• Geographical Research
  • Vol. 39, Issue 10, 2403 (2020)
Qin JI1、2, Rui LIU1、3, and Taibao YANG2、*
Author Affiliations
  • 1School of Geography and Tourism, Chongqing Normal University, Key Laboratory of GIS Application, Chongqing Municipal Education Commission, Chongqing 401331, China
  • 2Institute of Glaciology and Ecogeography, College of Earth and Environmental Sciences, Lanzhou University, Lanzhou 730000, China
  • 3Chongqing Comprehensive Economic Research Institute, Chongqing 401147, China
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    DOI: 10.11821/dlyj020190283 Cite this Article
    Qin JI, Rui LIU, Taibao YANG. Glacier variations in the Himalayas during 1990-2015[J]. Geographical Research, 2020, 39(10): 2403 Copy Citation Text show less
    References

    [1] 秦大河, 效存德, 丁永建, 等. 国际冰冻圈研究动态和我国冰冻圈研究的现状与展望. 应用气象学报, 2006,17(6):649-656. [ QinDahe, XiaoCunde, DingYongjian, et al. Progress on cryospheric studies by international and chinese communities and perspectives. Journal of Applied Meteorological Science, 2006,17(6):649-656.] [Qin Dahe, Xiao Cunde, Ding Yongjian, et al. Progress on cryospheric studies by international and chinese communities and perspectives. Journal of Applied Meteorological Science, 2006, 17(6): 649-656.]

    [2] 牟建新, 李忠勤, 张慧, 等. 全球冰川面积现状及近期变化: 基于2017年发布的第6版Randolph冰川编目. 冰川冻土, 2018,40(2):238-248. [ MuJianxin, LiZhongqin, ZhangHui, et al. The global glacierized area: current situation and recent change, based on the Randolph Glacier Inventory (RGI 6.0) published in 2017. Journal of Glaciology and Geocryology, 2018,40(2):238-248.] [Mu Jianxin, Li Zhongqin, Zhang Hui, et al. The global glacierized area: current situation and recent change, based on the Randolph Glacier Inventory (RGI 6.0) published in 2017. Journal of Glaciology and Geocryology, 2018, 40(2): 238-248.]

    [3] 姚檀栋, 刘时银, 蒲健辰, 等. 高亚洲冰川的近期退缩及其对西北水资源的影响. 中国科学, 2004,36(6):535-543. [ YaoTandong, LiuShiyin, PuJianchen, et al. Recent glacial retreat in High Asia in China and its impact on water resource in northwest China. Science in China, 2004,36(6):535-543.] [Yao Tandong, Liu Shiyin, Pu Jianchen, et al. Recent glacial retreat in High Asia in China and its impact on water resource in northwest China. Science in China, 2004, 36(6): 535-543.]

    [4] PolashB, Mrinal KG, RatikaP. Identification of essential descriptors in spatial socioeconomic impact assessment modeling: A case study of highway broadening in Sikkim Himalaya[J]. Journal of Geovisualization and Spatial Analysis, 3, 1-18(2019).

    [5] RichterK, MarzeionB, RivaR. The effect of spatial averaging and glacier melt on detecting a forced signal in regional sea level[J]. Environmental Research Letters, 12, 034004(2017).

    [6] Immerzeel WW, Van BeekL P H, BierkensM F P. Climate change will affect the Asian water towers[J]. Science, 328, 1382-1385(2010).

    [7] 李吉均, 郑本兴, 杨锡金, 等. 西藏冰川. 北京: 科学出版社, 1986. [ LiJijun, ZhengBenxing, YangXijin, et al. Glaciers in Tibet. Beijing: Science Press, 1986.] [Li Jijun, Zheng Benxing, Yang Xijin, et al. Glaciers in Tibet. Beijing: Science Press, 1986.]

    [8] BhambriR, BolchT, Chaujar RK et al. Glacier changes in the Garhwal Himalaya, India, from 1968 to 2006 based on remote sensing[J]. Journal of Glaciology, 57, 543-556(2011).

    [9] PaulF. Changes in glacier area in Tyrol, Austria, between 1969 and 1992 derived from Landsat 5 Thematic Mapper and Austrian Glacier Inventory data[J]. International Journal of Remote Sensing, 23, 787-799(2002).

    [10] 冀琴. 1990—2015年喜马拉雅山冰川变化及其对气候波动的响应. 兰州: 兰州大学博士学位论文, 2018. [ JiQin. Glacier variations in response to climate change in the Himalaya during 1990-2015. Lanzhou: Doctoral Dissertation of Lanzhou University, 2018.] [Ji Qin. Glacier variations in response to climate change in the Himalaya during 1990-2015. Lanzhou: Doctoral Dissertation of Lanzhou University, 2018.]

    [11] BolchT, YaoT, KangS et al. A glacier inventory for the western Nyainqentanglha Range and the Nam Co Basin, Tibet, and glacier changes 1976-2009[J]. The Cryosphere, 4, 419-433(2010).

    [12] VincentC, WagnonP, Shea JM. Reduced melt on debris-covered glaciers: Investigations from Changri Nup Glacier, Nepal[J]. The Cryosphere, 10, 1845-1858(2016).

    [13] 上官冬辉. 基于3S的塔里木河流域冰川变化应用研究. 兰州: 中国科学院寒区旱区环境与工程研究所博士学位论文, 2007. [ ShangguanDonghui. Application research of glacier changes in tarim river basin based on 3S. Lanzhou: Doctoral Dissertation of Cold and Arid Regions Environment and Engineering Research Institute, 2007.] [Shangguan Donghui. Application research of glacier changes in tarim river basin based on 3S. Lanzhou: Doctoral Dissertation of Cold and Arid Regions Environment and Engineering Research Institute, 2007.]

    [14] SilverioW, JaquetJ. Glacial cover mapping (1987-1996) of the Cordillera Blanca (Peru) using satellite imagery[J]. Remote Sensing of Environment, 95, 342-350(2005).

    [15] JiQ, Yang TB, DongJ et al. Glacier variations in response to climate change in the eastern Nyainqêntanglha Range, Tibetan Plateau from 1999 to 2015[J]. Arctic, Antarctic, and Alpine Research, 50, e1435844(2018).

    [16] Ye QH, Zong JB, Tian LD et al. Glacier changes on the Tibetan Plateau derived from Landsat imagery: Mid-1970s-2000-13[J]. Journal of Glaciology, 63, 273-287(2017).

    [17] WangX, SiegertF, ZhouA et al. Glacier and glacial lake changes and their relationship in the context of climate change, Central Tibetan Plateau 1972-2010[J]. Global and Planetary Change, 111, 246-257(2013).

    [18] 苏珍, 张文敬, 丁良福. 托木尔峰地区的现代冰川. 乌鲁木齐: 新疆人民出版社, 1985. [ SuZhen, ZhangWenjing, DingLiangfu. Modern Glacier in the Tomur Region. Urumqi: Xinjiang People's Press, 1985.] [Su Zhen, Zhang Wenjing, Ding Liangfu. Modern Glacier in the Tomur Region. Urumqi: Xinjiang People's Press, 1985.]

    [19] 田洪阵, 杨太保, 刘沁萍. 1976—2010年祁连山中段岗格尔肖合力雪山冰川退缩和气候变化的关系研究. 干旱区资源与环境, 2012,26(7):41-46. [ TianHongzhen, YangTaibao, LiuQinping. Climate change and glacier retreat in Ganggeexiaoheli, middle Qilian Mountains using remote sensing data, 1976-2010. Journal of Arid Land Resources and Environment, 2012,26(7):41-46.] [Tian Hongzhen, Yang Taibao, Liu Qinping. Climate change and glacier retreat in Ganggeexiaoheli, middle Qilian Mountains using remote sensing data, 1976-2010. Journal of Arid Land Resources and Environment, 2012, 26(7): 41-46.]

    [20] Hasnain SI. Status of the glacier research in the HKH region[J]. International Journal of Computer Applications, 68, 24-30(2000).

    [21] 杨续超, 张镱锂, 张玮, 等. 珠穆朗玛峰地区近34年来气候变化. 地理学报, 2006,61(7):687-696.

    [22] 程维明, 赵尚民, 叶庆华, 等. 青藏高原高寒地貌格局与变化. 北京: 科学出版社, 2017. [ ChenWeiming, ZhaoShangmin, YeQinghua, et al. Pattern and change of Alpine landform in Tibetan Plateau. Beijing: Science Press, 2017.] [Chen Weiming, Zhao Shangmin, Ye Qinghua, et al. Pattern and change of Alpine landform in Tibetan Plateau. Beijing: Science Press, 2017.]

    [23] 施雅风, 刘时银, 上官冬辉, 等. 近30a青藏高原气候与冰川变化中的两种特殊现象. 气候变化研究进展, 2006,2(4):154-160.

    [24] SalernoF, GuyennonN, ThakuriS et al. Weak precipitation, warm winters and springs impact glaciers of south slopes of Mt. Everest (central Himalaya) in the last 2 decades (1994-2013)[J]. The Cryosphere, 9, 1229-1247(2015).

    [25] 姚檀栋, 段克勤, 田立德, 等. 达索普冰芯积累量记录和过去400a来印度夏季风降水变化. 中国科学: D辑, 2000,30(6):619-627. [ YaoTandong, DuanKeqin, TianLide, et al. Accumulation record of Dasop Ice Core and Indian Summer monsoon precipitation variation in the Past 400 Years. Science in China: Series D, 2000,30(6):619-627.] [Yao Tandong, Duan Keqin, Tian Lide, et al. Accumulation record of Dasop Ice Core and Indian Summer monsoon precipitation variation in the Past 400 Years. Science in China: Series D, 2000, 30(6): 619-627.]

    [26] KaspariS, Hooke RL, Mayewski PA et al. Snow accumulation rate on Qomolangma (Mount Everest), Himalaya: Synchroneity with sites across the Tibetan Plateau on 50-100 year timescales[J]. Journal of Glaciology, 54, 343-352(2008).

    [27] 段克勤, 姚檀栋, 蒲健辰, 等. 喜马拉雅山地区冰川积累量记录的季风降水对气候变暖的响应. 科学通报, 2002,46(19):1508-1511. [ DuanKeqin, YaoTandong, PuJianchen, et al. Response of monsoon precipitation recorded by glacier accumulation in the Himalaya to climate warming. Science Bulletin, 2002,46(19):1508-1511.] [Duan Keqin, Yao Tandong, Pu Jianchen, et al. Response of monsoon precipitation recorded by glacier accumulation in the Himalaya to climate warming. Science Bulletin, 2002, 46(19): 1508-1511.]

    [28] Xu BQ, Cao JJ, HansenJ et al. Black soot and the survival of Tibetan glaciers[C]. Proceedings of the National Academy of Sciences, 106, 22114-22118(2009).

    [29] Chen JZ, QinX, Kang SC et al. Potential effect of black carbon on glacier mass balance during the past 55 years of Laohugou Glacier No. 12 Western Qilian Mountains[J]. Journal of Earth Science, 31, 410-418(2020).

    [30] Hu ZF, Kang SC, Li XF et al. Relative contribution of mineral dust versus black carbon to Thifd Pole glacier melting[J]. Atmospheric Environment(2020). https://www.ncbi.nlm.nih.gov/pubmed/32313426

    Qin JI, Rui LIU, Taibao YANG. Glacier variations in the Himalayas during 1990-2015[J]. Geographical Research, 2020, 39(10): 2403
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