Please wait a minute...
干旱区科学  2015, Vol. 7 Issue (6): 717-727    DOI: 10.1007/s40333-015-0086-0
  学术论文 本期目录 | 过刊浏览 | 高级检索 |
Spatial variability of glacial changes and their effects on water resources in the Chinese Tianshan Mountains during the last five decades
WANG Puyu1*, LI Zhongqin1,2, HUAI Baojuan1, WANG Wenbin1, LI Huilin1, WANG Lin1
1 State Key Laboratory of Cryospheric Sciences/Tianshan Glaciological Station, Cold and Arid Regions Environmental and Engineering Research Institute, Chinese Academy of Sciences, Lanzhou 730000, China;
2 College of Geography and Environmental Science, Northwest Normal University, Lanzhou 730070, China
Spatial variability of glacial changes and their effects on water resources in the Chinese Tianshan Mountains during the last five decades
WANG Puyu1*, LI Zhongqin1,2, HUAI Baojuan1, WANG Wenbin1, LI Huilin1, WANG Lin1
1 State Key Laboratory of Cryospheric Sciences/Tianshan Glaciological Station, Cold and Arid Regions Environmental and Engineering Research Institute, Chinese Academy of Sciences, Lanzhou 730000, China;
2 College of Geography and Environmental Science, Northwest Normal University, Lanzhou 730070, China
下载:  PDF (475KB) 
输出:  BibTeX | EndNote (RIS)      
摘要 Changes in glaciers in the Chinese Tianshan Mountains have been analyzed previously. However, most pre-vious studies focused on individual glaciers and/or decentralized glacial basins. Moreover, a majority of these studies were published only in Chinese, which limited their usefulness at the international level. With this in mind, the authors reviewed the previous studies to create an overview of glacial changes in the Chinese Tianshan Mountains over the last five decades and discussed the effects of glacial changes on water resources. In response to climate change, glaciers in the Tianshan Mountains are shrinking rapidly and are ca. 20% smaller on average in the past five decades. Overall, the area reduction of glacial basins in the central part of the Chinese Tianshan Mountains is larger than that in the eastern and western parts. The spatial differentiation in glacial changes are caused by both differences in regional climate and in glacial factors. The effects of glacial changes on water resources vary in different river basins due to the differences in glacier distribution, char-acteristics of glacial change and proportion of the glacier meltwater in river runoff.
服务
把本文推荐给朋友
加入引用管理器
E-mail Alert
RSS
作者相关文章
WANG Puyu
LI Zhongqin
HUAI Baojuan
WANG Wenbin
LI Huilin
WANG Lin
关键词:  hydrological response  land use and land cover changes  streamflow  evapotranspiration  semi-arid region    
Abstract: Changes in glaciers in the Chinese Tianshan Mountains have been analyzed previously. However, most pre-vious studies focused on individual glaciers and/or decentralized glacial basins. Moreover, a majority of these studies were published only in Chinese, which limited their usefulness at the international level. With this in mind, the authors reviewed the previous studies to create an overview of glacial changes in the Chinese Tianshan Mountains over the last five decades and discussed the effects of glacial changes on water resources. In response to climate change, glaciers in the Tianshan Mountains are shrinking rapidly and are ca. 20% smaller on average in the past five decades. Overall, the area reduction of glacial basins in the central part of the Chinese Tianshan Mountains is larger than that in the eastern and western parts. The spatial differentiation in glacial changes are caused by both differences in regional climate and in glacial factors. The effects of glacial changes on water resources vary in different river basins due to the differences in glacier distribution, char-acteristics of glacial change and proportion of the glacier meltwater in river runoff.
收稿日期:  2014-09-24      修回日期:  2015-03-26           出版日期:  2015-12-10      发布日期:  2015-04-02      期的出版日期:  2015-12-10
基金资助: 

This work was funded by the Funds for Creative Research Groups of China (41121001), the National Basic Research Pro-gram (2013CBA01801), the National Natural Science Founda-tion of China (41301069, 41471058), the State Key Laboratory of Cryospheric Science foundation, Cold and Arid Regions En-vironmental and Engineering Research Institute, Chinese Acad-emy of Sciences (SKLCS-ZZ-2012-01-01), West Light Program for Talent Cultivation of the Chinese Academy of Sciences, and the Special Financial Grant from the China Postdoctoral Science Foundation ( 2014T70948).

通讯作者:  WANG Puyu    E-mail:  wangpuyu@lzb.ac.cn
引用本文:    
WANG Puyu, LI Zhongqin, HUAI Baojuan, WANG Wenbin, LI Huilin, WANG Lin. Spatial variability of glacial changes and their effects on water resources in the Chinese Tianshan Mountains during the last five decades[J]. 干旱区科学, 2015, 7(6): 717-727.
WANG Puyu, LI Zhongqin, HUAI Baojuan, WANG Wenbin, LI Huilin, WANG Lin. Spatial variability of glacial changes and their effects on water resources in the Chinese Tianshan Mountains during the last five decades. Journal of Arid Land, 2015, 7(6): 717-727.
链接本文:  
http://jal.xjegi.com/CN/10.1007/s40333-015-0086-0  或          http://jal.xjegi.com/CN/Y2015/V7/I6/717
Aizen V B, Kuzmichenok V A, Surazakov A B, et al. 2007. Glacier changes in the Tien Shan as determined from topographic and remotely sensed data. Global and Planetary Change, 56(3–4): 328–340.

Bahr D B, Pfeffer W T, Sassolas C, et al. 1998. Response time of glaciers as a function of size and mass balance: 1. Theory. Journal of Geophysical Research, 103(B5): 9777–9782.

Bolch T. 2007. Climate change and glacier retreat in northern Tien Shan (Kazakhstan/Kyrgyzstan) using remote sensing data. Global and Planetary Change, 56(1–2): 1–12.

Cao Z T. 1993. Glacio-hydrological characteristics of Gozha glacier on south slope of the West Kunlun Mountains. Journal of Glaciology and Geocryology, 15(4): 582–589. (in Chinese)

Chen J M, Liu C H, Jin M X. 1996. Application of the repeated aerial photogrammetry to monitoring glacier variation in the drainage area of the Urumqi River. Journal of Glaciology and Geocryology, 18(4): 331–336. (in Chinese)

Dong Z W, Qin D H, Ren J W, et al. 2012. Variations in the equilibrium line altitude of Urumqi Glacier No.1, Tianshan Mountains, over the past 50 years. Chinese Science Bulletin, 57(36): 4776–4783.

Gao W Y, Li Z Q, Li K M, et al. 2011. Glacier variation in the Kukesu River Basin during 1963-2004 based on remote sensing data and GIS techniques. Arid Land Geography, 34(2): 252–261. (in Chinese)

Jiao K Q, Jing Z F, Cheng P, et al. 2009. Monitoring results on the Glacier No.51 at Haxilegen in the Kuytun River Basin, Tianshan Mountains. Arid Land Geography, 32(5): 733–738. (in Chinese)

Jing Z F, Ye B S, Jiao K Q, et al. 2002. Surface velocity on the Glacier No.51 at Haxilegen of the Kuytun River, Tianshan Mountains. Journal of Glaciology and Geocryology, 24(5): 563–566. (in Chinese)

Kang E S. 1996. A study on changes of the glacier system and its runoff at the north flank of the Tianger Mountain in the Tianshan Mountains. Journal of Glaciology and Geocryology, 18(Suppl.): 60–74. (in Chinese)

Kutuzov S, Shahgedanova M. 2009. Glacier retreat and climatic variability in the eastern Terskey-Alatoo, inner Tien Shan between the middle of the 19th century and beginning of the 21st century. Global and Planetary Change, 69(1–2): 59–70.

Lanzhou Institute of Glaciology and Geocryology, Chinese Academy of Sciences. 1986a. Glacier Inventory of China (III): Tianshan Mountains (Ili River Drainage Basin). Beijing: Science Press. (in Chinese)

Lanzhou Institute of Glaciology and Geocryology, Chinese Academy of Sciences. 1986b. Glacier Inventory of China (III): Tianshan Mountains (Interior Drainage Area of Scattered Flow in East). Beijing: Science Press. (in Chinese)

Lanzhou Institute of Glaciology and Geocryology, Chinese Academy of Sciences. 1986c. Glacier Inventory of China (III): Tianshan Mountains (Interior Drainage Area of Tarim Basin in Southwest). Beijing: Science Press. (in Chinese)

Lanzhou Institute of Glaciology and Geocryology, Chinese Academy of Sciences. 1986d. Glacier Inventory of China (III): Tianshan Mountains (Interior Drainage Area of Junggar Basin in Northwest). Beijing: Science Press. (in Chinese)

Li B L, Zhu A X, Zhang Y C, et al. 2006. Glacier change over the past four decades in the middle Chinese Tien Shan. Journal of Glaciology, 52(178): 425–432.

Li K M, Li Z Q, Gao W Y, et al. 2011. Recent glacial retreat and its effect on water resources in eastern Xinjiang. Chinese Sci-ence Bulletin, 56(33): 3396–3604.

Li Z Q, Han T D, Jing Z F, et al. 2003. A summary of 40-year observed variation facts of climate and Glacier No.1 at head-water of Urumqi River, Tianshan, China. Journal of Glaciolo-gy and Geocryology, 25(2):117–123. (In Chinese)

Li Z Q, Wang F T, Zhu G C, et al. 2007. Basic features of the Miaoergou Flat-topped Glacier in East Tianshan Mountains and its thickness change over the past 24 years. Journal of Glaciology and Geocryology, 29(1): 61–65. (in Chinese)

Li Z Q, Wang W B, Zhang M J, et al. 2009. Observed changes in streamflow at the headwaters of the Urumqi River, Eastern Tianshan, Central Asia. Hydrological Processes, 24(2): 217–224. doi: 10.1002/hyp.7431

Li Z Q, Li K M, Wang L. 2010. Study on recent glacier changes and their impact on water resources in Xinjiang, North West-ern China. Quaternary Sciences, 30(1): 96–106. (in Chinese)

Li Z Q, Li H L, Chen Y N. 2011. Mechanisms and simulation of accelerated shrinkage of continental glaciers: a case study of Urumqi Glacier No.1 in eastern Tianshan, central Asia. Journal of Earth Science, 22(4): 423–430.

Li Z X, He Y Q, Xin H J, et al. 2010. Spatio-temporal variations of temperature and precipitation in Mts. Hengduan Region during 1960–2008. Acta Geographica Sinica, 65(5): 563–579. (in Chinese)

Liu S Y, Ding Y J, Wang N L, et al. 1998. Mass balance sensitivity to climate change of the Glacier No.1 at the Urumqi River Head, Tianshan Mts. Journal of Glaciology and Geocryology, 20(1): 9–13. (in Chinese)

Liu S Y, Ding Y J, Shangguan D H, et al. 2006. Glacier retreat as a result of climate warming and increased precipitation in the Tarim river basin, Northwest China. Annals of Glaciology, 43(1): 91–96.

Liu S Y, Yao X J, Guo W Q, et al. 2015. The contemporary glaciers in China based on the Second Chinese Glacier Inventory. Acta Geographica Sinica, 70(1): 3–16. (in Chinese)

Luo Y, Li H L, Li Z Q, et al. 2012. The relationship between the mass balances and meteorological factors at the glacier of No.72, Qingbingtan, Shenqi Peak, Tuomuer Area. Journal of Arid Land Resources and Environment, 26(3): 62–67. (in Chinese)

Mountaineering and Expedition Term of Chinese Academy of Sciences. 1995. Glacial and Weather in Mt. Tuomuer District, Tianshan. Urumqi: Xinjiang People’s Publishing House, 32–98. (in Chinese)

Narama C, Kääb A, Duishonakunov M, et al. 2010. Spatial variability of recent glacier area changes in the Tian Shan Mountains, Central Asia, using Corona (~ 1970), Landsat (~ 2000), and ALOS (~ 2007) satellite data. Global and Planetary Change, 71(1–2): 42–54.

Shen Y P, Wang G Y, Ding Y J, et al. 2009. Changes in Merzbacher Lake of Inylchek Glacier and glacial flash floods in Aksu River Basin, Tianshan during the period of 1903–2009. Journal of Glaciology and Geocryology, 31(6): 993–1002. (in Chinese)

Shi Y F, Liu C H, Wang Z T, et al. 2005. A Concise China Glacier Inventory. Shanghai: Shanghai Science Popularization Press. (in Chinese)

Su Z, Sun G P, Wang L L, et al. 1985. Modern glacier in Mt. Tuomuer district. In: Su Z, Kang E S. Glacial and Weather in Mt. Tuomuer District, Tianshan. Urumqi: Xinjiang People’s Publishing House, 32–88. (in Chinese)

Su Z. 1998. Glaciers and Environment of the Karakorum-Kunlun Mountains. Beijing: Science Press. (in Chinese)

Sun M P, Li Z Q, Yao X J, et al. 2013. Rapid shrinkage and hy-drological response of a typical continental glacier in the arid region of northwest China-taking Urumqi Glacier No.1 as an example. Ecohydrology, 6(6): 909–916.

Wang L, Li Z Q, Wang F T, et al. 2014. Glacier shrinkage in the Ebinur lake basin, Tien Shan, China, during the past 40 years. Journal of Glaciology, 60(220): 245–254.

Wang L L, Liu C H, Kang X C, et al. 1983. Fundamental features of modern glaciers in the Altay Shan of China. Journal of Glaciology and Geocryology, 5(4): 27–38. (in Chinese)

Wang S H, Xie Z C, Li Q Y. 2008. Comparison study of glacier variations in East and West Tianshan Mountains. Journal of Glaciology and Geocryology, 30(6): 946–953. (in Chinese)

Wang P Y, Li Z Q, Li H L, et al. 2011. Ice surface-elevation change and velocity of Qingbingtan glacier No.72 in the Tomor region, Tianshan Mountains, central Asia. Journal of Mountain Science, 8(6): 855–864.

Wang P Y, Li Z Q, Li H L, et al. 2012. Glacier No.4 of Sigong River over Mt. Bogda of eastern Tianshan, central Asia: thinning and retreat during the period 1962–2009. Environmental Earth Sciences, 66(1): 265–273.

Wang P Y, Li Z Q, Wang W B, et al. 2013. Changes of six selected glaciers in the Tomor region, Tian Shan, Central Asia, over the past ~50 years, using high-resolution remote sensing images and field surveying. Quaternary International, 311: 123–131.

Wang P Y, Li Z Q, Li H L, et al. 2014. Comparison of glaciologi-cal and geodetic mass balance at Urumqi Glacier No.1, Tian Shan, Central Asia. Global and Planetary Change, 114: 14–22.

Wang S J, Zhang M J, Li Z Q, et al. 2011. Glacier area variation and climate change in the Chinese Tianshan Mountains since 1960. Journal of Geographical Sciences, 21(2): 263–273.

Wang W B, Li K M, Gao J F. 2011. Monitoring glacial shrinkage using remote sensing and site-observation method on south-ern slope of Kalik Mountain, eastern Tian Shan, China. Jour-nal of Earth Science, 22(4): 503–514.

Wang X, Wu K P, Jiang L H, et al. 2013. Wide expansion of glacial lakes in Tianshan Mountains during 1990–2010. Acta Geographica Sinica, 68(7): 983–993. (in Chinese)

Wang Y T, Hou S G, Liu Y P. 2009. Glacier changes in the Karlik Shan, eastern Tien Shan, during 1971/72–2001/02. Annals of Glaciology, 50(53): 39–45.

Wang Z T. 1987. Influence of supraglacial moraine on surface ablation and ice temperature of glaciers. In: The Lanzhou Institute of Glaciology and Geocryology, CAS. Proceedings of the 2nd National Conference on Glaciology of the Geographical Society of China. Lanzhou: The People’s Publishing House of Gansu, 131–139. (in Chinese)

Wang Z T. 1991. A discusion on the questions of development of Heigou Glacier No.8, Bogda-peak Region. Journal of Glaciology and Geocryology, 13(2): 141–146, 158. (in Chinese)

Wu G H, Zhang S Y, Wang Z X. 1983. Retreat and advance of modern 

glaciers in Bogda, Tianshan. Journal of Glaciology and Geo-cryology,

5(3): 143–152. (in Chinese)

Wu L H, Li Z Q, Wang P Y, et al. 2011. Sounding the Sigong Riv-er Glacier No.4 in Mt. Bogda area, the Tianshan Mountains by using ground penetrating radar and estimating the ice volume. Journal of Glaciology and Geocryology, 33(3): 276–282. (in Chinese)

Wu Z, Liu S Y, Zhang S Q, et al. 2013. Accelerated thinning of Hei Valley No.8 Glacier in the Tianshan Mountains, China. Journal of Earth Science, 24(6): 1044–1055.

Xie C W, Ding Y J, Liu S Y, et al. 2006. Variation of Keqikaer Glacier terminus in Tomur Peak during last 30 years. Journal of Glaciology and Geocryology, 28(5): 672–677. (in Chinese)

Yang H A, Li Z Q, Ye B S, et al. 2005. Study on mass balance and process of Glacier No.1 at the headwaters of the Urumqi River in the past 44 years. Arid Land Geography, 28(1): 76–80. (in Chinese)

Yang Z N. 1991. Glacier Water Resources in China. Lanzhou: Gansu Science and Technology Press, 81–150. (in Chinese)

Zhang G F, Li Z Q, Wang W B, et al. 2014. Rapid decrease of observed mass balance in the Urumqi Glacier No.1, Tianshan Mountains, central Asia. Quaternary International, 349: 135–141.

Zhang Y, Liu S Y, Ding Y J, et al. 2006. Preliminary study of mass balance on the Keqicar Baxi Glacier on the south slopes of Tianshan Mountains. Journal of Glaciology and Geocryology, 28(4): 477–484. (in Chinese)
[1] NING Like, XIA Jun, ZHAN Chesheng, ZHANG Yongyong. Runoff of arid and semi-arid regions simulated and projected by CLM-DTVGM and its multi-scale fluctuations as revealed by EEMD analysis[J]. 干旱区科学, 2016, 8(4): 506-520.
[2] GAO Liming, ZHANG Yaonan. Spatio-temporal variation of hydrological drought under climate change during the period 1960–2013 in the Hexi Corridor, China[J]. 干旱区科学, 2016, 8(2): 157-171.
[3] GAO Guanlong, ZHANG Xiaoyou, YU Tengfei, LIU Bing. Comparison of three evapotranspiration models with eddy covariance measurements for a Populus euphratica Oliv. forest in an arid region of northwestern China[J]. 干旱区科学, 2016, 8(1): 146-156.
[4] Antonia LONGOBARDI, Elina KHAERTDINOVA. Relating soil moisture and air temperature to evapotranspiration fluxes during inter-storm periods at a Mediterranean experimental site[J]. 干旱区科学, 2015, 7(1): 27-36.
[5] XiaoLi YANG, LiLiang REN, Yi LIU, DongLai JIAO, ShanHu JIANG. Hydrological response to land use and land cover changes in a sub-watershed of West Liaohe River Basin, China[J]. 干旱区科学, 2014, 6(6): 678-689.
[6] Long WAN, Jun XIA, HongMei BU, Si HONG, JunXu CHEN, LiKe NING. Sensitivity and vulnerability of water resources in the arid Shiyang River Basin of Northwest China[J]. 干旱区科学, 2014, 6(6): 656-667.
[7] HongZhong DANG, TianShan ZHA, JinSong ZHANG, Wei LI, ShiZeng LIU. Radial profile of sap flow velocity in mature Xinjiang poplar (Populus alba L. var. pyramidalis) in Northwest China[J]. 干旱区科学, 2014, 6(5): 612-627.
[8] LiWen ZHAO, WenZhi ZHA. Evapotranspiration of an oasis-desert transition zone in the middle stream of Heihe River, Northwest China[J]. 干旱区科学, 2014, 6(5): 529-539.
[9] Xi CHEN, BaiLian LI, Qin LI, JunLi LI, Saparnov ABDULLA. Spatio-temporal pattern and changes of evapotranspiration in arid Central Asia and Xinjiang of China[J]. 干旱区科学, 2012, 4(1): 105-112.
[10] YuTing FAN, YaNing CHEN, WeiHong LI, HuaiJun WANG, XinGong LI. Impacts of temperature and precipitation on runoff in the Tarim River during the past 50 years[J]. 干旱区科学, 2011, 3(3): 220-230.
No Suggested Reading articles found!
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed