HR: 1340h
AN: B23A-0937 [Abstracts]
TI: Interannual Variability in Carbon Sources and Sinks
over North America: How Important Compared to Other Regions?
AU: Mariotti, A
EM: annarita.mariotti@casaccia.enea.it
AF: ENEA National Agency, Climate Section, Via Anguillarese 301 - S.P. 91, Rome, 00060
Italy
AU: * Zeng, N
EM: zeng@atmos.umd.edu
AF: Department of Meteorology and
Earth System Science Interdisciplinary Center
University of Maryland, 2421 Computer and Space Sciences Building, College Park, 20742
United States
AU: Wetzel, P
AF: Max-Planck-Institut fuer Meteorologie, Bundesstr. 55,, Hamburg, D-20146
Germany
AB:
We study the variability of carbon sources and sinks over N. America
in relation to other major land regions,
using both forward modeling and atmospheric inversion results.
Simulation for the 20th century shows a dominant ENSO mode over global
land regions, and another mode related to global temperature trends.
Large sub-continental scale variations in carbon sources and sinks
over North America and Eurasia are comparable to those in the tropics,
and the total interannual variability
over North America is about 1 Pg y$^{-1}$. Such spatiotemporal variability has
implication for flux measurement network distribution.
We highlight the key differences in ENSO related climate anomalies
and plant/soil physiology in determining the distintly different
contributions between N. America/Eurasia and the tropics.
Fire, largely driven by drought,
also contributes significantly to the total flux at a rate
of about 1 Pg y$^{-1}$ globally, and 0.5 Pg y$^{-1}$ for North America and
Eurasia. The robust variability in tropical fluxes
agree well with atmospheric inverse modeling results. Even over
North America and Eurasia, where ENSO teleconnection is less robust,
the fluxes show general agreement with inversion results,
an encouraging sign for fruitful carbon data assimilation.
DE: 1615 Biogeochemical processes (4805)
DE: 0400 Biogeosciences
SC: Biogeosciences [B]
MN: 2004 AGU Fall Meeting