DocumentCode :
300635
Title :
A multi-resolution approach for imaging hydraulic conductivity
Author :
Daniel, M. ; Willsky, A. ; McLaughlin, D. ; Rossi, D.
Author_Institution :
MIT, Cambridge, MA, USA
Volume :
1
fYear :
1995
fDate :
23-26 Oct 1995
Firstpage :
637
Abstract :
Heterogeneities of hydraulic conductivity across multiple spatial scales can significantly affect the flow of groundwater, yet the sparsity of subsurface observations does not allow accurate reconstruction at all such scales. Instead, a common approach is to estimate an effective parameter which predicts large scale variations in flow. We build a new framework upon maximum a posteriori inversions to directly address the problems of scale. This framework consists of (1) a fractal prior model for conductivity which is an autoregressive (AR) process evolving from coarse to fine scale, and (2) a measurement model in which each observation is well-approximated by a linear functional of the AR process at some scale. This framework efficiently incorporates multiple measurement sources, which consist of point measurements of hydraulic conductivity and a piezometric head. The multi-resolution framework produces a conductivity estimate with spatially varying resolution tailored to the measurement sampling geometry
Keywords :
autoregressive processes; geophysical signal processing; groundwater; hydrological techniques; image reconstruction; image resolution; maximum likelihood estimation; AR process; autoregressive process; groundwater flow; hydraulic conductivity imaging; large scale variations prediction; linear functional; maximum a posteriori inversions; measurement model; measurement sampling geometry; multiple measurement sources; multiple spatial scales; multiresolution approach; parameter estimation; piezometric head; point measurements; spatially varying resolution; subsurface observations; Conductivity measurement; Electrostatics; Equations; Head; Hydrologic measurements; Image reconstruction; Inverse problems; Large-scale systems; Permittivity measurement; Pollution measurement;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Image Processing, 1995. Proceedings., International Conference on
Conference_Location :
Washington, DC
Print_ISBN :
0-8186-7310-9
Type :
conf
DOI :
10.1109/ICIP.1995.531447
Filename :
531447
Link To Document :
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