Solomon S, Qin D, Manning M, et al. Climate Change 2007-The Physical Science Basis: Working Group I Contribution to the Fourth Assessment Report of the Intergovernmental Panel on Climate Change[M]. Cambridge, UK: Cambridge University Press, 2007.
[2]
Steiner D, Pauling A, Nussbaumer S, et al. Sensitivity of European glaciers to precipitation and temperature-two case studies[J]. Climatic Change, 2008, 90(4): 413-441.
[3]
Ren Jiawen, Ye Baisheng, Ding Yongjian, et al. Initial estimate of the contribution of cryospheric change in China to sea level rise[J]. Chinese Sci Bull, 2011, 56 (16): 1661-1664.
[4]
Barnett T, Adam J, Lettenmaier D. Potential impacts of a warming climate on water availability in snow-dominated regions[J]. Nature, 2005, 438: 303-309.
[5]
Ding Y, Liu S, Li J, et al. The retreat of glaciers in response to recent climate warming in western China[J]. Annals of Glaciology, 2006, 43: 97-105.
[6]
Vuille M, Francou B, Wagnon P, et al. Climate change and tropical Andean glaciers: past, present and future[J]. Earth-Science Reviews, 2008, 89(3-4): 79-96.
[7]
Shen Yongping, Liang Hong. Global ice melting accelerated would threaten to human environmental safety[J]. Journal of Glaciology and Geocryology, 2001, 23(2): 208-211. [沈永平, 梁红. 全球冰川消融加剧使人类环境面临威胁[J]. 冰川冻土, 2001, 23(2): 208-211.]
[8]
Lu Anxin, Deng Xiaofeng, Zhao Shangxue, et al. Cause of debris flow in Guxiang Valley in Bomi, Tibet Autonomous Region, 2005[J]. Journal of Glaciology and Geocryology, 2006, 28(6): 956-960. [鲁安新, 邓晓峰, 赵尚学, 等. 全球冰川消融加剧使人类环境面临威胁[J]. 冰川冻土, 2006, 28(6): 956-960.]
[9]
Braithwaite R. Glacier mass balance: the first 50 years of international monitoring[J]. Progress in Physical Geography, 2002, 26(1): 76-95.
[10]
Liu S, Ding Y, Han H, et al. Glacier changes during the past century in the Gangrigabu Mountains, southeast Qinghai-Xizang (Tibetan) Plateau, China[J]. Annals of Glaciology, 2006, 43: 187-193.
[11]
Gleitsmann L, Kappas M. Glacier monitoring survey flight blow clouds in Alaska: oblique aerial photograph utilizing digital multiple-image photogrammetry to cope with adverse weather[M]. EARSeL eProceeding, 2006.
[12]
K??b A. Glacier volume changes using ASTER satellite stereo and ICESat GLAS laser altimetry. A test study on Edge ya, Eastern Svalbard[J]. IEEE Transactions on Geosciences and Remote Sensing, 2008, 46(10): 2823-2830.
[13]
Paul F, Andreassen L. A new glacier inventory for the Svartisen region, Norway, from Landsat ETM+ data challenges and change assessment[J]. Journal of Glaciology, 2009, 55(192): 607-618.
[14]
Koblet T, G?rtner-Roer I, Zemp M, et al. Reanalysis of multi-temporal aerial images of Storglaci ren, Sweden (1959-1999)-Part 1: Determination of length, area, and volume changes[J]. The Cryosphere, 2010, 4: 333-343.
[15]
Hu En, Yi Chaolu, Li Yanjun. Observation and evolution investigation of the morain geomorphology in the Rongbuk Valley of Mount Qomolangma[J]. Journal of Glaciology and Geocryology, 2010, 32(2): 316-324. [胡恩, 易朝路, 李艳军.珠穆朗玛峰绒布河谷冰碛地貌测量与演化研究[J]. 冰川冻土, 2010, 32(2): 316-324.]
[16]
Shangguan D, Liu S, Ding Y, et al. Changes in the elevation and extent of two glaciers along the Yanglonghe River, Qilian Shan, China[J]. Journal of Glaciology, 2010, 56(196): 309-317.
[17]
Li J, Liu S, Shangguan D, et al. Identification of ice elevation change of the Shuiguan River No.4 Glacier in the Qilian Mountains, China[J]. Journal of Mountain Science, 2010, 7(4): 375-379.
[18]
Liu Junfeng, Chen Rensheng, Song Yaoxuan, et al. Mapping snow cover based on digital photogrammetry[J]. Journal of Glaciology and Geocryology, 2012, 34(3): 618-624. [刘俊峰, 陈仁升, 宋耀选, 等. 基于数字摄影测量的雪盖制图方法探讨[J]. 冰川冻土, 2012, 34(3): 618-624.]
[19]
Wu Guanghe, Yutaka Ageta, Qiu Jiaqi. Physical geographic features and climatic conditiongs of glacier development in Bogda area Tian Shan[J]. Journal of Glaciology and Geocryology, 1983, 5(3): 5-15. [伍光和. 天山巴格达山脉的自然地理特征及冰川发育的气候条件[J]. 冰川冻土, 5(3): 5-15.]
[20]
Zheng Benxing, Wang Cunnian. A discussion on Quaternary glaciation in the Bogda Region, Tian Shan[J]. Journal of Glaciology and Geocryology, 1983, 5(3): 123-132. [郑本兴, 王存年. 天山博格达峰地区第四纪冰期探讨[J]. 冰川冻土, 1983, 5(3): 123-132.]
[21]
Qiu Jiaqi, Deng Yangxin. Snow avalanche in Bogda Region, Tian Shan[J]. Journal of Glaciology and Geocryology, 1983, 5(3): 227-234. [仇家琪, 邓养鑫. 天山博格达峰地区的雪崩[J]. 冰川冻土, 1983, 5(3): 227-234.]
[22]
Hu Xiaogang, Li Nianjie. A stochastic meltwater runoff model of Heigou Glacier No.8 in the southern slope of Mt. Bogda[J]. Journal of Glaciology and Geocryology, 1989, 11(3): 279-286. [胡小刚, 李念杰. 博格达山南坡黑沟八号冰川融水径流随机过程的模拟[J]. 冰川冻土, 1989, 11(3): 279-286.]
[23]
Wang Zongtai. A discusion on the questions of development of Heigou Glacier No.8, Bogda-peak region[J]. Journal of Glaciology and Geocryology, 1991, 13(2): 141-146, 158. [王宗太. 博格达峰黑沟8号冰川发育若干问题浅析[J]. 冰川冻土, 1991, 13(2): 141-146, 158.]
[24]
Liu Chaohai, Xie Zichu, Dyurgerov M B. Glaciation in Tianshan[M]. Beijing: Science Press, 1998.
[25]
Zhao Jingdong, Shi Yafeng, Li Zhongqin. Glacial geomorphology and glaciations at the Headwaters of the ürümqi River, Tianshan Mountains, China: Review and prospect[J]. Journal of Glaciology and Geocryology, 2011, 33(1): 118-125. [赵井东, 施雅风, 李忠勤. 天山乌鲁木齐河流域冰川地貌与冰期研究的回顾与展望[J]. 冰川冻土, 2011, 33(1): 118-125.]
[26]
Jiao Keqin, Ye Baisheng, Han Tianding, et al. Response of runoff to climate change in the Glacier No.1 at the headwater of ürümqi River, Tianshan Mountains during 1980-2006[J]. Journal of Glaciology and Geocryology, 2011, 33(3): 606-611. [焦克勤, 叶柏生, 韩添丁, 等. 天山乌鲁木齐河源1号冰川径流对气候变化的响应分析[J]. 冰川冻土, 2011, 33(3): 606-611.]
[27]
Lanzhou Institute of Glaciology and Geocryology, Chinese Academy of Science. Glacier Inventory of China, Ⅲ, Tianshan Mountains (Interior Drainage Area of Scattered Flow in East)[M]. Beijing: Science Press, 1986.
[28]
Hu Xiaogang, Li Nianjie, Deng Shiming. Glacier Meltwater Runoff on the South Slope of the Bogda Mt-take the Heigou Glacier as an Example[J]. Journal of Glaciology and Geocryology, 1990, 12(1): 71-82. [胡小刚, 李念杰, 邓世明. 博格达山南坡黑沟冰川融水径流[J]. 冰川冻土, 1990, 12(1): 71-82.]
[29]
Zhang Zuxun, Yang Shengchun, Zhang Jianqing, et al. Multi-baseline digital close-range photogrammetry[J]. Geospatial Information, 2007, 5(1): 1-4. [张祖勋, 杨生春, 张剑清, 等. 多基线-数字近景摄影测量[J]. 地理空间信息, 2007, 5(1): 1-4.]
[30]
Ke Tao, Zhang Zuxun, Yang Jianqing. Panning and multi-baseline digital close range photogrammetry[J]. Geomatics and Information Science of Wuhan University, 2009, 34(1): 44-47, 51. [柯涛, 张祖勋, 杨剑清. 旋转多基线数字近景摄影测量[J]. 武汉大学学报信息科学版, 2009, 34(1): 44-47, 51.]
[31]
Zhan Lei, Tang Guoan, Yang Xin. Evaluation of SRTM DEMs’ elevation accuracy: a case study in Shanxi Province[J]. Geography and Geo-Information Science, 2010, 26(1): 34-36. [詹蕾, 汤国安, 杨昕. SRTM DEM高程精度评价[J]. 地理与地理信息科学, 2010, 26(1): 34-36.]
[32]
Guo Xiaoyi, Zhang Hongyan, Zhang Zhengxiang, et al. Comparative analysis of the quality and accuracy between ASTER-GDEM and SRTM3[J]. Remote Sensing Technology and Application, 2011, 26(3): 334-339. [郭笑怡, 张洪岩, 张正祥, 等. ASTER-GDEM与SRTM3数据质量精度对比分析[J]. 遥感技术与应用, 2011, 26(3): 334-339.]