Abstract
Water resource problem is a challenging area of research in arid and semiarid regions of the world. In this paper, historical runoff data of 36 rivers in Northwest China (NWC) were used to assess regional water resource change. Furthermore, eight of the river basins (with different runoff recharge source) were also selected as typical regions to further analyze the causes of runoff change, based on the data of climate change and human activities. The result showed that headwater runoff in rivers of eastern part of NWC was decreasing in the last 50 years, while it was increasing in the western part oppositely. Temperature rising was the main reason for “runoff decreasing,” and “runoff increasing” was mainly the comprehensive result of plentiful precipitation and increased melt water caused by global warming. The 1990s was a common runoff turning period of upstream rivers in NWC as the reason of climate change. The differences of climate condition and runoff recharge source greatly affected runoff processes in the upstream of each river within a year, while the processes in the middle and lower reaches of most rivers in NWC were relatively smooth because of agricultural irrigation consumption and runoff regulation by water conservancy projects. Analyzed by rescaled range analysis method, upstream runoff in rivers of eastern NWC will continue to decrease, while it will increase in other regions when the climate change holds the current trend in the next few decades. Runoff change in midstream and downstream is not clear as it mainly depends on economy structure and level.








Similar content being viewed by others
References
Ashok R (2002) Scaling in the Bombay stock exchange index. J Phys 58:537–544
Aynur M, Wahap H, Yang XD (2010) The climatic changes of Qarqan river basin and its impact on the runoff. Xinjiang Agric Sci 47:996–1001
Cui BL, Li XY, Li YT, Ma Y, Yi W (2011) Runoff characteristics and hysteresis to precipitation in the Qinghai Lake Basin. J Desert Res 31:247–253
Duan JJ, Liu X, Gou SS, Gao Q, Wang S (2010) The surface water resources and its available in the non-controlled area in the Aksu river basin. J Glaciol Geocryol 32:609–618
Gao JF, Luo GX (2009) Analysis of the impact of climate changes on Rivers runoff in Hami Prefecture, Xinjiang. J Glaciol Geocryol 31:748–758
González-Núñez MA, Uruchurtu-Chavarín J (2003) R/S fractal analysis of electrochemical noise signals of three organic coating samples under corrosion conditions. J Corros Sci Eng 6:1–15
He B, Wang GY, Su HC, Shen YP (2012) Response of extreme hydrological events to climate change in the region of Altay Mountains Xinjiang. J Glaciol Geocryol 34:927–933
Hurst HE (1965) Long-term storage: an experimental study. Constable, London
Kang SZ, Su XL, Shen QL, Shi P, Yang X (2004) Strategy for water resources utilization and water-saving agriculture development models in Shiyanghe river basin. J Water Resour Water Eng 15:1–8
Lei ZD, Hu HP, Yang SX, Tian F (2006) Analysis on water consumption in oases of the Tarim Basin. J Hydraul Eng 37:1470–1475
Li X, Cheng G, Jin H, Kang E, Che T, Jin R, Wu L, Nan Z, Wang J, Shen Y (2008) Cryospheric change in China. Global Planet Change 62:210–218
Li LN, Shi PJ, Dong HR, Wei W (2012) Progress on water resources research in Shiyang river basin. Res Soil Water Conserv 19:280–284
Ling HB, Xu HL, Zhang QQ (2012) Nonlinear analysis of runoff change and climate factors in the headstream of Keriya River, Xinjiang. Geogr Res 31:792–802
Liu HM, Shi PJ, Zhou JJ, Liu H, Sun H (2013) Characteristics and influencing factors of runoff consumption in the midstream of Shiyang river. Prog Geogr 32:87–94
Luo XX, Yang JQ (2003) Researches on the questions and countermeasures of sustainable utilization of water resources in the northwest area of China. Areal Res Dev 22:73–76
Meng G, Jia EH, Cheng Y, Cheng Y (2014) Cause analysis and countermeasures for Ulungur River Zero Flow. Water Resour Power 32:139–142
Mtalip T, Xu HL, Liu XH (2012) Trend analysis and forecast of the runoff change in Tarim River basin. J Water Resour Water Eng 23:77–82
Mu MX, Wang WK, Du D (2007) Analysis on runoff supply and variation characteristics of Kuitun river basin on the North Slope of Xinjiang Tianshan Mountain. J Arid Land Resour Environ 21:50–54
Pu ZC, Zhang SQ, Li JL, Xu J (2007) Effect of climate change to annual runoff in Hutubi River Basin. Desert Oasis Meteorol 1:44–47
Qiao M, Zhou SB, Lu L (2010) Trends in runoff variations of the Ebinur Lake Basin during the last 48 years. J Soil Water Conserv 24:236–239
Qin J, Ding YJ, Yang GJ (2013) The hydrological linkage of mountains and plains in the arid region of northwest China. Chin Sci Bull 58:3140–3147
Qu W, Mei XB (2002) The reviews of water resource research in northwest China. Gansu Soc Sci 6:131–135
Ran L, Zhu HJ, Ayinuer Z (2010) Impact of climate change on hydrological regime in the Baiyanghe River Basin in Tacheng, Xinjiang during 1962–2007. J Glaciol Geocryol 32:921–926
She YY, Li ZQ, Zhang MJ, Wang S, Sun M (2012) Response of streamflow to climate change at the head waters of Urumqi River in the Tianshan mountains over the recent 51 years. J Arid Land Resour Environ 26:113–118
Suiji W, Yunxia Y, Yingkui L (2012) Spatial and temporal variations of suspended sediment deposition in the alluvial reach of the upper Yellow River from 1952 to 2007. Catena 92:30–37
Tang XL, Lv X, Li JF (2011) Runoff characteristics of Manasi River Basin in the past 50 years. J Arid Land Resour Environ 25:124–129
Tian L, Jiang Y (2011) Analysis on the variation trend of precipitation and runoff in the Kaiken River in the last 50 years. Xinjiang Water Resour 4:43–47
Turcotte DL (1997) Fractals and chaos in geology and geophysics, 2nd edn. Cambridge University Press, Cambridge, pp 158–162
Wang JY (2011) Impacts of climate change on runoff process of Khash River in Western Tianshan Mountains, Xinjiang, China. J Glaciol Geocryol 33:1153–1160
Wang J, Hu XL (2011) Runoff space-time distribution rule and evolution tendency of Yellow River Upstream and main tributaries. J China Hydrol 31:90–96
Wang F, Wang SC, Qi GM, Li B, Gou R, Duo J (2007) Effects of climate change on water resources in the Qaidam Basin. Qinghai Sci Technol 6:15–19
Yang Z (1991) Glacier water resources in China. Gansu Science and Technology Press, Gansu, pp 119–149
Yang HB, Li YF, Chen JW, Guo H (2014) Comprehensive evaluation on landscape ecology of Kashi River basin. J Arid Land Resour Environ 28:67–71
Zhang JS, Kang ES, Lan YC, Chen RS, Chen M (2001) Studies of the transformation between surface water and groundwater and the utilization ratio of water resources in Hexi Region. J Glaciol Geocryol 23:375–382
Zhang XX, Zhang Y, Xu HJ, Zhu J (2014) Mountainous runoff change in three inland river basins in Hexi Corridor and its influencing factors. J Arid Land Resour Environ 28:66–72
Zhou HY, Yu SH, Zhu ZY, Li S, Li B, Wen Q, He Y (1999) R/S analysis of indexes of ferric oxide from Tianshuihai Lake core and their implication. J Glaciol Geocryol 21:136–140
Acknowledgments
This work was supported by the National Natural Science Foundation of China (No. 41401039), National Major Scientific Research Project (No. 2013CBA01806) and the Foundation for Excellent Youth Scholars of CAREERI (No. 51Y451101), CAS.
Author information
Authors and Affiliations
Corresponding author
Rights and permissions
About this article
Cite this article
Qin, J., Liu, Y., Chang, Y. et al. Regional runoff variation and its response to climate change and human activities in Northwest China. Environ Earth Sci 75, 1366 (2016). https://doi.org/10.1007/s12665-016-6187-z
Received:
Accepted:
Published:
DOI: https://doi.org/10.1007/s12665-016-6187-z


