HR: 0800h
AN: H31H-0759 [Abstracts]
TI: Variational Estimation of Energy Balance Partitioning and Soil Heat Diffusion Using Remotely Sensed Land Surface Temperature Data
AU: * Bateni, S
EM: smbateni@mit.edu
AF: Department of Civil and Enviornmental Engineering, Massachusetts Institute of
Technology, Cambridge, MA 02139, United States
AU: Entekhabi, D
EM: darae@mit.edu
AF: Department of Civil and Enviornmental Engineering, Massachusetts Institute of
Technology, Cambridge, MA 02139, United States
AU: Castelli, F
EM: fabio@dicea.unifi.it
AF: Dipartimento di Ingegneria Civile, Universita degli Studi di Firenze, Florence, 3 - 50139, Italy
AB:
Estimates of two major parameters of surface energy balance that control the partitioning
of available energy into sensible, latent, and ground heat fluxes are made based on a variational data
assimilation (VDA) approach. This method minimizes the estimated soil surface temperature against
observations. Sequences of radiometric surface temperature measurements are the only input data source. The
one dimensional parabolic heat diffusion equation is used as a physical constraint (the adjoint method). The land
data assimilation scheme is formulated such that it does not need ancillary data such as soil texture and
vegetation. The two key unknown parameters for estimating fluxes are: near-surface air turbulent conductivity
(bulk heat transfer coefficient) and evaporative fraction (ratio of latent heat flux to the sum of the sensible and
latent heat fluxes), which is almost constant for near-peak radiation hours. The inclusion of the multi-layer heat
diffusion model reduces the phase errors associated with ground heat flux. As a result the new model performs
better than the other VDA methods which use parsimonious force-restore equation in place of heat diffusion
equation.
DE: 1800 HYDROLOGY
SC: Hydrology [H]
MN: 2007 Fall Meeting