Combining the Morris Method and Multiple Error Metrics to Assess Aquifer Characteristics and Recharge in the Lower Ticino Basin, in Italy
Emily A. Baker, Alessandro Cappato, Sara Todeschini, Lorenzo, Tamellini, Giancarlo Sangalli, Alessandro Reali, Sauro Manenti

TL;DR
This study integrates the Morris Method with multiple error metrics to evaluate and optimize groundwater model parameters, specifically aquifer properties and recharge, in Italy's Lower Ticino Basin, enhancing model reliability.
Contribution
It introduces a combined approach using the Morris Method and multiple error metrics for comprehensive sensitivity analysis and parameter optimization in groundwater modeling.
Findings
Identified key parameters influencing groundwater flow.
Estimated aquifer hydraulic conductivity and recharge rates.
Revealed high recharge contribution from rice field irrigation.
Abstract
Groundwater flow model accuracy is often limited by the uncertainty in model parameters that characterize aquifer properties and aquifer recharge. Aquifer properties such as hydraulic conductivity can have an uncertainty spanning orders of magnitude. Meanwhile, parameters used to configure model boundary conditions can introduce additional uncertainty. In this study, the Morris Method sensitivity analysis is performed on multiple quantities of interest to assess the sensitivity of a steady-state groundwater flow model to uncertain input parameters. The Morris Method determines which of these parameters are less influential on model outputs. Uninfluential parameters can be set constant during subsequent parameter optimization to reduce computational expense. Combining multiple quantities of interest (e.g., RMSE, groundwater fluxes) when performing both the Morris Method and parameter…
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Taxonomy
TopicsGroundwater flow and contamination studies · Soil and Unsaturated Flow · Soil Moisture and Remote Sensing
