Brief Communication |
|
|
|
|
Changes in wind activity from 1957 to 2011 and their possible influence on aeolian desertification in northern China |
LI Jinchang1,2*, LIU Haixia2, SU Zhizhu3, FAN Xiaohui2 |
1 State Key Laboratory of Earth Surface Processes and Resource Ecology, Beijing Normal University, Beijing 100875, China;
2 Institute of Loess Plateau, Shanxi University, Taiyuan 030006, China;
3 Historical Culture School, Shanxi University, Taiyuan 030006, China |
|
|
Abstract Wind activity is proved to have significant impacts on aeolian desertification. Clarifying the fluctuations and change trend of wind velocity is important for understanding their influence on aeolian desertification. In this study, we used a dataset of wind velocities collected from 93 meteorological stations across northern China from 1957 to 2011 to analyze the changes in wind activity during this period. We tested the monotonic and step (abrupt) trends for annual and seasonal data of mean wind velocity by using Mann-Kendall and Mann-Whitney tests, respectively. The results indicated that the annual mean wind velocity decreased by 0.83 m/s from 1957 to 2011. The decreasing trends were also significant (P<0.01) for each season. The magnitude of the decrease was smallest in the east of northern China and largest in the west of northern China, and the most remarkable decrease occurred in the northwest of northern China. Abrupt decreases in annual and seasonal mean wind velocities occurred in the mid-1980s, which was consistent with the changes in aeolian desertification since the mid-1980s in northern China. As revealed by our study, although both modern aeolian desertification and ecosystem rehabilitation are affected by human activities to some extent, they are also likely to be strongly controlled by climate change, especially by wind activity.
|
Received: 08 January 2015
Published: 10 December 2015
|
Fund: The Project of the Key Laboratory of Desert and Desertification, Chinese Academy of Sciences (KLDD-2014-001), the Project of the State Key Laboratory of Earth Surface Processes and Re-source Ecology, Beijing Normal University (2015-KF-07), the Science & Technology Pillar Program of Shanxi Province (20121101011) and the Soft Science Program of Shanxi Prov-ince (2015041020-1) |
Corresponding Authors:
|
|
|
Bichet A, Wild M, Folini D, et al. 2012. Causes for decadal varia-tions of wind speed over land: Sensitivity studies with a global climate model. Geophysical Research Letters, 39(11), doi: 10.1029/2012GL051685.Bjerknes B J. 1966. A possible response of the atmospheric Had-ley circulation to equatorial anomalies of ocean temperature. Tellus, 18: 820–829. Bothe O, Fraedrich K, Zhu X H. 2012. Precipitation climate of Central Asia and the large-scale atmospheric circulation. The-oretical and Applied Climatology, 108: 345–354.Chelton D B, Esbensen S K, Schlax M G, et al. 2001. Observa-tions of coupling between surface wind stress and sea surface temperature in the eastern tropical Pacific. Journal of Climate, 14: 1479–1498. Conover W J. 1999. Practical Nonparametric Statistics (3rd ed.). New York: John Wiley Press, 36–51.D’odorico P, Bhattachan A, Davis K F, et al. 2012. Global deserti-fication: drivers and feedbacks. Advances in Water Resources, 51: 326–344.Dong Z B, Lv P, Zhang Z C, et al. 2014. Aeolian transport over a developing transverse dune. Journal of Arid Land, 6(3): 243–254.Fan X H, Wang M B. 2011. Change trends of air temperature and precipitation over Shanxi Province, China. Theoretical and Applied Climatology, 103: 519–531.Fang J T, Piao S L, He J S, et al. 2004. Increasing terrestrial vege-tation activity in China, 1982–1999. Science in China: Life Sciences, 47(3): 229–240.Gao X, Shi Y, Song R, et al. 2008. Reduction of future monsoon precipitation over China: comparison between a high resolu-tion RCM simulation and the driving GCM. Meteorology and Atmospheric Physics, 100(1–4): 73–86. Helldén U, Tottrup C. 2008. Regional desertification: a global synthesis. Global and Planetary Change, 64(3–4): 169–176.Hirsch R M, Alexander R B, Smith R A. 1991. Selection of meth-ods for the detection and estimation of trends in water quality. Water Resources Research, 27: 803–813.Hu G Y, Dong Z B, Lu J F, et al. 2012. Driving forces responsible for aeolian desertification in the source region of the Yangtze River from 1975 to 2005. Environmental Earth Sciences, 66: 257–263.Liu Y, Li X, Zhang Q, et al. 2010. Simulation of regional temper-ature and precipitation in the past 50 years and the next 30 years over China. Quaternary International, 212(1): 57–63.Loikith P C, Broccoli A J. 2012. Characteristics of observed at-mospheric circulation patterns associated with temperature extremes over North America. Journal of Climate, 25(20): 7266–7281. Nobre P, Srukla J. 1996. Variations of sea surface temperature, wind stress, and rainfall over the tropical Atlantic and South America. Journal of Climate, 9: 2464–2479.Pearce K I, Walker I J. 2005. Frequency and magnitude biases in the “Fryberger” model, with implications for characterizing geomorphically effective winds. Geomorphology, 68: 39–55.Perlin N, Skyllingstad E D, Samelson R M. 2011. Coastal atmos-pheric circulation around an idealized cape during wind-driven upwelling studied from a Coupled Ocean–Atmosphere Model. Monthly Weather Review, 139(3): 809–829.Qi Y B, Chang Q R, Jia K L, et al. 2012. Temporal-spatial varia-bility of desertification in an agro-pastoral transitional zone of northern Shaanxi Province, China. Catena, 88(1): 37–45.Qian W H, Fu J L, Zhang W W, et al. 2007. Changes in mean climate and extreme climate in China during the last 40 years. Advances in Earth Science, 22(7): 673–684. (in Chinese)Rajagopalan B, Molnar P. 2012. Pacific Ocean sea-surface tem-perature variability and predictability of rainfall in the early and late parts of the Indian summer monsoon season. Climate Dynamics, 39(6): 1543–1557.Ren G Y, Guo J, Xu M Z, et al. 2005. Climate changes of main-land China over the past half century. Acta Meteorologica Sinica, 63(6): 942–956. (in Chinese)Runnström M C. 2003. Rangeland development of the Mu Us sandy land in semiarid China: an analysis using Landsat and NOAA remote sensing data. Land Degradation & Development, 14: 189–202.Salmi T, Määttä A, Anttila P, et al. 2002. Detecting trends of annu-al values of atmospheric pollutants by the Mann-Kendall test and Sen’s slope estimates–the Excel template application MAKESENS. Publications on Air Quality 31. Finnish Meteor-ological Institute, Helsinki, Finland.Song Q T, Chelton D B, Esbensen S K, et al. 2009. Coupling be-tween sea surface temperature and low-level winds in mesoscale numerical models. Journal of Climate, 22: 146–164.Troccoli A, Muller K, Coppin P, et al. 2012. Long-term wind speed trends over Australia. Journal of Climate, 25(1): 170–183.Wang G Q, Wang X Q, Wu B, et al. 2012. Desertification and its mitigation strategy in China. Journal of Resources and Ecology, 3(2): 97–104.Wang T, Wu W, Xue X, et al. 2003. Time-space evolution of des-ertification land in northern China. Journal of Desert Research, 23: 230–235. (in Chinese)Wang T, Wu W, Xue X, et al. 2004. Spatial-temporal changes of sandy desertified land during last 5 decades in northern China. Acta Geographica Sinica, 59: 203–212. (in Chinese)Wang T, Song X, Yan C Z, et al. 2011. Remote sensing analysis on aeolian desertification trends in northern China during 1975–2010. Journal of Desert Research, 31(6): 1351–1356. (in Chinese)Wang T, Yan C Z, Song X, et al. 2012. Monitoring recent trends in the area of aeolian desertified land using Landsat images in China’s Xinjiang region. Journal of Photogrammetry and Re-mote Sensing, 68: 184–190.Wang T, Xue X, Zhou L, et al. 2013. Combating aeolian desertifi-cation in northern China. Land Degradation & Development, 26(2): 118–132.Wang X M, Dong Z B, Zhang J W, et al. 2004. Modern dust storms in China: an overview. Journal of Arid Environments, 58: 559–574.Wang X M, Zhou Z J, Dong Z B. 2006a. Control of dust emis-sions by geomorphic conditions, wind environments and land use in northern China: An examination based on dust storm frequency from 1960 to 2003. Geomorphology, 81: 292–308.Wang X M, Chen F H, Dong Z B. 2006b. The relative role of climatic and human factors in desertification in semiarid China. Global Environmental Change, 16: 48–57.Wang X M, Hasi E, Zhou Z J, et al. 2007. Significance of varia-tions in the wind energy environment over the past 50 years with respect to dune activity and desertification in arid and semiarid northern China. Geomorphology, 86: 252–266.Wang X M, Chen F H, Hasi E, et al. 2008a. Desertification in China: An assessment. Earth-Science Reviews, 88: 188–206.Wang X M, Li J J, Dong G R, et al. 2008b. Responses of deserti-fication to variations in wind activity over the past five dec-ades in arid and semiarid areas in China. Chinese Science Bulletin, 53(3): 426–433.Wang X M, Zhang C X, Zhang J W, et al. 2010a. Nebkha for-mation: Implications for reconstructing environmental changes over the past several centuries in the Ala Shan Plateau, China. Palaeogeography, Palaeoclimatology, Palaeoecology, 297: 697–706.Wang X M, Zhang C X, Hasi E, et al. 2010b. Has the Three Norths Forest Shelterbelt Program solved the desertification and dust storm problems in arid and semiarid China? Journal of Arid Environments, 74: 13–22. Wu B, Ci L J. 1999. Developing stages and causes of desertifica-tion in the Mu Us sandland. Chinese Science Bulletin, 44: 845–849. Wu B, Ci L J. 2002. Landscape change and desertification devel-opment in the Mu Us Sandland, Northern China. Journal of Arid Environments, 50: 429–444.Wu W. 2003. Dynamic monitor to evolvement of sandy deserti-fied land in Horqin Region for the last 5 decades, China. Journal of Desert Research, 23: 646–651. (in Chinese)Xie S B, Qu J J, Zu R P, et al. 2012. New discoveries on the ef-fects of desertification on the ground temperature of perma-frost and its significance to the Qinghai-Tibet Plateau. Chinese Science Bulletin, 57(8): 838–842.Xu D Y, Li C L, Zhuang D F, et al. 2011. Assessment of the rela-tive role of climate change and human activities in desertifica-tion: A review. Journal of Geographical Science, 21(5): 926–936.Xue X, Wang T, Wu W. 2005. The desertification development and its causes of agro-pastoral mixed regions in North China. Journal of Desert Research, 25: 520–528. (in Chinese)Yang L H, Wu J G. 2012. Knowledge-driven institutional change: An empirical study on combating desertification in northern China from 1949 to 2004. Journal of Environmental Man-agement, 110: 254–266.Yang X, Ding Z, Fan X, et al. 2007. Processes and mechanisms of desertification in northern China during the last 30 years, with a special reference to the Hunshandake Sandy Land, eastern Inner Mongolia. Catena, 71(1): 2–12.Yang Z C, Li Y L, Cui D, et al. 2012. Changes of main climatic parameters and potential evapotranspiration in typical semi-arid sandy lands of northern China during 1951–2005. Journal of Desert Research, 32(5): 1384–1392. (in Chinese)Zhang K C, Qu J J, Han Q J, et al. 2012. Wind energy environ-ments and aeolian sand characteristics along the Qinghai-Tibet Railway, China. Sedimentary Geology, 273–274: 91–96.Zhang X Y, Gong S L, Zhao T L, et al. 2003. Sources of Asian dust and role of climate change versus desertification in Asian dust emission. Geophysical Research Letters, 30(24), 2272, doi: 10.1029/2003GL018206.Zhao F F, Xu Z X, Huang J X, et al. 2008. Monotonic trend and abrupt changes for major climate variables in the headwater catchment of the Yellow River basin. Hydrological Processes, 22: 4587–4599.Zobeck T M, Fryrear D W. 1986. Chemical and physical charac-teristics of windblown sediment II: chemical characteristics and total soil and nutrient discharge. Transactions of the American Society of Agricultural Engineers, 29: 1037–1041. |
|
Viewed |
|
|
|
Full text
|
|
|
|
|
Abstract
|
|
|
|
|
Cited |
|
|
|
|
|
Shared |
|
|
|
|
|
Discussed |
|
|
|
|