Modelling the effect of hydraulic conductivity on one dimensional contaminant transport in RBF system
Riverbank filtration (RBF) system is a surface water technology that is based on the natural treatment of filtration instead of the use of chemicals, to pretreat surface water and provides public water supplies. Hydraulic conductivity value is one of the significant factors affecting the water quali...
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my.utm.865162020-09-30T08:41:19Z http://eprints.utm.my/id/eprint/86516/ Modelling the effect of hydraulic conductivity on one dimensional contaminant transport in RBF system Mustafa, Shaymaa Abdul Aziz, Zainal Bahar, Arifah Shamsuddin, Mohd. Khairul Nizar Q Science (General) Riverbank filtration (RBF) system is a surface water technology that is based on the natural treatment of filtration instead of the use of chemicals, to pretreat surface water and provides public water supplies. Hydraulic conductivity value is one of the significant factors affecting the water quality in RBF systems. In this article, an analytical modelling is developed to investigate the effect of this parameter on one dimensional contaminant transport in RBF system. The model is solved by using Green’s function approach. The model is applied for the first RBF system conducted in Malaysia. Generally, the results show that increasing the hydraulic conductivity value lead to an increase in contaminant concentration in pumping well area. Penerbit UTM Press 2018 Article PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/86516/1/ShaymaaMustafa2018_ModellingtheEffectofHydraulicConductivityonOne.pdf Mustafa, Shaymaa and Abdul Aziz, Zainal and Bahar, Arifah and Shamsuddin, Mohd. Khairul Nizar (2018) Modelling the effect of hydraulic conductivity on one dimensional contaminant transport in RBF system. Matematika, 34 (2). pp. 261-269. ISSN 0127-9602 http://dx.doi.org/10.11113/matematika.v34.n2.1044 DOI:10.11113/matematika.v34.n2.1044 |
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Q Science (General) Mustafa, Shaymaa Abdul Aziz, Zainal Bahar, Arifah Shamsuddin, Mohd. Khairul Nizar Modelling the effect of hydraulic conductivity on one dimensional contaminant transport in RBF system |
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Riverbank filtration (RBF) system is a surface water technology that is based on the natural treatment of filtration instead of the use of chemicals, to pretreat surface water and provides public water supplies. Hydraulic conductivity value is one of the significant factors affecting the water quality in RBF systems.
In this article, an analytical modelling is developed to investigate the effect of this parameter on one dimensional contaminant transport in RBF system. The model is solved by using Green’s function approach. The model is applied for the first RBF system conducted in Malaysia. Generally, the results show that increasing the hydraulic conductivity value lead to an increase in contaminant concentration in
pumping well area. |
format |
Article |
author |
Mustafa, Shaymaa Abdul Aziz, Zainal Bahar, Arifah Shamsuddin, Mohd. Khairul Nizar |
author_facet |
Mustafa, Shaymaa Abdul Aziz, Zainal Bahar, Arifah Shamsuddin, Mohd. Khairul Nizar |
author_sort |
Mustafa, Shaymaa |
title |
Modelling the effect of hydraulic conductivity on one dimensional contaminant transport in RBF system |
title_short |
Modelling the effect of hydraulic conductivity on one dimensional contaminant transport in RBF system |
title_full |
Modelling the effect of hydraulic conductivity on one dimensional contaminant transport in RBF system |
title_fullStr |
Modelling the effect of hydraulic conductivity on one dimensional contaminant transport in RBF system |
title_full_unstemmed |
Modelling the effect of hydraulic conductivity on one dimensional contaminant transport in RBF system |
title_sort |
modelling the effect of hydraulic conductivity on one dimensional contaminant transport in rbf system |
publisher |
Penerbit UTM Press |
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2018 |
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http://eprints.utm.my/id/eprint/86516/1/ShaymaaMustafa2018_ModellingtheEffectofHydraulicConductivityonOne.pdf http://eprints.utm.my/id/eprint/86516/ http://dx.doi.org/10.11113/matematika.v34.n2.1044 |
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13.209306 |