HR: 08:30h
AN: H31M-03 [Abstracts]
TI: Regional Groundwater Recharge and Groundwater Evapotranspiration in Illinois
AU: * Yeh, P
EM: patyeh@rainbow.iis.u-tokyo.ac.jp
AF: Institute of Industrial Science,
University of Tokyo, Institute of Industrial Science,
University of Tokyo, Tokyo, 113-8656, Japan
AU: Famiglietti, J
EM: jfamigli@uci.edu
AF: Department of Earth System Science,
UC-Irvine, University of California
3317 Croul Hall, Irvine, 92697, United States
AB:
Several recent land surface modeling studies have found that the incorporation of groundwater representation
can enhance evapotranspiration due to the additional moisture provided by the aquifer. However, there is a lack of
regional-scale field evidence to support this finding. The role of shallow unconfined aquifers in supplying water
for the evapotranspiration (groundwater evaporation) is investigated in this study based on a comprehensive 22-
year (1984-2005) monthly hydroclimatic dataset in Illinois. State-average monthly groundwater recharge and the
separation of streamflow components (surface runoff and groundwater runoff) were estimated by soil water
balance computations and compared with the previous estimates. The seasonal and interannual variability of
groundwater recharge estimates were investigated. It was found that during the summer, the capillary flux from
the shallow water table to the root zone soil moisture helps to maintain a high rate of evapotranspiration (~120
mm/month), and its magnitude increases throughout the summer and reaches the maximum of 12 mm/month in
August. Neglecting this mechanism in regional water budget studies or land surface modeling may lead to the
underestimation of soil moisture and summer evapotranspiration.
DE: 1829 Groundwater hydrology
DE: 1830 Groundwater/surface water interaction
DE: 1833 Hydroclimatology
DE: 1836 Hydrological cycles and budgets (1218, 1655)
DE: 1843 Land/atmosphere interactions (1218, 1631, 3322)
SC: Hydrology [H]
MN: 2007 Fall Meeting