Impacts of Irrigation on Summertime Temperatures in the Pacific Northwest

被引:25
作者
Lawston, Patricia M. [1 ,2 ]
Santanello, Joseph A., Jr. [2 ]
Hanson, Brian [3 ]
Arsensault, Kristi [2 ,4 ]
机构
[1] Univ Maryland, Earth Syst Sci Interdisciplinary Ctr, College Pk, MD 20742 USA
[2] NASA, Goddard Space Flight Ctr, Hydrol Sci Lab, Greenbelt, MD 20771 USA
[3] Univ Delaware, Dept Geog, Newark, DE USA
[4] Sci Applicat Int Corp, Mclean, VA 22102 USA
关键词
Atmosphere-land interaction; Hydrometeorology; Soil moisture; Numerical analysis; modeling; SURFACE FLUXES; SOIL-MOISTURE; GREAT-PLAINS; PART I; PRECIPITATION; CLIMATE; MODEL; SYSTEM; FRAMEWORK; ENERGY;
D O I
10.1175/EI-D-19-0015.1
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Irrigation has the potential to modify local weather and regional climate through a repartitioning of water among the surface, soil, and atmosphere with the potential to drastically change the terrestrial energy budget in agricultural areas. This study uses local observations, satellite remote sensing, and numerical modeling to 1) explore whether irrigation has historically impacted summer maximum temperatures in the Columbia Plateau, 2) characterize the current extent of irrigation impacts to soil moisture (SM) and land surface temperature (LST), and 3) better understand the downstream extent of irrigation's influence on near-surface temperature, humidity, and boundary layer development. Analysis of historical daily maximum temperature (TMAX) observations showed that the three Global Historical Climate Network (GHCN) sites downwind of Columbia Basin Project (CBP) irrigation experienced statistically significant cooling of the mean summer TMAX by 0.8 degrees-1.6 degrees C in the post-CBP (1968-98) as compared to pre-CBP expansion (1908-38) period, opposite the background climate signal. Remote sensing observations of soil moisture and land surface temperatures in more recent years show wetter soil (similar to 18%-25%) and cooler land surface temperatures over the irrigated areas. Simulations using NASA's Land Information System (LIS) coupled to the Weather Research and Forecasting (WRF) Model support the historical analysis, confirming that under the most common summer wind flow regime, irrigation cooling can extend as far downwind as the locations of these stations. Taken together, these results suggest that irrigation expansion may have contributed to a reduction in summertime temperatures and heat extremes within and downwind of the CBP area. This supports a regional impact of irrigation across the study area.
引用
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页码:1 / 26
页数:26
相关论文
共 61 条
[1]   Seasonal Climate Variability and Change in the Pacific Northwest of the United States [J].
Abatzoglou, John T. ;
Rupp, David E. ;
Mote, Philip W. .
JOURNAL OF CLIMATE, 2014, 27 (05) :2125-2142
[2]  
Adegoke JO, 2003, MON WEATHER REV, V131, P556, DOI 10.1175/1520-0493(2003)131<0556:IOIOMS>2.0.CO
[3]  
2
[4]   Observational Evidence that Great Plains Irrigation Has Enhanced Summer Precipitation Intensity and Totals in the Midwestern United States [J].
Alter, Ross E. ;
Fan, Ying ;
Lintner, Benjamin R. ;
Weaver, Christopher P. .
JOURNAL OF HYDROMETEOROLOGY, 2015, 16 (04) :1717-1735
[5]  
[Anonymous], 2013, COLLECTION 6 MODIS L
[6]  
BARNSTON AG, 1984, J CLIM APPL METEOROL, V23, P865, DOI 10.1175/1520-0450(1984)023<0865:TEOIOW>2.0.CO
[7]  
2
[8]  
Chen F, 2001, MON WEATHER REV, V129, P569, DOI 10.1175/1520-0493(2001)129<0569:CAALSH>2.0.CO
[9]  
2
[10]   Memory of irrigation effects on hydroclimate and its modeling challenge [J].
Chen, Fei ;
Xu, Xiaoyu ;
Barlage, Michael ;
Rasmussen, Roy ;
Shen, Shuanghe ;
Miao, Shiguang ;
Zhou, Guangsheng .
ENVIRONMENTAL RESEARCH LETTERS, 2018, 13 (06)