Discussion of “Multiobjective Groundwater Remediation System Design Using Coupled Finite-Element Model and Nondominated Sorting Genetic Algorithm II” by Arpita Mondal, T. I. Eldho, and V. V. S. Gurunadha Rao
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VIEW THE ORIGINAL ARTICLEPublication: Journal of Hydrologic Engineering
Volume 16, Issue 8
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References
Chakrabarty, D. (2001). “Identification of unknown groundwater pollution sources and simultaneous parameter estimation using linked optimization-simulation approach” Ph.D. dissertation, Indian Institute of Technology, Kanpur, India.
Deb, K. (2001). Multi-objective optimization using evolutionary algorithms, Wiley, New York.
Singh, T. S., and Chakrabarty, D. (2009). “Significance of remediation time on the optimal remediation design of contaminated aquifers.” Proc., 2nd Int. Conf. on Environmental and Computer Science (ICECS 2009), IEEE, Los Alamitos, CA.
Singh, T. S., and Chakrabarty, D. (2010a). “Chance constrained programming (CCP) for optimal remediation design of contaminated aquifers with flexible remediation time.” Proc., 2010 Int. Conf. on Environmental Science and Development (CESD 2010), World Academic Press, Liverpool, UK.
Singh, T. S., and Chakrabarty, D. (2010b). “Multi-objective optimization for optimal groundwater remediation design and management systems.” Geosci. J., 14(1), 87–97.
Singh, T. S., and Chakrabarty, D. (2011a). “Chance-constrained multi-objective programming for optimal multi-layer aquifer remediation design.” Eng. Optim., 43(4), 417–432.
Singh, T. S., and Chakrabarty, D. (2011b). “Multiobjective optimization of pump-and-treat-based optimal multilayer aquifer remediation design with flexible remediation time.” J. Hydrol. Eng., 16(5), 413–420.
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© 2011 American Society of Civil Engineers.
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Received: May 24, 2010
Accepted: Jun 17, 2010
Published online: Jul 15, 2011
Published in print: Aug 1, 2011
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