A new stochastic optimization model under modeling uncertainty (SOMUM) and parameter certainty is applied to a practical site located in western Canada. Various groundwater remediation strategies under different significance levels are obtained from the SOMUM model. The impact of modeling uncertainty (proxy-simulator residuals) on optimal remediation strategies is compared to that of parameter uncertainty (arising from physical properties). The results show that the increased remediation cost for mitigating modeling-uncertainty impact would be higher than those from models where the coefficient of variance of input parameters approximates to 40%. This provides new evidence that the modeling uncertainty in proxy-simulator residuals can hardly be ignored; there is thus a need of investigating and mitigating the impact of such uncertainties on groundwater remediation design. This work would be helpful for lowering the risk of system failure due to potential environmental-standard violation when determining optimal groundwater remediation strategies. (C) 2009 Elsevier B.V. All rights reserved.
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Observatoire de Paris, LESIA, CNRS UMR 8109, 92195 Meudon, FranceObservatoire de Paris, LESIA, CNRS UMR 8109, 92195 Meudon, France
Belkacem, K.
Samadi, R.
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Observatoire de Paris, LESIA, CNRS UMR 8109, 92195 Meudon, FranceObservatoire de Paris, LESIA, CNRS UMR 8109, 92195 Meudon, France
Samadi, R.
Goupil, M.J.
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Observatoire de Paris, LESIA, CNRS UMR 8109, 92195 Meudon, FranceObservatoire de Paris, LESIA, CNRS UMR 8109, 92195 Meudon, France
Goupil, M.J.
Kupka, F.
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Max-Planck-Institute for Astrophysics, Karl-Schwarzschild Str. 1, 85741 Garching, GermanyObservatoire de Paris, LESIA, CNRS UMR 8109, 92195 Meudon, France
Kupka, F.
Baudin, F.
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Institut d'Astrophysique Spatiale, CNRS, Université Paris XI UMR 8617, 91405 Orsay Cedex, FranceObservatoire de Paris, LESIA, CNRS UMR 8109, 92195 Meudon, France
Baudin, F.
Astronomy and Astrophysics,
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