中国地质环境监测院
中国地质灾害防治工程行业协会
主办

西藏地区冰崩灾害研究进展

张议芳, 刘阳, 苏鹏程, 韦方强, 黄海涛, 陈乔. 西藏地区冰崩灾害研究进展[J]. 中国地质灾害与防治学报, 2023, 34(2): 132-145. doi: 10.16031/j.cnki.issn.1003-8035.202110022
引用本文: 张议芳, 刘阳, 苏鹏程, 韦方强, 黄海涛, 陈乔. 西藏地区冰崩灾害研究进展[J]. 中国地质灾害与防治学报, 2023, 34(2): 132-145. doi: 10.16031/j.cnki.issn.1003-8035.202110022
ZHANG Yifang, LIU Yang, SU Pengcheng, WEI Fangqiang, HUANG Haitao, CHEN Qiao. Advances in the study of glacier avalanches in Tibet[J]. The Chinese Journal of Geological Hazard and Control, 2023, 34(2): 132-145. doi: 10.16031/j.cnki.issn.1003-8035.202110022
Citation: ZHANG Yifang, LIU Yang, SU Pengcheng, WEI Fangqiang, HUANG Haitao, CHEN Qiao. Advances in the study of glacier avalanches in Tibet[J]. The Chinese Journal of Geological Hazard and Control, 2023, 34(2): 132-145. doi: 10.16031/j.cnki.issn.1003-8035.202110022

西藏地区冰崩灾害研究进展

  • 基金项目: 西藏自治区自然资源厅防治能力体系建设项目(2020-0890-2);西藏自治区日喀则市科技计划项目(RKZ2020kj01);浙江省岩石力学与地质灾害重点实验室开放基金(ZJRMG-2019-01)
详细信息
    作者简介: 张议芳(1995-),女,四川宜宾人,硕士研究生,主要从事地质灾害监测预警研究。E-mail: zhangyifang@cigit.ac.cn
    通讯作者: 陈 乔(1982-),男,四川遂宁人,博士研究生,副研究员,主要从事岩石力学、声学,地质灾害预警研究。E-mail:chenqiao@cigit.ac.cn
  • 中图分类号: P694

Advances in the study of glacier avalanches in Tibet

More Information
  • 随着全球气候的变暖,青藏高原地区冰川消融、退缩加剧,稳定性降低,增加了冰崩灾害的发生频率。西藏地区作为青藏高原的主体部分,其冰川的稳定影响着我国及周边国家的水源及生命财产安全。文章通过梳理国内外冰崩的研究现状,整理了西藏地区冰崩灾害的定义;从地形因素、构造运动和气候作用角度分析了冰崩形成机制;归纳分析了冰崩—冰湖溃决—泥石流链式灾害、冰崩—堵溃—泥石流链式灾害、冰崩—直接型泥石流(山洪)灾害3种类型冰崩灾害链的特征;阐述了目前冰崩灾害监测预警的手段及特点,认为多种监测方式联合是冰崩灾害监测的发展趋势,展望了冰崩灾害的研究体系,以期能为后续的研究工作提供思路。

  • 加载中
  • 图 1  1949—2020年西藏地区里氏4.0级以上地震分布图

    Figure 1. 

    图 2  1949—2020年西藏地区冰崩分布图

    Figure 2. 

    图 3  1949—2020西藏各地区冰崩统计

    Figure 3. 

    图 4  西藏地区近70年年平均降水量、气温变化图

    Figure 4. 

    图 5  1949—2020年西藏地区冰崩发生月份分布图

    Figure 5. 

    表 1  1949—2020年西藏地区冰崩统计

    Table 1.  Ice avalanche statistics in Tibet from 1949 to 2020

    地点年月成因成灾形式地区
    则隆弄冰川[3,32]1950年8月地震冰崩—泥石流—堵塞坝米林县
    桑旺错[22,33-34]1954年7月气候冰崩—冰湖溃决—泥石流—洪水康马县
    次仁玛措[22,35]1964年冰崩—冰湖溃决聂拉木县
    章藏错[34]1964年冰崩-洪水-泥石流聂拉木县
    隆达错[20]1964年8月冰崩—冰湖溃决—泥石流吉隆县
    吉莱错[33,35]1964年9月冰崩—冰湖溃决—泥石流定结县
    达门拉咳错[20,33-35]1964年9月冰崩—冰湖溃决—泥石流工布江达县
    阿亚错[20,33-35]1968年/1969年/1970年8月冰崩—冰湖溃决—泥石流—洪水定日县
    坡戈错[20,33-35]1972年7月高温冰崩—冰湖溃决—泥石流索县
    坡戈冰湖[35]1974年7月冰崩—冰湖溃决—洪水丁青县
    扎日错[20,33-35]1981年6月冰崩—冰湖溃决—泥石流洛扎县
    次仁玛措[20,35-38]1981年7月高温冰崩—冰湖溃决—泥石流聂拉木县
    印达普错[22,35]1982年8月定结县
    金错[39]1982年8月冰崩—冰湖溃决—洪水—泥石流定结县
    培龙沟上游[21,34]1983年7月/1984年8月/1985年6月气候冰崩—临时性冰湖-冰湖溃决-泥石流林芝县
    光谢错[20-21,33,40]1988年7月气候冰崩—冰湖溃决-泥石流—堵江波密县
    热杰错[35]1992年9/10月冰崩—冰湖溃决亚东县
    夏嘎湖[35]1995年5月高温冰崩—洪水乃东县
    扎那泊[35]1995年6月冰崩—冰湖溃决—泥石流吉隆县
    扎木弄沟[41]2000年4月地震冰崩—滑坡—堰塞湖—泥石流波密县
    龙纠错[35,39]2000年8月康马县
    冲巴吓错[42]2000年8月冰滑坡—冰湖溃决—泥石流康马县
    嘉龙错[20,21,34-35]2002年5/6月冰崩—冰湖溃决—泥石流—洪水聂拉木县
    得嘎错[20,21,34]2002年9月冰崩—冰湖溃决—泥石流—洪水洛扎县
    浪错[22,39,43]2007年8月错那县
    尖母普曲[34]2008年4月冰崩—泥石流—洪水林芝县
    折麦错[39,44]2009年7月错那县
    错嘎湖[22,39]2009年7月边坝县
    给曲冰湖[39]2010年7月定结县
    然则日阿错[3]2013年7月气候冰、雪崩—冰湖溃决—洪水—泥石流嘉黎县
    那隆藏布沟[35]2014年6月气候冰崩—泥石流—冰湖溃决—洪水波密县
    土拉沟冰湖[35]2015年7月气候冰崩堵塞管涌通道—冰湖溃决—洪水边坝县
    阿汝村[1,3,45]2016年7/9月气候冰崩日土县
    色东普沟[3,11]2014年/2017年10/12月/2018年7/10月降雨冰崩—碎屑流—堵江米林县
    下载: 导出CSV
  • [1]

    胡文涛,姚檀栋,余武生,等. 高亚洲地区冰崩灾害的研究进展[J]. 冰川冻土,2018,40(6):1141 − 1152. [HU Wentao,YAO Tandong,YU Wusheng,et al. Advances in the study of glacier avalanches in High Asia[J]. Journal of Glaciology and Geocryology,2018,40(6):1141 − 1152. (in Chinese with English abstract)

    [2]

    裴丽鑫. 青藏高原地区冰崩灾害特征与类型的初步研究[D]. 北京: 中国地质大学(北京), 2019

    PEI Lixin. The preliminary study of characteristics and types of ice avalanche disaster in the Tibetan Plateau[D]. Beijing: China University of Geosciences, 2019. (in Chinese with English abstract)

    [3]

    童立强,裴丽鑫,涂杰楠,等. 冰崩灾害的界定与类型划分—以青藏高原地区为例[J]. 国土资源遥感,2020,32(2):11 − 18. [TONG Liqiang,PEI Lixin,TU Jienan,et al. A preliminary study of definition and classification of ice avalanche in the Tibetan Plateau region[J]. Remote Sensing for Land & Resources,2020,32(2):11 − 18. (in Chinese with English abstract)

    [4]

    SALZMANN N,KÄÄB A,HUGGEL C,et al. Assessment of the hazard potential of ice avalanches using remote sensing and GIS-modelling[J]. Norsk Geografisk Tidsskrift - Norwegian Journal of Geography,2004,58(2):74 − 84. doi: 10.1080/00291950410006805

    [5]

    FAILLETTAZ J,FUNK M,SORNETTE D. Instabilities on Alpine temperate glaciers:New insights arising from the numerical modelling of Allalingletscher (Valais,Switzerland)[J]. Natural Hazards and Earth System Sciences,2012,12(9):2977 − 2991. doi: 10.5194/nhess-12-2977-2012

    [6]

    COLLINS D N. Hydrometeorological conditions, mass balance and runoff from alpine glaciers[M]//Glaciology and Quaternary Geology. Dordrecht: Springer Netherlands, 1989: 235 − 260.

    [7]

    DOKUKIN M D,BEKKIEV M Y,KALOV K M,et al. Monitoring of ice avalanche using aerospace and ground information[J]. IOP Conference Series:Materials Science and Engineering,2020,913(5):052040. doi: 10.1088/1757-899X/913/5/052040

    [8]

    王世金,效存德. 全球冰冻圈灾害高风险区:影响与态势[J]. 科学通报,2019,64(9):890 − 900. [WANG Shijin,XIAO Cunde. Global cryospheric disaster at high risk areas:impacts and trend[J]. Chinese Science Bulletin,2019,64(9):890 − 900. (in Chinese with English abstract)

    [9]

    SCHNEIDER D,KAITNA R,DIETRICH W E,et al. Frictional behavior of granular gravel-ice mixtures in vertically rotating drum experiments and implications for rock-ice avalanches[J]. Cold Regions Science and Technology,2011,69(1):70 − 90. doi: 10.1016/j.coldregions.2011.07.001

    [10]

    GOODSELL B,ANDERSON B,LAWSON W J,et al. Outburst flooding at Franz Josef glacier,south Westland,Newzealand[J]. Newzealand Journal of Geology and Geophysics,2005,48(1):95 − 104. doi: 10.1080/00288306.2005.9515101

    [11]

    张俊才,周保,曹小岩,等. 阿尼玛卿山冰崩链生灾害基本特征分析[J]. 人民黄河,2019,41(11):17 − 21. [ZHANG Juncai,ZHOU Bao,CAO Xiaoyan,et al. Analysis of basic characteristics of glacial collapse chain hazards in animaqing mountain[J]. Yellow River,2019,41(11):17 − 21. (in Chinese with English abstract) doi: 10.3969/j.issn.1000-1379.2019.11.004

    [12]

    殷跃平,李滨,张田田,等. 印度查莫利“2·7”冰岩山崩堵江溃决洪水灾害链研究[J]. 中国地质灾害与防治学报,2021,32(3):1 − 8. [YIN Yueping,LI Bin,ZHANG Tiantian,et al. The February 7 of 2021 glacier-rock avalanche and the outburst flooding disaster chain in Chamoli,India[J]. The Chinese Journal of Geological Hazard and Control,2021,32(3):1 − 8. (in Chinese with English abstract) doi: 10.16031/j.cnki.issn.1003-8035.2021.03-01

    [13]

    杨凯奇, 宋一顺, 冯雅雯. 62人遇难142人失踪, 印度北部冰川断裂带来警醒[EB/OL]. 2021-02-21.

    YANG Kaiqi, SONG Yishun, FENG Yawen. 62 people were killed and 142 missing, alerted by the rupture of glaciers in northern India[EB/OL]. 2021-02-21. (in Chinese)

    [14]

    STUART-SMITH R F,ROE G H,LI S,et al. Increased outburst flood hazard from Lake Palcacocha due to human-induced glacier retreat[J]. Nature Geoscience,2021,14(2):85 − 90. doi: 10.1038/s41561-021-00686-4

    [15]

    ZHENG G X,ALLEN S K,BAO A M,et al. Increasing risk of glacial lake outburst floods from future Third Pole deglaciation[J]. Nature Climate Change,2021,11(5):411 − 417. doi: 10.1038/s41558-021-01028-3

    [16]

    黄田进. 青藏高原冰川厚度与湖泊水位的时空变化研究[D]. 北京: 中国科学院大学(中国科学院遥感与数字地球研究所), 2017

    HUANG Tianjin. Spatial-temporal changes of glacier thickness and lake level on the Qinghai-Tibetan Plateau[D]. Beijing: University of Chinese Academy of Sciences (Institute of Remote Sensing and Digital Earth Chinese Academy Sciences), 2017. (in Chinese with English abstract)

    [17]

    RÖTHLISBERGER H. Ice avalanches[J]. Journal of Glaciology,1977,19(81):669 − 671. doi: 10.1017/S0022143000029580

    [18]

    MARGRETH S,FUNK M. Hazard mapping for ice and combined snow/ice avalanches—two case studies from the Swiss and Italian Alps[J]. Cold Regions Science and Technology,1999,30(1/2/3):159 − 173.

    [19]

    吕儒仁,李德基. 西藏工布江达县唐不朗沟的冰湖溃决泥石流[J]. 冰川冻土,1986,8(1):61 − 71. [LYU Ruren,LI Deji. Debris flow induced by ice lake burst in the tangbulang gully,Gongbujiangda,Xizang (Tibet)[J]. Journal of Glaciology and Geocryology,1986,8(1):61 − 71. (in Chinese with English abstract)

    [20]

    刘晶晶,程尊兰,李泳,等. 西藏冰湖溃决主要特征[J]. 灾害学,2008,23(1):55 − 60. [LIU Jingjing,CHENG Zunlan,LI Yong,et al. Characteristics of glacier-lake breaks in Tibet[J]. Journal of Catastrophology,2008,23(1):55 − 60. (in Chinese with English abstract) doi: 10.3969/j.issn.1000-811X.2008.01.013

    [21]

    程尊兰,朱平一,党超,等. 藏东南冰湖溃决泥石流灾害及其发展趋势[J]. 冰川冻土,2008,30(6):954 − 959. [CHENG Zunlan,ZHU Pingyi,DANG Chao,et al. Hazards of debris flow due to glacier-lake outburst in southeastern Tibet[J]. Journal of Glaciology and Geocryology,2008,30(6):954 − 959. (in Chinese with English abstract)

    [22]

    姚晓军,刘时银,孙美平,等. 20世纪以来西藏冰湖溃决灾害事件梳理[J]. 自然资源学报,2014,29(8):1377 − 1390. [YAO Xiaojun,LIU Shiyin,SUN Meiping,et al. Study on the glacial lake outburst flood events in Tibet since the 20th century[J]. Journal of Natural Resources,2014,29(8):1377 − 1390. (in Chinese with English abstract) doi: 10.11849/zrzyxb.2014.08.010

    [23]

    吴积善,张信宝,汪阳春. 川西北高原山地灾害垂直地带性[J]. 山地学报,2006,24(2):161 − 166. [WU Jishan,ZHANG Xinbao,WANG Yangchun. The vertical zonality of mountain hazards on the north-western plateau in Sichuan[J]. Journal of Mountain Science,2006,24(2):161 − 166. (in Chinese with English abstract) doi: 10.3969/j.issn.1008-2786.2006.02.006

    [24]

    钟敦伦,谢洪,韦方强,等. 论山地灾害链[J]. 山地学报,2013,31(3):314 − 326. [ZHONG Dunlun,XIE Hong,WEI Fangqiang,et al. Discussion on mountain hazards chain[J]. Journal of Mountain Science,2013,31(3):314 − 326. (in Chinese with English abstract) doi: 10.3969/j.issn.1008-2786.2013.03.009

    [25]

    秦大河. 冰冻圈科学辞典[Z]. 北京: 气象出版社, 2014

    QIN Dahe. Glossary of cryosphere science[Z]. Beijing: China Meteorological Press, 2014. (in Chinese)

    [26]

    王世金,温家洪. 冰冻圈灾害特征、影响及其学科发展展望[J]. 中国科学院院刊,2020,35(4):523 − 530. [WANG Shijin,WEN Jiahong. Characteristics,influence of cryosphere disaster and prospect of discipline development[J]. Bulletin of Chinese Academy of Sciences,2020,35(4):523 − 530. (in Chinese with English abstract)

    [27]

    舒有锋. 西藏喜马拉雅山地区冰碛湖溃决危险性评价及其演进数值模拟[D]. 长春: 吉林大学, 2011

    SHU Youfeng. Hazard assessment of moraine-dammed lake outbursts in the Himalayas, Tibet and the propagating numerical simulation[D]. Changchun: Jilin University, 2011. (in Chinese with English abstract)

    [28]

    童立强,涂杰楠,裴丽鑫,等. 雅鲁藏布江加拉白垒峰色东普流域频繁发生碎屑流事件初步探讨[J]. 工程地质学报,2018,26(6):1552 − 1561. [TONG Liqiang,TU Jienan,PEI Lixin,et al. Preliminary discussion of the frequently debris flow events in sedongpu basin at gyalaperi peak,Yarlung Zangbo River[J]. Journal of Engineering Geology,2018,26(6):1552 − 1561. (in Chinese with English abstract) doi: 10.13544/j.cnki.jeg.2018-401

    [29]

    沈永平,苏宏超,王国亚,等. 新疆冰川、积雪对气候变化的响应(II):灾害效应[J]. 冰川冻土,2013,35(6):1355 − 1370. [SHEN Yongping,SU Hongchao,WANG Guoya,et al. The responses of glaciers and snow cover to climate change in Xinjiang(II):Hazards effects[J]. Journal of Glaciology and Geocryology,2013,35(6):1355 − 1370. (in Chinese with English abstract)

    [30]

    刘淑珍, 李辉霞, 鄢燕, 柴宗新, 杜少平. 西藏自治区洛扎县冰湖溃决危险度评价[J]. 山地学报, 2003, 21(增刊1): 128 − 132

    LIU Shuzhen, LI Huixia, YAN Yan, et al. Assessment of bursting hazards of the ice lakes in Luozha County, Tibet[J]. Journal of Mountain Research, 2003, 21(Sup 1): 128 − 132. (in Chinese with English abstract)

    [31]

    刘秧. 西藏终碛堤冰湖溃决冰川、温度条件的初步研究[D]. 成都: 成都理工大学, 2016

    LIU Yang. Preliminary study on the glacial and temperature conditions of terminal moraine dam glacier lake outburst in Tibet[D]. Chengdu: Chengdu University of Technology, 2016. (in Chinese with English abstract)

    [32]

    李军,褚宏亮,李滨,等. 基于高分影像与InSAR解译的西藏林芝则隆弄高位链式地质灾害发育特征分析[J]. 中国地质灾害与防治学报,2021,32(3):42 − 50. [LI Jun,CHU Hongliang,LI Bin,et al. Analysis of development characteristics of high-elevationchain geological hazard in Zelongnong,Nyingchi,Tibet based on high resolution image and InSAR interpretation[J]. The Chinese Journal of Geological Hazard and Control,2021,32(3):42 − 50. (in Chinese with English abstract) doi: 10.16031/j.cnki.issn.1003-8035.2021.03-06

    [33]

    蒋忠信,崔鹏,蒋良潍. 冰碛湖漫溢型溃决临界水文条件[J]. 铁道工程学报,2004,21(4):21 − 26. [JIANG Zhongxin,CUI Peng,JIANG Liangwei. Critical hydrologic condition for overflow burst of moraine lake[J]. Journal of Railway Engineering Society,2004,21(4):21 − 26. (in Chinese with English abstract) doi: 10.3969/j.issn.1006-2106.2004.04.006

    [34]

    程尊兰,田金昌,张正波,等. 藏东南冰湖溃决泥石流形成的气候因素与发展趋势[J]. 地学前缘,2009,16(6):207 − 214. [CHENG Zunlan,TIAN Jinchang,ZHANG Zhengbo,et al. Debris flow induced by glacial-lake break in Southeast Tibet[J]. Earth Science Frontiers,2009,16(6):207 − 214. (in Chinese with English abstract) doi: 10.3321/j.issn:1005-2321.2009.06.023

    [35]

    刘建康,张佳佳,高波,等. 我国西藏地区冰湖溃决灾害综述[J]. 冰川冻土,2019,41(6):1335 − 1347. [LIU Jiankang,ZHANG Jiajia,GAO Bo,et al. An overview of glacial lake outburst flood in Tibet,China[J]. Journal of Glaciology and Geocryology,2019,41(6):1335 − 1347. (in Chinese with English abstract)

    [36]

    李鸿琏,蔡祥兴. 中国冰川泥石流的一些特征[J]. 水土保持通报,1989,9(6):1 − 9. [LI Honglian,CAI Xiangxing. The glacial debris flow of China[J]. Bulletin of Soil and Water Conservation,1989,9(6):1 − 9. (in Chinese with English abstract) doi: 10.13961/j.cnki.stbctb.1989.06.001

    [37]

    徐道明. 西藏波曲河冰湖溃决泥石流的形成与沉积特征[J]. 冰川冻土,1987,9(1):23 − 34. [XU Daoming. Characteristics of debris flow caused by outburst of glacial lakes on the Boqu River in Xizang,China[J]. Journal of Glaciology and Geocryology,1987,9(1):23 − 34. (in Chinese with English abstract)

    [38]

    YAMADA T. Glacier lakes and outburst floods in the Nepal Himalayas[C]. Snow and Glacier Hydrology. IAHS Publication, 1993.

    [39]

    贾洋,崔鹏. 西藏冰湖溃决灾害事件极端气候特征[J]. 气候变化研究进展,2020,16(4):395 − 404. [JIA Yang,CUI Peng. The extreme climate background for glacial lakes outburst flood events in Tibet[J]. Climate Change Research,2020,16(4):395 − 404. (in Chinese with English abstract)

    [40]

    唐得胜,杨永红,常鸣. 藏东南地区冰湖溃决泥石流灾害链成因分析及防治措施[J]. 水电能源科学,2013,31(12):174 − 178. [TANG Desheng,YANG Yonghong,CHANG Ming. Cause analysis and preventive measures of debris flow disaster-chain due to glacial lake outburst in southeastern Tibet[J]. Water Resources and Power,2013,31(12):174 − 178. (in Chinese with English abstract)

    [41]

    李俊,陈宁生,刘美,等. 2000年易贡乡扎木弄沟滑坡型泥石流主控因素分析[J]. 南水北调与水利科技,2018,16(6):187 − 193. [LI Jun,CHEN Ningsheng,LIU Mei,et al. Analysis of main factors for landslide-triggered debris flow in Zhamunong gully on April 9th,2000[J]. South-to-North Water Transfers and Water Science & Technology,2018,16(6):187 − 193. (in Chinese with English abstract) doi: 10.13476/j.cnki.nsbdqk.2018.0170

    [42]

    刘春玲,童立强,祁生文,等. 喜马拉雅山地区冰川湖溃决灾害隐患遥感调查及影响因素分析[J]. 国土资源遥感,2016,28(3):110 − 115. [LIU Chunling,TONG Liqiang,QI Shengwen,et al. Remote sensing investigation and influence factor analysis of glacier lake outburst potential in the Himalayas[J]. Remote Sensing for Land & Resources,2016,28(3):110 − 115. (in Chinese with English abstract)

    [43]

    莫艳合,许冲,刘灿. 西藏错那县“2007-08-10”特大泥石流灾害成因及防治对策[J]. 防灾科技学院学报,2008,10(3):43 − 46. [MO Yanhe,XU Chong,LIU Can. The causes and prevention countermeasures of 2007-08-10 large-scale debris flow hazard in Cuona County,Tibet[J]. Journal of Institute of Disaster-Prevention Science and Technology,2008,10(3):43 − 46. (in Chinese with English abstract) doi: 10.3969/j.issn.1673-8047.2008.03.009

    [44]

    刘晶晶,唐川,程尊兰,等. 气温对西藏冰湖溃决事件的影响[J]. 吉林大学学报(地球科学版),2011,41(4):1121 − 1129. [LIU Jingjing,TANG Chuan,CHENG Zunlan,et al. Impact of temperature on glacier-lake outbursts in Tibet[J]. Journal of Jilin University (Earth Science Edition),2011,41(4):1121 − 1129. (in Chinese with English abstract)

    [45]

    KÄÄB A,LEINSS S,GILBERT A,et al. Massive collapse of two glaciers in western Tibet in 2016 after surge-like instability[J]. Nature Geoscience,2018,11(2):114 − 120. doi: 10.1038/s41561-017-0039-7

    [46]

    王欣, 刘时银, 丁永建. 中国喜马拉雅山冰碛湖溃决灾害评价方法与应用研究[M]. 北京: 科学出版社, 2016

    WANG Xin, LIU Shiyin, DING Yongjian. Study on evaluation method and application of moraine lake burst disaster in Himalayas of China[M]. Beijing: Science Press, 2016. (in Chinese)

    [47]

    王欣,刘琼欢,蒋亮虹,等. 基于SAR影像的喜马拉雅山珠穆朗玛峰地区冰川运动速度特征及其影响因素分析[J]. 冰川冻土,2015,37(3):570 − 579. [WANG Xin,LIU Qionghuan,JIANG Lianghong,et al. Characteristics and influence factors of glacier surface flow velocity in the Everest region,the Himalayas derived from ALOS/PALSAR images[J]. Journal of Glaciology and Geocryology,2015,37(3):570 − 579. (in Chinese with English abstract)

    [48]

    李林凤,李开明. 石羊河流域冰川变化与地形因子的关系探究[J]. 冰川冻土,2019,41(5):1026 − 1035. [LI Linfeng,LI Kaiming. Study on the relationship between glacier change and topographic factors in the Shiyang River Basin[J]. Journal of Glaciology and Geocryology,2019,41(5):1026 − 1035. (in Chinese with English abstract)

    [49]

    ABDULLAH T,ROMSHOO S A,RASHID I. The satellite observed glacier mass changes over the Upper Indus Basin during 2000-2012[J]. Scientific Reports,2020,10(1):14285. doi: 10.1038/s41598-020-71281-7

    [50]

    杨针娘. 中国冰川水资源[M]. 兰州: 甘肃科学技术出版社, 1991

    YANG Zhenniang. Glacier water resources in China[M]. Lanzhou: Gansu Science & Technology Press, 1991. (in Chinese)

    [51]

    冀琴,刘睿,杨太保. 1990—2015年喜马拉雅山冰川变化的遥感监测[J]. 地理研究,2020,39(10):2403 − 2414. [JI Qin,LIU Rui,YANG Taibao. Glacier variations in the Himalayas during 1990-2015[J]. Geographical Research,2020,39(10):2403 − 2414. (in Chinese with English abstract) doi: 10.11821/dlyj020190283

    [52]

    刘时银, 蒲健辰, 邓晓峰. 中国冰川图鉴[M]. 上海: 上海科学普及出版社, 2014

    LIU Shiyin, PU Jianchen, DENG Xiaofeng. Glaciers and glacial landscapes in China[M]. Shanghai: Shanghai Popular Science Press, 2014. (in Chinese)

    [53]

    KOTLYAKOV V M,ROTOTAEVA O V,NOSENKO G A. The September 2002 kolka glacier catastrophe in north Ossetia,Russian federation:Evidence and analysis[J]. Mountain Research and Development,2004,24(1):78 − 83. doi: 10.1659/0276-4741(2004)024[0078:TSKGCI]2.0.CO;2

    [54]

    HAEBERLI W,HUGGEL C,KÄÄB A,et al. The Kolka-Karmadon rock/ice slide of 20 September 2002:An extraordinary event of historical dimensions in North Ossetia,Russian Caucasus[J]. Journal of Glaciology,2004,50(171):533 − 546. doi: 10.3189/172756504781829710

    [55]

    杜军,路红亚,建军. 1961—2010年西藏极端气温事件的时空变化[J]. 地理学报,2013,68(9):1269 − 1280. [DU Jun,LU Hongya,JIAN Jun. Variations of extreme air temperature events over Tibet from 1961 to 2010[J]. Acta Geographica Sinica,2013,68(9):1269 − 1280. (in Chinese with English abstract) doi: 10.11821/dlxb201309010

    [56]

    段安民,肖志祥,吴国雄. 1979—2014年全球变暖背景下青藏高原气候变化特征[J]. 气候变化研究进展,2016,12(5):374 − 381. [DUAN Anmin,XIAO Zhixiang,WU Guoxiong. Characteristics of climate change over the Tibetan Plateau under the global warming during 1979-2014[J]. Climate Change Research,2016,12(5):374 − 381. (in Chinese with English abstract)

    [57]

    GAO J,YAO T D,MASSON-DELMOTTE V,et al. Collapsing glaciers threaten Asia ’s water supplies[J]. Nature,2019,565(7737):19 − 21. doi: 10.1038/d41586-018-07838-4

    [58]

    蒲健辰,姚檀栋,王宁练,等. 近百年来青藏高原冰川的进退变化[J]. 冰川冻土,2004,26(5):517 − 522. [PU Jianchen,YAO Tandong,WANG Ninglian,et al. Fluctuations of the glaciers on the Qinghai-Tibetan Plateau during the past century[J]. Journal of Glaciology and Geocryology,2004,26(5):517 − 522. (in Chinese with English abstract)

    [59]

    刘建康,程尊兰,郭芬芬,等. 藏东南典型冰湖溃决危险性分析[J]. 灾害学,2011,26(2):45 − 49. [LIU Jiankang,CHENG Zunlan,GUO Fenfen,et al. Analysis on risk of glacier-lake outburst in southeastern Tibet[J]. Journal of Catastrophology,2011,26(2):45 − 49. (in Chinese with English abstract) doi: 10.3969/j.issn.1000-811X.2011.02.009

    [60]

    张宁宁,何元庆,和献中,等. 玉龙雪山冰川崩塌成因分析[J]. 山地学报,2007,25(4):412 − 418. [ZHANG Ningning,HE Yuanqing,HE Xianzhong,et al. The analysis of icefall at Mt. Yulong[J]. Journal of Mountain Science,2007,25(4):412 − 418. (in Chinese with English abstract) doi: 10.3969/j.issn.1008-2786.2007.04.005

    [61]

    SHEN Y P. A giant avalanche on K2 mount,Karakorum[J]. GeoJournal,1991,25(2):249 − 254.

    [62]

    孙美平,刘时银,姚晓军,等. 2013年西藏嘉黎县“7.5”冰湖溃决洪水成因及潜在危害[J]. 冰川冻土,2014,36(1):158 − 165. [SUN Meiping,LIU Shiyin,YAO Xiaojun,et al. The cause and potential hazard of glacial lake outburst flood occurred on July 5,2013 in Jiali County,Tibet[J]. Journal of Glaciology and Geocryology,2014,36(1):158 − 165. (in Chinese with English abstract)

    [63]

    刘时银,姚晓军,郭万钦,等. 基于第二次冰川编目的中国冰川现状[J]. 地理学报,2015,70(1):3 − 16. [LIU Shiyin,YAO Xiaojun,GUO Wanqin,et al. The contemporary glaciers in China based on the Second Chinese Glacier Inventory[J]. Acta Geographica Sinica,2015,70(1):3 − 16. (in Chinese with English abstract) doi: 10.11821/dlxb201501001

    [64]

    崔鹏,陈容,向灵芝,等. 气候变暖背景下青藏高原山地灾害及其风险分析[J]. 气候变化研究进展,2014,10(2):103 − 109. [CUI Peng,CHEN Rong,XIANG Lingzhi,et al. Risk analysis of mountain hazards in Tibetan Plateau under global warming[J]. Progressus Inquisitiones DE Mutatione Climatis,2014,10(2):103 − 109. (in Chinese with English abstract)

    [65]

    崔鹏,贾洋,苏凤环,等. 青藏高原自然灾害发育现状与未来关注的科学问题[J]. 中国科学院院刊,2017,32(9):985 − 992. [CUI Peng,JIA Yang,SU Fenghuan,et al. Natural hazards in Tibetan Plateau and key issue for feature research[J]. Bulletin of Chinese Academy of Sciences,2017,32(9):985 − 992. (in Chinese with English abstract) doi: 10.16418/j.issn.1000-3045.2017.09.008

    [66]

    崔鹏,马东涛,陈宁生,等. 冰湖溃决泥石流的形成、演化与减灾对策[J]. 第四纪研究,2003,23(6):621 − 628. [CUI Peng,MA Dongtao,CHEN Ningsheng,et al. The initiation,motion and mitigation of debris flow caused by glacial lake outburst[J]. Quaternary Sciences,2003,23(6):621 − 628. (in Chinese with English abstract) doi: 10.3321/j.issn:1001-7410.2003.06.005

    [67]

    朱颖彦,杨志全,Steve ZOU,等. 中巴喀喇昆仑公路冰川灾害[J]. 公路交通科技,2014,31(11):51 − 59. [ZHU Yingyan,YANG Zhiquan,ZOU S,et al. Glacier geo-hazards along China- Pakistan international karakoram highway[J]. Journal of Highway and Transportation Research and Development,2014,31(11):51 − 59. (in Chinese with English abstract) doi: 10.3969/j.issn.1002-0268.2014.11.009

    [68]

    刘传正. 雅鲁藏布江色东普沟崩滑-碎屑流堵江堰塞湖[J]. 中国地质灾害与防治学报,2018,29(6):7. [LIU Chuanzheng. Landslide-debris flow in Sedongpu gully of the Yarlung Zangbo River blocks the dammed lake[J]. The Chinese Journal of Geological Hazard and Control,2018,29(6):7. (in Chinese with English abstract)

    [69]

    刘传正,吕杰堂,童立强,等. 雅鲁藏布江色东普沟崩滑-碎屑流堵江灾害初步研究[J]. 中国地质,2019,46(2):219 − 234. [LIU Chuanzheng,LYU Jietang,TONG Liqiang,et al. Research on glacial/rock fall-landslide-debris flows in Sedongpu Basin along Yarlung Zangbo River in Tibet[J]. Geology in China,2019,46(2):219 − 234. (in Chinese with English abstract)

    [70]

    赵永辉. 中国西藏雅鲁藏布江色东普沟滑坡-堵江堰塞湖事件研究[J]. 河北地质大学学报,2020,43(3):31 − 37. [ZHAO Yonghui. Study on the barrier lake event for landslide-river blocking of sedongpu valley on Yarlung Zangbo River in Tibet of China[J]. Journal of Hebei GEO University,2020,43(3):31 − 37. (in Chinese with English abstract)

    [71]

    JIA H C,CHEN F,PAN D H. Disaster chain analysis of avalanche and landslide and the river blocking dam of the Yarlung Zangbo River in Milin County of Tibet on 17 and 29 October 2018[J]. International Journal of Environmental Research and Public Health,2019,16(23):4707. doi: 10.3390/ijerph16234707

    [72]

    万佳威,褚宏亮,李滨,等. 西藏嘉黎断裂带沿线高位链式地质灾害发育特征分析[J]. 中国地质灾害与防治学报,2021,32(3):51 − 60. [WAN Jiawei,CHU Hongliang,LI Bin,et al. Characteristics,types,main causes and development of high-position geohazard chains along the Jiali fault zone,Tibet,China[J]. The Chinese Journal of Geological Hazard and Control,2021,32(3):51 − 60. (in Chinese with English abstract) doi: 10.16031/j.cnki.issn.1003-8035.2021.03-07

    [73]

    周路旭,刘建康,李元灵,等. 川藏交通廊道龙利空泽错冰碛湖溃决危险性评价[J]. 地理与地理信息科学,2020,36(6):32 − 39. [ZHOU Luxu,LIU Jiankang,LI Yuanling,et al. Outburst risk assessment of longlikongze moraine lake in Sichuan-Tibet traffic corridor[J]. Geography and Geo-Information Science,2020,36(6):32 − 39. (in Chinese with English abstract) doi: 10.3969/j.issn.1672-0504.2020.06.006

    [74]

    胡桂胜,陈宁生,邓明枫,等. 西藏林芝地区泥石流类型及形成条件分析[J]. 水土保持通报,2011,31(2):193 − 197. [HU Guisheng,CHEN Ningsheng,DENG Mingfeng,et al. Classification and initiation conditions of debris flows in Linzhi area,Tibet[J]. Bulletin of Soil and Water Conservation,2011,31(2):193 − 197. (in Chinese with English abstract) doi: 10.13961/j.cnki.stbctb.2011.02.010

    [75]

    吕儒仁,李德基. 西藏波密冬茹弄巴的冰雪融水泥石流[J]. 冰川冻土,1989,11(2):148 − 160. [LYU Ruren,LI Deji. Ice-snow-melt water debris flows in the dongru longba (gully) Bomi County,Xizang (Tibet)[J]. Journal of Glaciology and Geocryology,1989,11(2):148 − 160. (in Chinese with English abstract)

    [76]

    韩金良,吴树仁,汪华斌. 地质灾害链[J]. 地学前缘,2007,14(6):11 − 23. [HAN Jinliang,WU Shuren,WANG Huabin. Preliminary study on geological hazard chains[J]. Earth Science Frontiers,2007,14(6):11 − 23. (in Chinese with English abstract) doi: 10.3321/j.issn:1005-2321.2007.06.003

    [77]

    张田田,殷跃平,李滨,等. 西藏波密茶隆隆巴曲高位地质灾害类型及发育特征[J]. 中国地质灾害与防治学报,2021,32(3):9 − 16. [ZHANG Tiantian,YIN Yueping,LI Bin,et al. Types and development characteristics of high geological disasters in Chalonglongbaqu gully,Bomi,Tibet[J]. The Chinese Journal of Geological Hazard and Control,2021,32(3):9 − 16. (in Chinese with English abstract) doi: 10.16031/j.cnki.issn.1003-8035.2021.03-02

    [78]

    邹子南,王运生,辛聪聪,等. 雅鲁藏布大峡谷高位岩质崩塌影响因素分析[J]. 中国地质灾害与防治学报,2019,30(1):20 − 29. [ZOU Zinan,WANG Yunsheng,XIN Congcong,et al. Analysis on the factors influencing the high level rock avalanches in the Yarlung Zangbo Grand Canyon[J]. The Chinese Journal of Geological Hazard and Control,2019,30(1):20 − 29. (in Chinese with English abstract) doi: 10.16031/j.cnki.issn.1003-8035.2019.01.03

    [79]

    张晓宇,杜世回,孟祥连,等. 茶隆隆巴曲山地灾害特征及冰崩碎屑流致灾风险研究[J]. 工程地质学报,2021,29(2):435 − 444. [ZHANG Xiaoyu,DU Shihui,MENG Xianglian,et al. Railway disaster risk due to mountain disasters at Chalong-Longbaqu gully[J]. Journal of Engineering Geology,2021,29(2):435 − 444. (in Chinese with English abstract) doi: 10.13544/j.cnki.jeg.2021-0119

    [80]

    汤明高, 王李娜, 刘昕昕, 等. 青藏高原冰崩隐患发育分布规律及危险性[J/OL]. 地球科学, 2021: 1 − 15. (2021-07-05). https://kns.cnki.net/kcms/detail/42.1874.P.20210702.1803.006.html.

    TANG Minggao, WANG Lina, LIU Xinxin, et al. Distribution and risk of ice avalanche hazards in Tibetan Plateau[J/OL]. Earth Science, 2021: 1 − 15. (2021-07-05). (in Chinese with English abstract)

    [81]

    李壮,李滨,高杨,等. 雅鲁藏布江下游色东普沟高位地质灾害发育特征遥感解译[J]. 中国地质灾害与防治学报,2021,32(3):33 − 41. [LI Zhuang,LI Bin,GAO Yang,et al. Remote sensing interpretation of development characteristics of high-position geological hazards in Sedongpu gully,downstream of Yarlung Zangbo River[J]. The Chinese Journal of Geological Hazard and Control,2021,32(3):33 − 41. (in Chinese with English abstract) doi: 10.16031/j.cnki.issn.1003-8035.2021.03-05

    [82]

    刘勇,史正涛. 基于时序InSAR的雅鲁藏布江色东普流域冰崩碎屑流运动区地面变形研究[J]. 云南师范大学学报(自然科学版),2021,41(6):63 − 70. [LIU Yong,SHI Zhengtao. Study on the surface deformation of ice avalanche debris flow movement area in sedongpu basin of Yarlung Zangbo River based on time series InSAR[J]. Journal of Yunnan Normal University (Natural Sciences Edition),2021,41(6):63 − 70. (in Chinese with English abstract)

    [83]

    董继红,杨成生,张本浩,等. 基于SAR偏移量跟踪技术的加拉白垒峰典型冰川位移监测[J]. 甘肃科学学报,2021,33(2):1 − 7. [DONG Jihong,YANG Chengsheng,ZHANG Benhao,et al. Typical glacier displacement monitoring of gyala peri based on SAR offset tracking technology[J]. Journal of Gansu Sciences,2021,33(2):1 − 7. (in Chinese with English abstract) doi: 10.16468/j.cnki.issn1004-0366.2021.02.001

    [84]

    雷添杰,李长春,何孝莹. 无人机航空遥感系统在灾害应急救援中的应用[J]. 自然灾害学报,2011,20(1):178 − 183. [LEI Tianjie,LI Changchun,HE Xiaoying. Application of aerial remote sensing of pilotless aircraft to disaster emergency rescue[J]. Journal of Natural Disasters,2011,20(1):178 − 183. (in Chinese with English abstract) doi: 10.13577/j.jnd.2011.0128

    [85]

    左洪,裴顺平,何建坤,等. 冰川地震学研究进展[J]. 地球与行星物理论评,2021,52(3):280 − 290. [ZUO Hong,PEI Shunping,HE Jiankun,et al. Research progress of the glacier seismology[J]. Reviews of Geophysics and Planetary Physics,2021,52(3):280 − 290. (in Chinese with English abstract) doi: 10.19975/j.dqyxx.2021-002

    [86]

    陈宇乔. 大陆型山谷冰川冰震的规律和影响因素—以老虎沟12号冰川为例[J]. 海洋学研究,2018,36(3):50 − 56. [CHEN Yuqiao. Rule and affectingfactors of seismic events in valley glacier with continental features:A case studyon Laohugou Glacier No. 12[J]. Journal of Marine Sciences,2018,36(3):50 − 56. (in Chinese with English abstract) doi: 10.3969/j.issn.1001-909X.2018.03.005

    [87]

    MURAYAMA T,KANAO M,YAMAMOTO M Y,et al. Infrasound signals and their source location inferred from array deployment in the lützow-holm bay region,east Antarctica:January-June 2015[J]. International Journal of Geosciences,2017,8(2):181 − 188. doi: 10.4236/ijg.2017.82007

    [88]

    ASMING V E,BARANOV S V,VINOGRADOV A N,et al. Using an infrasonic method to monitor the destruction of glaciers in Arctic conditions[J]. Acoustical Physics,2016,62(5):583 − 592. doi: 10.1134/S1063771016040035

    [89]

    MAYER S,VAN HERWIJNEN A,ULIVIERI G,et al. Evaluating the performance of an operational infrasound avalanche detection system at three locations in the Swiss Alps during two winter seasons[J]. Cold Regions Science and Technology,2020,173:102962. doi: 10.1016/j.coldregions.2019.102962

    [90]

    THÜRING T,SCHOCH M,VAN HERWIJNEN A,et al. Robust snow avalanche detection using supervised machine learning with infrasonic sensor arrays[J]. Cold Regions Science and Technology,2015,111:60 − 66. doi: 10.1016/j.coldregions.2014.12.014

    [91]

    MARGRETH S,FAILLETTAZ J,FUNK M,et al. Safety concept for hazards caused by ice avalanches from the Whymper hanging glacier in the Mont Blanc Massif[J]. Cold Regions Science and Technology,2011,69(2/3):194 − 201.

    [92]

    HUMLUM O,HANSEN B U,NIELSEN N,et al. Meteorological Observations in 2001 at the Arctic Station,Qeqertarsuaq (69°15'N),Central West Greenland/Measuring calving in Icefall Lake,SE Greenland,using a “Diver” pressure transducer with a built-in datalogger[J]. Geografisk Tidsskrift-Danish Journal of Geography,2002,102(1):103 − 109. doi: 10.1080/00167223.2002.10649469

    [93]

    VINOGRADOV Y A,ASMING V E,BARANOV S V,et al. Seismic and infrasonic monitoring of glacier destruction:a pilot experiment on Svalbard[J]. Seismic Instruments,2015,51(1):1 − 7. doi: 10.3103/S0747923915010119

  • 加载中

(5)

(1)

计量
  • 文章访问数:  2180
  • PDF下载数:  114
  • 施引文献:  0
出版历程
收稿日期:  2021-10-23
修回日期:  2022-02-06
刊出日期:  2023-04-25

目录