport
title_sort hydraulic parameters sensitivity analysis of porous media at inverse solution of bromide transport
publisher Isfahan University of Technology
series علوم آب و خاک
issn 2476-3594
2476-5554
publishDate 2019-12-01
description Simulation of water and salt transfer in soil is very effective in managing optimal water and fertilizer use in the field. In this study, the HYDRUS-1D model was used to simulate the transfer of water and bromide in a laboratory column of soil with clay loam texture. Soil hydraulic parameters (including air entry point) α, (saturated hydraulic conductivity) ks, (residual moisture content) θr (saturation moisture content) θs, (pore and particle joint parameter) l (parameter of moisture curve shape) n through measurement and using Retc software was obtained Solubility transfer parameters including difiusion coefficient and actual velocity were estimated using soil hydraulic parameters and bromide concentration data by reverse modeling method. According to the target coefficients, the sensitivity analysis of the physical model was performed .The results showed that the correlation coefficient of observation and simulation bromide concentration in optimal mode was 0.84%. accordingly, the diffusion coefficient was estimated to be 4.9 cm. based on the results of the sensitivity analysis, the saturation hydraulic conductivity had the greatest effect on the variation of this parameter, so that the amount sensitivity coefficient of this parameter was 2.64 The RMSE coefficient with a value of 0.04 was the lowest and ME coefficient with the value of -0.0001 had the most parameter variations.
topic dispersion
simulation
bromide
hydrus
url http://jstnar.iut.ac.ir/article-1-3731-en.html
work_keys_str_mv AT fansarisamani hydraulicparameterssensitivityanalysisofporousmediaatinversesolutionofbromidetransport
AT shtabatabaei hydraulicparameterssensitivityanalysisofporousmediaatinversesolutionofbromidetransport
AT fabbasi hydraulicparameterssensitivityanalysisofporousmediaatinversesolutionofbromidetransport
AT ealaei hydraulicparameterssensitivityanalysisofporousmediaatinversesolutionofbromidetransport
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