HR: 0800h
AN: H41E-0462 [Abstracts]
TI: Sequential Pumping Tests at a Well Field, Montalto Uffugo Scalo, Italy
AU: * Straface, S
EM: straface@dds.unical.it
AF: University of Calabria, Soil Conservation Department, Rende, CS 87036
Italy
AU: Yeh, T J
EM: yeh@hwr.arizona.edu
AF: University of Arizona, Department of Hydrology and Water Resources,
John Harshbarger Building
1133 E. North Campus Drive
, Tucson, AZ 85750
United States
AU: Hao, Y
EM: Haoyhong@yahoo.com
AF: Shanxi University, School of Environment and Resources, Taiyuan, SHX 030006
China
AU: Troisi, S
EM: straface@dds.unical.it
AF: University of Calabria, Soil Conservation Department, Rende, CS 87036
Italy
AB:
The aim of the present work is to apply a recently developed hydraulic tomography inverse model to characterize heterogeneous
aquifer in Montalto Uffugo Scalo, Italy using a sequential pumping test. The well field consists of six wells at different
locations. A pumping test was initiated at a selected well and well hydrographs at the other wells were collected. The test
was repeated using different wells as the pumping well and observation wells. As a result, thirty well hydrographs from the
six pumping tests were collected. First, we examined the well hydrographs; each well hydrograph clearly indicates effects
of lower permeability zones at different stages of each pumping test. Subsequently, we analyzed the well hydrographs using
the Theis and Jacob methods to show the variability of the transmissivity and storage coefficient estimates. A
distance-drawdown method then was used to estimate the equivalent homogeneous transmissivity and storage coefficients.
Finally, we used a geostatistically based estimation algorithm, the Successive Linear Estimator, to estimate spatial
distributions of transmissivity and storage coefficients. Results of the analysis are then discussed.
DE: 1829 Groundwater hydrology
DE: 1848 Monitoring networks
DE: 1869 Stochastic hydrology
DE: 1895 Instruments and techniques: monitoring
SC: Hydrology [H]
MN: Fall Meeting 2005