Impact of Irrigation on Midsummer Surface Fluxes and Temperature under Dry Synoptic Conditions: A Regional Atmospheric Model Study of the U.S. High Plains
- 1 March 2003
- journal article
- Published by American Meteorological Society in Monthly Weather Review
- Vol. 131 (3), 556-564
- https://doi.org/10.1175/1520-0493(2003)131<0556:ioioms>2.0.co;2
Abstract
The impact of irrigation on the surface energy budget in the U.S. high plains is investigated. Four 15-day simulations were conducted: one using a 1997 satellite-derived estimate of farmland acreage under irrigation in Nebraska (control run), two using the Olson Global Ecosystem (OGE) vegetation dataset (OGE wet run and OGE dry run), and the fourth with the Kuchler vegetation dataset (natural vegetation run) as lower boundary conditions in the Colorado State University Regional Atmospheric Modeling System (RAMS). In the control and OGE wet simulations, the topsoil in the irrigated locations, up to a depth of 0.2 m, was saturated at 0000 UTC each day for the duration of the experiment (1–15 July 1997). In the other two runs, the soil was allowed to dry out, except when replenished naturally by rainfall. Identical observed atmospheric conditions were used along the lateral boundary in all four cases. The area-averaged model-derived quantities for the grid centered over Nebraska indicate significant... Abstract The impact of irrigation on the surface energy budget in the U.S. high plains is investigated. Four 15-day simulations were conducted: one using a 1997 satellite-derived estimate of farmland acreage under irrigation in Nebraska (control run), two using the Olson Global Ecosystem (OGE) vegetation dataset (OGE wet run and OGE dry run), and the fourth with the Kuchler vegetation dataset (natural vegetation run) as lower boundary conditions in the Colorado State University Regional Atmospheric Modeling System (RAMS). In the control and OGE wet simulations, the topsoil in the irrigated locations, up to a depth of 0.2 m, was saturated at 0000 UTC each day for the duration of the experiment (1–15 July 1997). In the other two runs, the soil was allowed to dry out, except when replenished naturally by rainfall. Identical observed atmospheric conditions were used along the lateral boundary in all four cases. The area-averaged model-derived quantities for the grid centered over Nebraska indicate significant...Keywords
This publication has 19 references indexed in Scilit:
- Does Grazing Affect Regional Climate?Journal of Hydrometeorology, 2001
- Climate impacts of European‐scale anthropogenic vegetation changes: A sensitivity study using a regional climate modelJournal of Geophysical Research: Atmospheres, 2001
- Simulated impacts of historical land cover changes on global climate in northern winterClimate Dynamics, 2000
- Land Surface–Induced Regional Climate Change in Southern IsraelJournal of Applied Meteorology and Climatology, 1998
- Sensitivity of a general circulation model to global changes in leaf area indexJournal of Geophysical Research: Atmospheres, 1996
- Potential climatic impacts of vegetation change: A regional modeling studyJournal of Geophysical Research: Atmospheres, 1996
- The NCEP/NCAR 40-Year Reanalysis ProjectBulletin of the American Meteorological Society, 1996
- Wind Variability—An Indicator for a Mesoclimatic Change in IsraelJournal of Climate and Applied Meteorology, 1986
- The Effect of Irrigation on Warm Season Precipitation in the Southern Great PlainsJournal of Climate and Applied Meteorology, 1984
- A one-dimensional simulation of the stratocumulus-capped mixed layerBoundary-Layer Meteorology, 1983