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Five decades of glacier changes in the Hulugou Basin of central Qilian Mountains, Northwest China 被引量:2
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作者 Hui CHEN ZhongQin LI +3 位作者 PuYu WANG ZhongPing LAI RenSheng CHEN BaoJuan HUAI 《Journal of Arid Land》 SCIE CSCD 2015年第2期159-165,共7页
The Heihe River Basin is the second largest inland river basin in the arid regions of Northwest China. Glaciers provide a large proportion of water resources for human production and living. Studies of glacier changes... The Heihe River Basin is the second largest inland river basin in the arid regions of Northwest China. Glaciers provide a large proportion of water resources for human production and living. Studies of glacier changes and their impact on water resources in the arid lands are of vital importance. A joint expedition was carried out in 2010 for investigating glaciers in the Hulugou Basin, which is located in the upper reaches of Heihe River. There- fore, glacier changes in the Hulugou Basin of central Qilian Mountains during the past 50 years were analyzed in this study by comparing topographic maps, satellite images, digital elevation models and field observation data from different periods. Results showed that the total area of the 6 glaciers in the Hulugou Basin decreased by 0.590±0.005 km^2 during the period 1956-2011, corresponding to a loss of 40.7% over the total area in 1956. The average area reduction rate of the 6 glaciers is 0.011 km^2/a. During the past five decades, the glacier shrinkage was accelerated. The changes in glacier ice surface elevation ranged from -15 to 3 m with an average thinning of 10±8 m or an annual decrease of 0.23±0.18 m (0.20±0.15 m/a water equivalent) for the period 1956-2000. The area of Shiyi Glacier in the Hulugou Basin decreased from 0.64 km^2 in 1956 to 0.53 km2 in 2011 with a reduction rate of 17.2%. The Shiyi Glacier had been divided into two separated glaciers because of severe melting. Comparative analysis showed that glacier shrinkage in the Hulugou Basin is more serious than that in the other regions of Qilian Mountains. 展开更多
关键词 glacier change ice surface elevation change climate change Shiyi Glacier Hulugou Basin
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Glacier and glacial lake dynamics from 1990 to 2024 and their impact on flood hazard in the central Nepal Himalaya
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作者 BANERJEE Abhishek MEADOWS E.Michael +4 位作者 YADAV Nilesh SAFAROV Mustafo GODARA Ajay KIRSTEN L Kelly KANG Shichang 《Journal of Mountain Science》 2025年第6期1926-1943,共18页
Rapid climate warming is leading to a notable increase in glacier recession and the formation of glacial lakes,which are becoming increasingly characteristic of high mountain regions globally.These severe cryospheric ... Rapid climate warming is leading to a notable increase in glacier recession and the formation of glacial lakes,which are becoming increasingly characteristic of high mountain regions globally.These severe cryospheric changes critically affect regional water supply,increase geohazards,and threaten lives and livelihoods.This study records regional glaciers and glacial lake dynamics for the period 1990 to 2024,considers the implications of these changes for glacial lake outburst floods(GLOFs)and assesses the potential future flood hazard.Several remotely sensed and reanalysis datasets from 1990 to 2024 are employed to investigate changes in glacier and lake areas.The results highlight a significant reduction in the Manaslu(-0.72±0.20 km^(2)/a)and adjoining glaciers,which led to an increase in the Birendra glacial lake(0.23±0.04 km^(2)/a).Additionally,surface elevation and ice movement data reveal significant thinning of glaciers in the region,averaging-1.52±0.26 m/a,often associated with avalanches near the glacier terminus and triggering GLOFs.Using an HEC-RAS(Hydrologic Engineering Center’s River Analysis System)model,a total extension of 19.3 km of flow channels was revealed,coupled with potential increases in depth,discharge,and velocity,potentially causing massive damage downstream.Regional hazard intensity assessment indicates that five bridges,31 houses,and 1.2 km^(2)of agricultural land may be flooded,with the more populated areas near Samagaun and Banjam being the most affected.Regional climate condition,including significant rising air temperature(0.02℃/a,p<0.05)and declining precipitation(-0.24 mm/a,p<0.05),during recent decades play a crucial role in glacier dynamics and exhibit a significant spatial relation with increased temperature(R^(2)=0.62,α<0.05).Understanding regional cryospheric dynamics and associated risks is therefore essential in designing adaptive mitigation strategies. 展开更多
关键词 Glacier and lake area change surface elevation change Ice avalanche GLOF and regional hazards ERA5-Land
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Characterizing the behavior of surge-type glaciers in the Puruogangri Ice Field,Tibetan Plateau 被引量:1
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作者 ZHOU Sugang WANG Ninglian +3 位作者 LI Zhijie YAO Xiaojun ZHANG Yujie QIN Gexia 《Journal of Geographical Sciences》 SCIE CSCD 2024年第6期1174-1194,共21页
The Puruogangri Ice Field(PIF),classified as an ultra-continental glacier,is considered extremely stable.However,several glaciers in this area have recently experienced surge events with significant instability and in... The Puruogangri Ice Field(PIF),classified as an ultra-continental glacier,is considered extremely stable.However,several glaciers in this area have recently experienced surge events with significant instability and information on surge-type glaciers(STGs)in this region remains scarce.In this study,we identified six STGs and reported the observed characteristics of their surging behavior in the region by mapping glacier boundaries,surface flow velocity information,and glacier surface elevation changes using recent Landsat satellite imagery and shuttle radar topography mission(SRTM),TanDEM,and ASTER digital elevation model(AST14DEM)data.These data provide valuable insights into recent glacial processes,flow instability,and rapid glacial movement.During the active phase of the glaciers,all exhibited frontal advances and changes in surface elevation.Owing to limitations in the satellite imagery,flow velocity profiles were only available for glaciers N1(G089071E33998N),NE1(G089128E33943N),and SE3(G089278E33913N)during the active phase.However,these results effectively reflect the velocity variations in both glaciers before,during,and after the surge.Based on the characteristics of the STG,scientific expeditions,and meteorological data,we believe that the surge in PIF was largely influenced by glacier meltwater and changes in subglacial drainage systems. 展开更多
关键词 glacier surge glacier surface elevation changes glacier surface velocity Puruogangri Ice Field
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Impacts of climate change on mangrove ecosystems:a region by region overview 被引量:6
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作者 Raymond D.Ward Daniel A.Friess +1 位作者 Richard H.Day Richard A.MacKenzie 《Ecosystem Health and Sustainability》 SCIE 2016年第4期18-43,共26页
Inter-related and spatially variable climate change factors including sea level rise,increased storminess,altered precipitation regime and increasing temperature are impacting mangroves at re-gional scales.This review... Inter-related and spatially variable climate change factors including sea level rise,increased storminess,altered precipitation regime and increasing temperature are impacting mangroves at re-gional scales.This review highlights extreme regional variation in climate change threats and impacts,and how these factors impact the structure of mangrove communities,their biodiversity and geo-morphological setting.All these factors interplay to determine spatially variable resiliency to climate change impacts,and because mangroves are varied in type and geographical location,these systems are good models for understanding such interactions at different scales.Sea level rise is likely to in-fluence mangroves in all regions although local impacts are likely to be more varied.Changes in the frequency and intensity of storminess are likely to have a greater impact on N and Central America,Asia,Australia,and East Africa than West Africa and S.America.This review also highlights the nu-merous geographical knowledge gaps of climate change impacts,with some regions particularly understudied(e.g.,Africa and the Middle East).While there has been a recent drive to address these knowledge gaps especially in South America and Asia,further research is required to allow research-ers to tease apart the processes that influence both vulnerability and resilience to climate change.A more globally representative view of mangroves would allow us to better understand the importance of mangrove type and landscape setting in determining system resiliency to future climate change. 展开更多
关键词 coastal wetlands CYCLONE resiliency sea level rise Special Feature:Wetlands and Global Cimate and Land-Use change storms surface elevation change VULNERABILITY
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