The identification of the physical parameters of groundwater flow and transport models is often performed with an inverse problem (IP). In the continuous case, if the IP is properly posed and if enough information is available, the IP admits a unique solution, which however is not stable. In the discrete case the IP often requires the minimization of an objective function, whose convexity is difficult to evaluate and which might have several local minima and be flat over a wide range of values for the model parameters so that the IP is ill conditioned.

Uniqueness and stability of the determination of aquifer properties with inverse problems / M. Giudici, G. Ponzini, G. Parravicini - In: Groudwater 2000 / [a cura di] P.L. Bjerg, P. Engesgaard, T.D. Krom. - [s.l] : A. A. Balkema, 2000. - ISBN 9058091333. - pp. 91-92 (( convegno International Conference on Groundwater Research tenutosi a Kobenahvn nel 2000.

Uniqueness and stability of the determination of aquifer properties with inverse problems

M. Giudici
Primo
;
G. Ponzini
Secondo
;
G. Parravicini
Ultimo
2000

Abstract

The identification of the physical parameters of groundwater flow and transport models is often performed with an inverse problem (IP). In the continuous case, if the IP is properly posed and if enough information is available, the IP admits a unique solution, which however is not stable. In the discrete case the IP often requires the minimization of an objective function, whose convexity is difficult to evaluate and which might have several local minima and be flat over a wide range of values for the model parameters so that the IP is ill conditioned.
aquifer properties; groundwater; modeling; inverse problem
Settore GEO/12 - Oceanografia e Fisica dell'Atmosfera
Settore FIS/06 - Fisica per il Sistema Terra e Il Mezzo Circumterrestre
2000
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/590175
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