HR: 16:45h
AN: B34B-04 INVITED [Abstracts]
TI: Snow, the Great River, and the Desert
AU: * Rango, A
EM: alrango@nmsu.edu
AF: USDA/ARS/Jornada Experimental Range, New Mexico State University, 2995 Knox St., Las Cruces, NM 88003
United States
AB:
While many major rivers around the world originate from alpine snowpacks in mountain regions, some experience the extreme
contrast of flowing through harsh desert environments downriver. One such stream is the Rio Grande which rises in the San
Juan and the Sangre de Christo mountains of southern Colorado and northern New Mexico. Eventually, the snow fed Rio Grande
flows through North America's largest desert, the Chihuahuan Desert in New Mexico, Texas, and Mexico, and simultaneously
becomes part of the border between the United States and Mexico. As is often true, urban areas develop along the river
corridors rather than in more inaccessible mountain regions. This demographic preference tends to isolate the vast majority
of population in the Rio Grande, who are dependent on water for their livelihoods, from the mountain snowpacks where the flow
is generated. Ironically then, snow is seldom viewed as the source of the much needed water flowing through the desert by
the majority of the basin's population. In arid regions of the western U.S., water demand far exceeds the water supply, and
water use is apportioned under the doctrine of prior appropriation with the oldest right getting the first use of water. The
increasing population in urban areas does not usually have a right to use the water flowing through the desert unless water
rights have been purchased by municipalities from the major category of water user in these basins, namely, irrigated
agriculture. In the entire Rio Grande basin, irrigation makes up 80% of the consumptive use of water. Additionally, basin
compacts and international treaties apportion water between states and countries. Because these formal agreements were based
on above average runoff years, there is little flexibility in changing the use of water, particularly in dry to normal runoff
years. Most of the older water rights in the Rio Grande, especially the upper basin, are supplied by snowmelt. This leaves
the lower basin to depend upon rainfall-produced runoff occurring mostly during the sporadic summer monsoon season. Water
harvesting techniques which promote heterogeneous water accumulation or production can effectively make more water available
in certain areas at the expense the expense of nearby areas. The use of water ponding dikes on arid rangeland can promote
increased native vegetation productivity through increases in soil moisture. Stock tanks lined with impervious material are
also used to collect whatever runoff that is generated for later use. Desert dwellers living along rivers must rely on
conservation measures and ingenuity in order to come up with a very limited water resource to survive. This survival is
continually in doubt because population(and consequently water demand) continues to grow in these arid regions while the
water supply remains relatively constant.
DE: 1834 Human impacts
DE: 1855 Remote sensing (1640)
DE: 1863 Snow and ice (0736, 0738, 0776, 1827)
DE: 1878 Water/energy interactions (0495)
DE: 1884 Water supply
SC: Biogeosciences [B]
MN: Fall Meeting 2005