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Journal of Arid Land  2012, Vol. 4 Issue (2): 132-139    DOI: 10.3724/SP.J.1227.2012.00132     CSTR: 32276.14.SP.J.1227.2012.00132
Research Articles     
Effects of irrigation on precipitation in the arid regions of Xinjiang, China
Yong ZHAO1, YongJie FANG2, CaiXia CUI3, AnNing HUANG4
1 Institute of Desert Meteorology, China Meteorology Administration, Urumqi 830002, China;
2 Beijing Climate Center, China Meteorological Administration, Beijing 100081, China;
3 Xinjiang Meteorological Observatory, Urumqi 830002, China;
4 School of Atmospheric Sciences, Nanjing University, Nanjing 210093, China
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Abstract  Soil moisture is an important parameter for the interaction between soil and atmosphere. It is the second important factor that influences climate change, next to sea surface temperature (SST). Most previous studies focused on the monsoon regions in East China, and only a few laid emphases on arid environments. In Xinjiang, which is located in Northwest China, the climate is typically arid and semi-arid. During the past 20 years, the precipitation in Xinjiang has shown a significant increasing trend, and it is closely related to oasis irrigation. This paper aims at discussing whether abnormal soil moisture in spring can be the signal to forecast summer precipitation. The effects of abnormal soil moisture due to farm irrigation in spring in arid environments on regional climate are investigated by using a regional climate model (RegCM3). The results indicate that positive soil moisture anomaly in irrigated cropland surface in May led to an increase in precipitation in spring as well as across the whole summer. The impact could last for about four months. The effects of soil moisture on the surface air temperature showed a time-lagging trend. The summer air temperature declined by a maximum amplitude of 0.8ºC. The increased soil moisture could enhance evaporation and ascending motion in the low troposphere, which brought in more precipitation. The soil moisture affected regional weather and climate mainly by altering the surface sensible and latent heat fluxes.

Key wordsTibet      cryosphere      global warming      ecological environment     
Received: 14 September 2011      Published: 06 June 2012
Fund:  

The National Natural Science Foundation of China (40875010, 41005050), the Xinjiang Sci-ence and Technology Support Project (200891129), and the Global Change National Key Scientific Research Project (2011 CB952002).

Corresponding Authors:
Cite this article:

Yong ZHAO, YongJie FANG, CaiXia CUI, AnNing HUANG. Effects of irrigation on precipitation in the arid regions of Xinjiang, China. Journal of Arid Land, 2012, 4(2): 132-139.

URL:

http://jal.xjegi.com/10.3724/SP.J.1227.2012.00132     OR     http://jal.xjegi.com/Y2012/V4/I2/132

Barnston A G, Schickedanz P T. 1984. The effect of irrigation on warm season precipitation in the Southern Great Plains. Journal of Climate Applied Meteorology, 23(6): 865-888.
Barron E J. 1994. GOALS (Global Ocean-Atmosphere-Land System) for Predicting Seasonal-to-International Climate: A Program of Observation, Modeling, and Analysis. Washington DC: National Academy Press.
Davies H, Turner R. 1977. Updating precipitation models by dynamical relaxation: an examination of the technique. Quarterly Journal of the Royal Meteorological Society, 103(436): 225-245.
DeAngelis A, Dominguez F, Fan Y, et al. 2010. Evidence of enhanced precipitation due to irrigation over the Great Plains of the United Station. Journal of Geophysical Research, 115(D15): 1-14.
Du H W, Yan H. 1993. A numerical experiment of the influence of underlying surface on a short-range Synoptic process II. Chinese Quarterly Journal of Applied Meteorology, 4(4): 385-393.
Eddy J A, Stidd C K, Fowler W B, et al. 1975. Irrigation increases rainfall? Science, 188(4185): 279-281.
Grell G A, Dudhia J, Satuffer D R. 1994. A description of the Fifth-Generation Penn State/NCAR Mesoscale Model (MM5). In: National Center for Atmospheric Research. NCAR Technical Report Note TN-398. Colorado, USA.
Guo W D, Ma Z G, Yao Y H. 2003. Regional characteristics of soil moisture evolution in Northern China over recent 50 years. Acta Geographica Sinica, 58(suppl.): 83-90.
Henderson-Sellers A. 1996. Soil moisture: a critical focus for global change studies. Global and Planetary Change, 13(1-4): 3-9.
Holtslag A A M, De Bruijn E I F, Pan H L. 1990. A high resolusion air mass transformation model for short-range weather forecasting. Month Weather Review, 118: 1561-1575.
Kanamitsu M, Ebisuzaki W, Woollen J, et al. 2002. NCEP–DOE AMIP-II Reanalysis (R-2). Bulletin of the American Meteorological Society, 83(11): 1631-1643.
Kiehl J T, Hack J J, Bonan G B, et al. 1993. Description of the NCAR community climate model (CCM3). In: NCAR Technical Report Note TN-464. National Center for Atmospheric Research. Colorado, USA.
Lenters J D, Coe M T, Foley J A. 2000. Surface water balance of the continental Unite States, 1963-1995: regional evaluation of a terrestrial biosphere model and NCEP/NCAR reanalysis. Journal of Geophysical Research, 105(D17): 22393-22425.
Li Q P, Ding Y H, Dong W J. 2007. A numerical study on the effects of the soil moisture upon the regional short-term climate. Journal of Applied Meteorological Science, 18(1): 1-11.
Ma Z G, Fu C B, Xie L, et al. 2001. Some problems in the study on the relationship between soil moisture and climatic change. Advance in Earth Sciences, 16(4): 563-568.
Moore N, Rojstaczer S. 2001. Irrigation-induced rainfall and the Great Plains. Journal of Applied Meteorology, 40(8): 1297-1309.
Namias J. 1958. Persistence of mid-tropospheric circulation between adjacent months and seasons. In: The Atmosphere and Sea in Motion (Rossby Memorial Volume). Oxford: Rockefeller Institute Press and Oxford University Press, 240-248.
Namias J. 1963. Surface-atmosphere interactions as fundamental causes of droughts and other climatic fluctuations. In: Symposium on Changes of Climate with Special Reference to Arid Zones. Paris: UNESCO Publication, 20: 345-359.
Pal J S, Eltahir E A, Small E E. 2000. Simulation of regional-scale water and energy budgets: representation of subgrid cloud and precipitation processes within RegCM. Journal of Geophysical Research, 105(D24): 29579-29594.
Roads J O, Chen S C, Kanamitsu M, et al. 1999. Surface water characteristics in NCEP global spectral model and reanalysis. Journal of Geophysical Research, 104(D16): 19307-19327.
Shi Y F, Shen Y P, Hu R J. 2002. Preliminary study on signal, impact and foreground of climatic shift from warm-dry to warm-humid in Northwest China. Chinese Journal of Glaciology and Geocryology, 24(3): 219-226.
Shukla J, Mintz Y. 1982. Influence of land-surface evapotranspiration on Earth’s climate. Science, 215(4539): 1498-1501.
Sun C H, Li W J, Zhang Z Q, et al. 2005. Impact of Huaihe River Basin soil temperature and humidity abnormality in pre-winter and spring time on the anomalous summer rainfall and its application. Acta Meteorologica Sinica, 63(1): 115-121.
Walker J, Rowntree P R. 1977. The effect of soil moisture on circulation and rainfall in a tropical model. Quarterly Journal of the Royal Meteorological Society, 103(435): 29-46.
Wang W Q. 1991. Numerical experiments of the soil temperature and moisture anomalies’ effects on the short term climate. Chinese Journal of Atmospheric Sciences, 15(5): 115-123.
Xie Z Q, Liu J M, Ding Y G, et al. 2005. Variation features of soil temperature and moisture content at dry- and alpine-desertification surface and their interaction analyse. Plateau Meteorology, 24(1): 16-22.
Yang L M, Zhang Q Y. 2007. Circulation characteristics of interannual and interdecadal anomalies of summer rainfall in north Xinjiang. Chinese Journal of Geophysics, 50(2): 412-419.
Yeh T C, Wetherald R I, Manabe S. 1984. The effect of soil moisture on the short-term climate and hydrology change: a numerical experiment. Monthly Weather Review, 112(3): 474-490.
Zhang J B, Shi Y G. 2002. The Study on Climate Change and Short-term Climate Prediction in Xinjiang. Beijing: China Meteorological Press, 82-84.
Zhu Q G, Lan H P, Shen T L. 1996. Numerical study of the influence of soil moisture and surface albedo on climate of north part of China. Acta Meteorologica Sinica, 54(4): 493-500.
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