HR: 1340h
AN: GC23A-0980 [Abstracts]
TI: Hydrological changes across Northern Eurasia: contemporary status and future projections
AU: * Shiklomanov, A
EM: alex.shiklomanov@unh.edu
AF: CSRC, EOS University of New Hampshire, 39 College Rd, Durham, NH 03824, United
States
AU: Lammers, R
EM: richard.lammers@unh.edu
AF: CSRC, EOS University of New Hampshire, 39 College Rd, Durham, NH 03824, United
States
AU: Shiklomanov, I
EM: ISHIKLOM@ZB3627.spb.edu
AF: State Hydrological Institute, 23 Second Line, V.O., St. Petersburg, 199053, Russian
Federation
AU: Rawlins, M
EM: rawlins@eos.sr.unh.edu
AF: CSRC, EOS University of New Hampshire, 39 College Rd, Durham, NH 03824, United
States
AU: Wisser, D
EM: dwisser@ob.sr.unh.edu
AF: CSRC, EOS University of New Hampshire, 39 College Rd, Durham, NH 03824, United
States
AU: Smith, L
EM: lsmith@geog.ucla.edu
AF: Department of Geography, UNIVERSITY OF CALIFORNIA, LOS ANGELES, 1255 BUNCHE
HALL, 405 HILGARD AVENUE, Los Angeles, Ca 90095, United States
AU: Vorosmarty, C
EM: charles.vorosmarty@unh.edu
AF: CSRC, EOS University of New Hampshire, 39 College Rd, Durham, NH 03824, United
States
AU: Georgievski, V
EM: ISHIKLOM@ZB3627.spb.edu
AF: State Hydrological Institute, 23 Second Line, V.O., St. Petersburg, 199053, Russian
Federation
AB:
Evidence pointing to significant change in the hydrological regime over the North Eurasian region were analyzed.
Understanding alterations due to both global climate change and local anthropogenic influences are important to
explore potential signals of global climate change and to assess their feedbacks to hydrological systems and the
global climate, and to their impacts upon humans. We analyzed changes in annual, monthly and daily extreme
discharge for river basins with minimal human impact along with total river inflow to the Arctic Ocean from the
largest watersheds and sea basins. The effect of human impacts was estimated through water use data
collected at the State Hydrological Institute (SHI), Russia. The role of reservoir regulation in discharge variability
was analyzed with a newly developed Hydrograph Transformation Model (HTM). The model is based on the unit
hydrograph approach and transforms daily hydrographs sequentially from upstream to downstream to reduce the
effects of reservoir regulation. To explore potential future patterns of change in the hydrology of Northern Eurasia
we used projections of climate changes simulated by two coupled atmosphere-ocean general circulation
models (AOGCMs) to drive our hydrological models. Future simulations from the UNH Water Balance and Water
Transport Models (WBM/WTM) which incorporate irrigation and reservoir effects were analyzed along with results
from the SHI and UNH permafrost water balance models with improved frozen ground schemes. All models
demonstrated a general tendency toward increases in river runoff although the changes across Northern Eurasia
were not spatially uniform.
DE: 1800 HYDROLOGY
DE: 1803 Anthropogenic effects (4802, 4902)
DE: 1833 Hydroclimatology
DE: 3305 Climate change and variability (1616, 1635, 3309, 4215, 4513)
DE: 3309 Climatology (1616, 1620, 3305, 4215, 8408)
SC: Global Environmental Change [GC]
MN: 2007 Fall Meeting