HR: 1340h
AN: B33D-1583 [Abstracts]
TI: Modeling the Dynamic Root Water Uptake and its Hydrological Impact at the Reserva Jaru Site in Amazonia
AU: * Wang, G
EM: gwang@engr.uconn.edu
AF: Department of Civil & Environmental Engineering
University of Connecticut, 261 Glenbrook Road, Storrs, CT 06269,
AU: Zheng, Z
EM: zhe.zheng@uconn.edu
AF: Department of Civil & Environmental Engineering
University of Connecticut, 261 Glenbrook Road, Storrs, CT 06269,
AB:
An empirical approach is proposed to represent the impact of dynamic root water uptake by plant roots in two land
surface models (CLM3 and IBIS2). It is compared with a more physically based approach that simulates the
hydraulic redistribution, using the Reserva Jaru site in Amazonia as an example. For each model and each
approach, two different root profiles are experimented on, an exponential profile and an observed, deeper profile.
In both CLM3 and IBIS2, including dynamic root uptake significantly improves the model simulation of latent heat
fluxes, regardless of what root profile is used. In both models, the impact of hydraulic redistribution (as accounted
for by the physically based approach) is comparable to that of a low degree of dynamic root water uptake (as
accounted for by the empirical approach). The latent heat flux simulation in IBIS2 is closer to observation than in
CLM3, with or without the impact of dynamic root water uptake. Despite the model improvement due to including
dynamic root water uptake, significant biases in soil moisture simulations remain. Assimilating soil moisture
observations into the land surface models produces a remarkably improved latent heat flux simulation.
Parameterization in surface and subsurface runoff (which influences soil moisture) is suggested as a likely
cause for the severe biases in the default model simulations, which highlights the critical importance of correctly
simulating the fundamental hydrological processes in land surface models.
DE: 0495 Water/energy interactions (1878)
DE: 1813 Eco-hydrology
DE: 1818 Evapotranspiration
DE: 1843 Land/atmosphere interactions (1218, 1631, 3322)
SC: Biogeosciences [B]
MN: 2007 Fall Meeting