Citation: | WANG Zhongyan, ZHANG Taigang, WANG Weicai. Glacier detachment chain process in the Amney Machen Mountain[J]. Journal of Beijing Normal University(Natural Science), 2022, 58(6): 950-962. DOI: 10.12202/j.0476-0301.2022056 |
[1] |
YAO T D,XUE Y K,CHEN D L,et al. Recent Third Pole’s rapid warming accompanies cryospheric melt and water cycle intensification and interactions between Monsoon and environment:multidisciplinary approach with observations,modeling,and analysis[J]. Bulletin of the American Meteorological Society,2019,100:423 doi: 10.1175/BAMS-D-17-0057.1
|
[2] |
邬光剑,姚檀栋,王伟财,等. 青藏高原及周边地区的冰川灾害[J]. 中国科学院院刊,2019,34(11):1285
|
[3] |
SHUGAR D H,JACQUEMART M,SHEAN D,et al. A massive rock and ice avalanche caused the 2021 disaster at Chamoli,Indian Himalaya[J]. Science,2021,373(6552):300 doi: 10.1126/science.abh4455
|
[4] |
DING Y J,MU C C,WU T H,et al. Increasing cryospheric hazards in a warming climate[J]. Earth-Science Reviews,2021,213:103500 doi: 10.1016/j.earscirev.2020.103500
|
[5] |
VEH G,KORUP O,VON SPECHT S,et al. Unchanged frequency of moraine-dammed glacial lake outburst floods in the Himalaya[J]. Nature Climate Change,2019,9(5):379 doi: 10.1038/s41558-019-0437-5
|
[6] |
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
|
[7] |
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 doi: 10.11849/zrzyxb.2014.08.010
|
[8] |
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
|
[9] |
SCHWANGHART W,WORNI R,HUGGEL C,et al. Uncertainty in the Himalayan energy-water nexus:estimating regional exposure to glacial lake outburst floods[J]. Environmental Research Letters,2016,11(7):074005 doi: 10.1088/1748-9326/11/7/074005
|
[10] |
ALLEN S,ZHANG G Q,WANG W C,et al. Potentially dangerous glacial lakes across the Tibetan Plateau revealed using a large-scale automated assessment approach[J]. Science Bulletin,2019,64(7):435 doi: 10.1016/j.scib.2019.03.011
|
[11] |
ZHANG T G,WANG W C,GAO T,et al. Simulation and assessment of future glacial lake outburst floods in the Poiqu River basin,central Himalayas[J]. Water,2021,13:1376 doi: 10.3390/w13101376
|
[12] |
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 doi: 10.1038/s41558-021-01028-3
|
[13] |
EVANS S G, DELANEY K B. Catastrophic mass flows in the mountain glacial environment: Snow and ice-related hazards, risks, and disasters[M]. Berlin: Academic Press, 2015
|
[14] |
KääB A,JACQUEMART M,GILBERT A,et al. Sudden large-volume detachments of low-angle mountain glaciers - more frequent than thought?[J]. The Cryosphere,2020,15(4):1751
|
[15] |
LEINSS S,BERNARDINI E,JACQUEMART M,et al. Glacier detachments and rock-ice avalanches in the Petra pervogo range,Tajikistan (1973−2019)[J]. Natural Hazards and Earth System Sciences,2021,21(5):1409 doi: 10.5194/nhess-21-1409-2021
|
[16] |
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 doi: 10.1080/00291950410006805
|
[17] |
VAN DER WOERD J, OWEN L A, TAPPONNIER P, et al. Giant, ≈ M8 earthquake-triggered ice avalanches in the eastern Kunlun Shan, northern Tibet: Characteristics, nature and dynamics[J]. Geological Society of America Bulletin, 2004, 116(3/4): 394
|
[18] |
王伟财. 藏东南伯舒拉岭地区冰湖变化及危险性与影响分析[D]. 北京: 中国科学院大学, 2012
|
[19] |
FAILLETTAZ J,FUNK M,VINCENT C. Avalanching glacier instabilities:review on processes and early warning perspectives[J]. Reviews of Geophysics,2015,53(2):203 doi: 10.1002/2014RG000466
|
[20] |
LIPOVSKY P S,EVANS S G,CLAGUE J J,et al. The July 2007 rock and ice avalanches at Mount Steele,St. Elias Mountains,Yukon,Canada[J]. Landslides,2008,5(4):445 doi: 10.1007/s10346-008-0133-4
|
[21] |
JIBSON R W,HARP E L,SCHULZ W,et al. Large rock avalanches triggered by the M 7.9 Denali Fault,Alaska,earthquake of 3 November 2002[J]. Engineering Geology,2006,83(1/2/3):144
|
[22] |
HUGGEL C,CAPLAN-AUERBACH J,WAYTHOMAS C F,et al. Monitoring and modeling ice-rock avalanches from ice-capped volcanoes:a case study of frequent large avalanches on Iliamna Volcano,Alaska[J]. Journal of Volcanology and Geothermal Research,2007,168(1/2/3/4):114
|
[23] |
KROPáČEK J,VILíMEK V,MEHRISHI P. A preliminary assessment of the Chamoli rock and ice avalanche in the Indian Himalayas by remote sensing[J]. Landslides,2021,18(10):3489 doi: 10.1007/s10346-021-01742-1
|
[24] |
MARTHA T R,ROY P,JAIN N,et al. Rock avalanche induced flash flood on 07 February 2021 in Uttarakhand,India:a photogeological reconstruction of the event[J]. Landslides,2021,18(8):2881 doi: 10.1007/s10346-021-01691-9
|
[25] |
HUGGEL C,ZGRAGGEN-OSWALD S,HAEBERLI W,et al. The 2002 rock/ice avalanche at Kolka/Karmadon,Russian Caucasus:assessment of extraordinary avalanche formation and mobility,and application of QuickBird satellite imagery[J]. Natural Hazards and Earth System Sciences,2005,5(2):173 doi: 10.5194/nhess-5-173-2005
|
[26] |
EVANS S G,TUTUBALINA O V,DROBYSHEV V N,et al. Catastrophic detachment and high-velocity long-runout flow of Kolka Glacier,Caucasus Mountains,Russia in 2002[J]. Geomorphology,2009,105(3/4):314
|
[27] |
JACQUEMART M. What drives large-scale glacier detachments? Insights from Flat Creek glacier,St. Elias Mountains,Alaska[J]. Geology,2020,48(7):703 doi: 10.1130/G47211.1
|
[28] |
FALASCHI D,KääB A,PAUL F,et al. Brief communication:collapse of 4 Mm 3 of ice from a cirque glacier in the central Andes of Argentina[J]. The Cryosphere,2019,13(3):997 doi: 10.5194/tc-13-997-2019
|
[29] |
TIAN L D,YAO T D,GAO Y,et al. Two glaciers collapse in western Tibet[J]. Journal of Glaciology,2017,63(237):194 doi: 10.1017/jog.2016.122
|
[30] |
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 doi: 10.1038/s41561-017-0039-7
|
[31] |
AGATOVA A,NEPOP R,GANYUSHKIN D,et al. Specific effects of the 1988 earthquake on topography and glaciation of the tsambagarav ridge (Mongolian Altai) based on remote sensing and field data[J]. Remote Sensing,2022,14:917 doi: 10.3390/rs14040917
|
[32] |
IRIBARREN ANACONA P,MACKINTOSH A,NORTON K P. Hazardous processes and events from glacier and permafrost areas:lessons from the Chilean and Argentinean Andes[J]. Earth Surface Processes and Landforms,2015,40(1):2 doi: 10.1002/esp.3524
|
[33] |
SCHNEIDER D,HUGGEL C,HAEBERLI W,et al. Unraveling driving factors for large rock-ice avalanche mobility[J]. Earth Surface Processes and Landforms,2011,36(14):1948 doi: 10.1002/esp.2218
|
[34] |
IKEN A,TRUFFE M. The relationship between subglacial water pressure and velocity of Findelengletscher,Switzerland,during its advance and retreat[J]. Journal of Glaciology,1997,43:328 doi: 10.1017/S0022143000003282
|
[35] |
DAVISON B,SOLE A,LIVINGSTONE S,et al. The influence of hydrology on the dynamics of land-terminating sectors of the Greenland ice sheet[J]. Frontiers in Earth Science,2019:10
|
[36] |
NANNI U,GIMBERT F,ROUX P,et al. Observing the subglacial hydrology network and its dynamics with a dense seismic array[J]. Proceedings of the National Academy of Sciences of the United States of America,2021,118(28):e2023757118 doi: 10.1073/pnas.2023757118
|
[37] |
EVANS S G,BISHOP N F,FIDEL SMOLL L,et al. A re-examination of the mechanism and human impact of catastrophic mass flows originating on Nevado Huascarán,Cordillera Blanca,Peru in 1962 and 1970[J]. Engineering Geology,2009,108(1/2):96
|
[38] |
EVANS S G,CLAGUE J J. Recent climatic change and catastrophic geomorphic processes in mountain environments[J]. Geomorphology,1994,10(1/2/3/4):107
|
[39] |
LLIBOUTRY L,PAUTRE A,SCHNEIDER B. Glaciological problems set by the control of dangerous lakes in cordillera Blanca,Peru: I. historical failures of morainic dams,their causes and prevention[J]. Journal of Glaciology,1977,18(79):239 doi: 10.1017/S002214300002133X
|
[40] |
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
|
[41] |
AN B S,WANG W C,YANG W,et al. Process,mechanisms,and early warning of glacier collapse-induced river blocking disasters in the Yarlung Tsangpo Grand Canyon,southeastern Tibetan Plateau[J]. Science of the Total Environment,2022,816:151652 doi: 10.1016/j.scitotenv.2021.151652
|
[42] |
COOK K L,ANDERMANN C,GIMBERT F,et al. Glacial Lake outburst floods as drivers of fluvial erosion in the Himalaya[J]. Science,2018,362(6410):53 doi: 10.1126/science.aat4981
|
[43] |
张太刚,王伟财,高坛光,等. 亚洲高山区冰湖溃决洪水事件回顾[J]. 冰川冻土,2021,43(6):1673
|
[44] |
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
|
[45] |
ZHOU Y S,LI X,ZHENG D H,et al. The joint driving effects of climate and weather changes caused the Chamoli glacier-rock avalanche in the high altitudes of the India Himalaya[J]. Science China: Earth Sciences,2021,64(11):1909 doi: 10.1007/s11430-021-9844-0
|
[46] |
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 doi: 10.3969/j.issn.1000-1379.2019.11.004
|
[47] |
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 doi: 10.11821/dlxb201501001
|
[48] |
武小波,李全莲,贺建桥. 黄河源区阿尼玛卿山耶和龙冰川积雪中不溶微粒组成特征及环境意义[J]. 冰川冻土,2021,43(6):1746
|
[49] |
PAUL F. Repeat glacier collapses and surges in the Amney Machen Mountain range,Tibet,possibly triggered by a developing rock-slope instability[J]. Remote Sensing,2019,11:708 doi: 10.3390/rs11060708
|
[50] |
SHEAN D. High Mountain Asia 8-meter DEMs derived from along-track optical imagery, NASA National Snow and Ice Data Center Distributed Active Archive Center [DS/OL]. 2017 [2022-02-15]. https://cmr.earthdata.nasa.gov/search/concepts/C1431539277-NSIDC_ECS.html
|
[51] |
NIE Y,LIU W,LIU Q,et al. Reconstructing the Chongbaxia Tsho glacial lake outburst flood in the Eastern Himalaya:Evolution,process and impacts[J]. Geomorphology,2020,370:107393 doi: 10.1016/j.geomorph.2020.107393
|
[52] |
CHEN W F,YAO T D,ZHANG G Q,et al. Towards ice-thickness inversion:an evaluation of global digital elevation models (DEMs) in the glacierized Tibetan Plateau[J]. The Cryosphere,2022,16(1):197 doi: 10.5194/tc-16-197-2022
|
[53] |
MESSERLI A,GRINSTED A. Image georectification and feature tracking toolbox:ImGRAFT[J]. Geoscientific Instrumentation,Methods and Data Systems,2015,4(1):23 doi: 10.5194/gi-4-23-2015
|
[54] |
MESSERLI A,KARLSSON N,GRINSTED A. Brief Communication:2014 velocity and flux for five major Greenland outlet glaciers using ImGRAFT and Landsat-8[J]. The Cryosphere Discussions,2014,8:6235
|
[55] |
JAWAK S D, KUMAR S, LUIS A J, et al. Evaluation of geospatial tools for generating accurate glacier velocity maps from optical remote sensing data[C]. Multidisciplinary Digital Publishing Institute Proceedings, 2018, 2(7): 341
|
[56] |
LIU Q,MAYER C,WANG X,et al. Interannual flow dynamics driven by frontal retreat of a lake-terminating glacier in the Chinese Central Himalaya[J]. Earth and Planetary Science Letters,2020,546:116450 doi: 10.1016/j.jpgl.2020.116450
|
[57] |
严异德,何彩青,韩有才. 阿尼玛卿冰崩堰塞湖垮坝环境因素分析[J]. 青海科技,2007,14(3):18 doi: 10.3969/j.issn.1005-9393.2007.03.007
|
[58] |
WANG X Y,NIE G Z,WANG D W. Relationships between ground motion parameters and landslides induced by Wenchuan earthquake[J]. Earthquake Science,2010,23(3):233 doi: 10.1007/s11589-010-0719-5
|
[59] |
王凯,杨太保,何毅,等. 近30年阿尼玛卿山冰川与气候变化关系研究[J]. 水土保持研究,2015,22(3):300
|
[60] |
THøGERSEN K,GILBERT A,SCHULER T V,et al. Rate-and-state friction explains glacier surge propagation[J]. Nature Communications,2019,10:2823 doi: 10.1038/s41467-019-10506-4
|
[61] |
GRANT K,STOKES C,EVANS I. Identification and characteristics of surge-type glaciers on Novaya Zemlya,Russian Arctic[J]. Journal of Glaciology,2009,55:960 doi: 10.3189/002214309790794940
|
[62] |
MEIER M F,POST A. What are glacier surges?[J]. Canadian Journal of Earth Sciences,1969,6(4):807 doi: 10.1139/e69-081
|
[63] |
SHARP M. Surging glaciers:behaviour and mechanisms[J]. Progress in Physical Geography,1988,12(3):349 doi: 10.1177/030913338801200302
|
[64] |
GUILLET G,KING O,LV M Y,et al. A regionally resolved inventory of High Mountain Asia surge-type glaciers,derived from a multi-factor remote sensing approach[J]. The Cryosphere,2022,16(2):603 doi: 10.5194/tc-16-603-2022
|
[65] |
AVDEEV V A,NARTOV S V,BALJINNIAM I,et al. Tsambagarav earthquake of 23 July 1988[J]. Geology and Geophysics,1989,11:118
|
[66] |
KARGEL J S,LEONARD G J,SHUGAR D H,et al. Geomorphic and geologic controls of geohazards induced by Nepal’s 2015 Gorkha earthquake[J]. Science,2016,351(6269):aac8353 doi: 10.1126/science.aac8353
|
[67] |
LINGLE C,FATLAND D R. Does englacial water storage drive temperate glacier surges?[J]. Annals of Glaciology,2003,36:14 doi: 10.3189/172756403781816464
|
[68] |
HARRISON W,POST A. How much do we really know about glacier surging?[J]. Annals of Glaciology,2003,36:1 doi: 10.3189/172756403781816185
|
[69] |
JACQUEMART M , CICOIRA A. Hazardous glacier instabilities: ice avalanches, sudden large-volume detachments of low-angle mountain glaciers, and glacier surges[J]. Treatise on Geomorphology, 2022, 4: 330
|
[70] |
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 doi: 10.5194/nhess-12-2977-2012
|
[71] |
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]. 地球科学,2021,64:1
|
[72] |
WANG X W,LIU L,HU Y,et al. Multi-decadal geomorphic changes of a low-angle valley glacier in the East Kunlun Mountains:remote sensing observations and detachment hazard assessment[J]. Natural Hazards and Earth System Sciences,2021,21(9):2791 doi: 10.5194/nhess-21-2791-2021
|
[73] |
GILBERT A,LEINSS S,KARGEL J,et al. Mechanisms leading to the 2016 giant twin glacier collapses,Aru Range,Tibet[J]. The Cryosphere,2018,12(9):2883 doi: 10.5194/tc-12-2883-2018
|
[74] |
ZHANG T G,WANG W C,GAO T G,et al. An integrative method for identifying potentially dangerous glacial lakes in the Himalayas[J]. Science of the Total Environment,2022,806:150442 doi: 10.1016/j.scitotenv.2021.150442
|
[75] |
BOLCH T,KULKARNI A,KääB A,et al. The state and fate of Himalayan glaciers[J]. Science,2012,336(6079):310 doi: 10.1126/science.1215828
|
[76] |
GAO J,YAO T D,MASSON-DELMOTTE V,et al. Collapsing glaciers threaten Asia’s water supplies[J]. Nature,2019,565(7737):19 doi: 10.1038/d41586-018-07838-4
|
[77] |
ZHAO C X,YANG W,WESTOBY M,et al. Brief communication:an approximately 50 mm 3 ice-rock avalanche on 22 March 2021 in the Sedongpu valley,southeastern Tibetan Plateau[J]. The Cryosphere,2022,16(4):1333
|
[1] | LIN Shihao, XU Baiqing, ZHANG Jiakang, ZHANG Xiaolong. Glacier change in the Bugyai Kangri region, southeastern Qinghai-Xizang Plateau, inferred from Beijia proglacial lake sediments[J]. Journal of Beijing Normal University(Natural Science), 2024, 60(4): 562-573. DOI: 10.12202/j.0476-0301.2024088 |
[2] | YANG Yanyan, ZHANG Guoming, HONG Chang, YAN Ping, HA Si, DONG Miao, WANG Yijiao, ZHOU Yanguang. Lake area variations in the Altun Mountain National Nature Reserve 1970-2021[J]. Journal of Beijing Normal University(Natural Science), 2024, 60(4): 541-550. DOI: 10.12202/j.0476-0301.2023203 |
[3] | WANG Cui, LI Ziwen, DENG Wenhong. Diversity and distribution characteristics of threatened birds in the Beijing-Hebei Taihang Mountain priority conservation area[J]. Journal of Beijing Normal University(Natural Science), 2022, 58(6): 853-860. DOI: 10.12202/j.0476-0301.2021282 |
[4] | ZHAO Chuanxi, YANG Wei, WANG Yongjie, DING Baohong, XU Xinchang. Changes in surface elevation and velocity of Parlung No.4 glacier in southeastern Tibetan Plateau: monitoring by UAV technology[J]. Journal of Beijing Normal University(Natural Science), 2020, 56(4): 557-565. DOI: 10.12202/j.0476-0301.2019211 |
[5] | WANGYing HONGSiyang XIEQiong MAShuai WANG Hongrui. Quality of surface water in Yuntai Mountain scenic area[J]. Journal of Beijing Normal University(Natural Science), 2014, 50(6): 644. |
[6] | ZHANGLingnan JIANGyuan ZHANG Wentao WANG Hui DONG Manyu ZHAOShoudong. A CASE STUDY ON CLIMATIC DATA CHOICE IN THE STUDY OF CORRELATION BETWEEN PLNUS TABULAEFORMIS TREE-RING WIDTHS AND CLIMATIC FACTORS ON HELAN MOUNTAINS[J]. Journal of Beijing Normal University(Natural Science), 2014, 50(4): 402. |
[7] | LIYunbin MOUPu LIShuo. QUALITY OF EDIBLE FOODS FOR GENERAL ARTIODACTYL IN XIAOXING'AN MOUNTAIN[J]. Journal of Beijing Normal University(Natural Science), 2014, 50(1): 44. |
[8] | DU Shiqiang 1, 2, 3) CHEN Zhike 3,4) Yan Ling 3, 5) ZHANG Jianming 3) HE Fei 1,2) DU Juan 1, 2). PREDICTING CHANGES IN LAND USE IN MOUNTAINOUS REGIONS IN XINGLONGSHAN NATURAL RESERVE WITH A SPATIAL MARKOV MODEL[J]. Journal of Beijing Normal University(Natural Science), 2009, 45(2): 194-199. |
[9] | JIANG Yuan 1, 2) HUANG Xiaoxia 3) LIU Quanru 4) HE Kejian 3) YANG Yangang 1, 2). SPATIAL PATTERNS OF BIODIVERSITY IN ALPINE MEADOW ON WUTAI MOUNTAIN[J]. Journal of Beijing Normal University(Natural Science), 2009, 45(1): 91-95. |
[10] | ZHANG Mi LI Juntao HAN Shuo ZHANG Jintun. ALTITUDINAL PATTERN OF FLORA ON THE WULING MOUNTAIN[J]. Journal of Beijing Normal University(Natural Science), 2008, 44(1): 77-80. |