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Please use this identifier to cite or link to this item:
http://hdl.handle.net/2328/26362
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| Title: | Assessment of conceptual model uncertainty for the regional aquifer Pampa del Tamarugal – North Chile |
| Authors: | Rojas, R Batelaan, Okke Feyen, L Dassargues, Alain |
| Keywords: | Chile Aquifers Geology Groundwater |
| Issue Date: | 2010 |
| Publisher: | Copernicus Publications / European Geosciences Union |
| Citation: | Rojas, R., Batelaan, O., Feyen, L. and Dassargues, A., 2010. Assessment of conceptual model uncertainty for the regional aquifer Pampa del Tamarugal – North Chile. Hydrology and Earth System Sciences, 14, 171-192. |
| Abstract: | In this work we assess the uncertainty in modelling
the groundwater flow for the Pampa del Tamarugal
Aquifer (PTA) – North Chile using a novel and fully integrated
multi-model approach aimed at explicitly accounting
for uncertainties arising from the definition of alternative
conceptual models. The approach integrates the Generalized
Likelihood Uncertainty Estimation (GLUE) and Bayesian
Model Averaging (BMA) methods. For each member of an
ensemble M of potential conceptualizations, model weights
used in BMA for multi-model aggregation are obtained from
GLUE-based likelihood values. These model weights are
based on model performance, thus, reflecting how well a conceptualization
reproduces an observed dataset D. GLUE-based
cumulative predictive distributions for each member
of M are then aggregated obtaining predictive distributions
accounting for conceptual model uncertainties. For the PTA
we propose an ensemble of eight alternative conceptualizations
covering all major features of groundwater flow models
independently developed in past studies and including two
recharge mechanisms which have been source of debate for
several years. Results showed that accounting for heterogeneities
in the hydraulic conductivity field (a) reduced the
uncertainty in the estimations of parameters and state variables,
and (b) increased the corresponding model weights
used for multi-model aggregation. This was more noticeable
when the hydraulic conductivity field was conditioned
on available hydraulic conductivity measurements. Contribution of conceptual model uncertainty to the predictive uncertainty
varied between 6% and 64% for ground water head
estimations and between 16% and 79% for ground water flow
estimations. These results clearly illustrate the relevance of
conceptual model uncertainty. |
| URI: | http://hdl.handle.net/2328/26362 |
| ISSN: | 1027-5606 |
| Appears in Collections: | School of the Environment - Collected Works
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