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Contaminant Transport Model for Unsaturated Soil Using Fuzzy Approach
Authors:J. M. Yan  K. Vairavamoorthy  S. D. Gorantiwar
Affiliation:1Research Scholar, Water, Engineering and Development Centre, Dept. of Civil and Building Engineering, Loughborough Univ., Loughborough, Leics LE11 3TU, U.K.
2Professor, UNESCO-IHE Institute for Water Education, Westvest 7, P.O. Box 3015, 2601 DA, Delft, The Netherlands; formerly, Senior Lecturer, Water, Engineering and Development Centre, Dept. of Civil and Building Engineering, Loughborough Univ., Loughborough, Leics LE11 3TU, U.K. (corresponding author). E-mail: k.vairavamoorthy@unesco-ihe.org
3Associate Professor, Dept. of Irrigation and Drainage Engineering, M.P. Agricultural Univ., Rahuri 413 722, India; presently, Academic Visitor, Water, Engineering and Development Centre, Loughborough Univ., Loughborough, Leics LE11 3TU, U.K.
Abstract:
Contaminant transport in the unsaturated zone is important for managing water resources and assessing the damage due to contamination in the field of irrigation, water management, wastewater management, and urban and agricultural drainage systems. Deterministic modeling which is widely used for contaminant transport is not adequate because it considers model input parameters as well-defined crisp values and hence does not account for uncertainties and imprecision. This paper presents a contaminant transport model based on fuzzy set theory to simulate water flow and contaminant transport in the unsaturated soil zone under surface ponding condition. Among all soil hydraulic parameters that have uncertainty associated with them, saturated hydraulic conductivity was found to be the most sensitive to model outputs. Trapezoidal fuzzy numbers were used to express the uncertainties associated with saturated hydraulic conductivity. The incorporation of uncertainties into contaminant transport model is useful in decision making, as it yields scientifically and practically based estimates of contaminant concentration.
Keywords:Containment  Unsaturated soils  Fuzzy sets  Water pollution  
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