HR: 1340h
AN: H33E-1430 [Abstracts]
TI: Fractal Fluctuations of Groundwater Levels: Numerical Simulations
AU: * Yang, X
EM: xiaoying-yang@uiowa.edu
AF: Dept. of Geoscience, Univ. of Iowa, Iowa City, IA 52242
AU: Li, Z
EM: zhongwei-li@uiowa.edu
AF: Dept. of Geoscience, Univ. of Iowa, Iowa City, IA 52242
AU: Zhang, Y
EM: you-kuan-zhang@uiowa.edu
AF: Dept. of Geoscience/IIHR, Univ. of Iowa
121 TH, Iowa City, IA 52242
AB:
Numerical simulations were carried out to study temporal variations and scaling of the water table fluctuations in one- and
two-dimensional unconfined heterogeneous aquifers under spatially and temporally varied groundwater recharge. The recharge
process was taken to be either a white noise or temporally and spatially correlated process and field with an exponential
covariance function. The results were compared with the observed water levels in monitoring wells as well as the theoretical
results derived using non-stationary spectral methods and the detrended fluctuation analyses. The simulation results further
verify the findings in our previous studies that scaling of groundwater levels does exist in many aquifers and that the
hydraulic head in an aquifer may fluctuate as a temporal fractal in response to a white-noise or stationary or a fractal
recharge process, depending on how quickly the hydraulic head responds to recharge events and the physical parameters of the
aquifer (i.e., transmissivity and specific yield). The recharge process at the Walnut Creek watershed was shown to have a
white-noise spectrum based on the observed head spectrum. The effect of aquifer heterogeneity on the water level fluctuations
and scaling was also investigated and will be presented in the meeting.
DE: 1829 Groundwater hydrology
DE: 1839 Hydrologic scaling
DE: 1869 Stochastic hydrology
DE: 1872 Time series analysis (3270, 4277, 4475)
SC: Hydrology [H]
MN: Fall Meeting 2005