HR: 0800h
AN: H31C-0390 INVITED [Abstracts]
TI: A Concept for a Long Term Hydrologic Observatory in the South Platte River Basin
AU: * Ramirez, J A
EM: Jorge.Ramirez@ColoState.edu
AF: Civil Engineering Department, Colorado State University, Fort Collins, CO 80523-1372
United States
AB:
The intersection between: (1) the Rocky Mountains and developments occurring in high altitude fragile environments; (2) the
metropolitan areas emerging at the interface of the mountains and the plains; (3) the irrigation occurring along rivers as
they break from the mountains and snake across the Great Plains; and (4) the grasslands and the dryland farming that covers
the vast amount of the Great Plains, represents a dynamic, complex, highly integrated ecosystem, stretching from Montana and
North Dakota to New Mexico and Texas. This swath of land, and the rivers that cross it (headwaters of the Missouri , the
Yellowstone, the North Platte , the South Platte, the Arkansas , the Cimarron, the Red and the Pecos Rivers ), represent a
significant percentage of the landmass of the United States. Within this large area, besides tremendous increases in
population in metropolitan areas, there are new energy developments, old hard rock mining concerns, new recreation
developments, irrigation farms selling water to meet urban demands, new in-stream flow programs, struggling rural areas, and
continued "mining" of ground water. The corresponding impacts are creating endangered and threatened species conflicts which
require new knowledge to fully understand the measures needed to mitigate harmful ecosystem conditions. Within the Rocky
Mountain/Great Plains interface, water is limiting and land is plentiful, presenting natural resource managers with a number
of unique problems which demand a scale of integrated science not achieved in the past. For example, water is imported into a
number of the streams flowing east from the Rocky Mountains. Nitrogen is deposited in pristine watersheds that rise up high
in the Rocky Mountains. Cities capture spring runoff in reservoirs to use at a steady rate over the entire year, putting
water into river systems normally moving low flows in the winter. Irrigation of both urban landscapes and farm fields may be
at a scale that impacts climate patterns in the region. Government programs, to help manage natural resources in the region,
have fractured jurisdiction over the area.
With a detailed integration of data sets the South Platte Hydrologic Observatory will address the above water issues,
which are representative of many of the scientific hydrologic issues facing the Rocky Mountain/Great Plains interface
watersheds, advancing the science of hydrology and producing sound science findings to assist natural resource decision
making in the region.
UR: http://www.engr.colostate.edu/~ramirez/SouthPlatte_LTHO.htm
DE: 1899 General or miscellaneous
DE: 1800 HYDROLOGY
SC: Hydrology [H]
MN: 2004 AGU Fall Meeting