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1.
基于GIS的玛旁雍错流域冰川地貌及现代冰川湖泊变化研究   总被引:11,自引:0,他引:11  
基于多源多时相的数字遥感影像、地形图和DEM数据,利用遥感(RS)和地理信息系统(GIS)技术,对西藏玛旁雍错流域冰川地貌类型和空间分布进行了研究,并对流域内近30 a来冰川和湖泊的变化进行分析.结果表明:1974-2003年玛旁雍错流域冰川总面积减少了7.27 km2,平均退缩速率0.24 km2·a-1;湖泊总面积减少37.58 km2,平均退缩速率1.25 km2·a-1.多时相的监测表明,冰川在加速退缩,且阳坡冰川的消融速度大于阴坡,坡度陡、面积小的冰川消融比例大于坡度缓、面积较大的冰川;湖泊面积先减少后有所增加,但总面积还是减少了,不少小湖泊消失.分析流域附近气象资料可知,气温上升和降水量减少是玛旁雍错流域内冰川消融与退缩的主要原因.  相似文献   

2.
With accelerated melting of alpine glaciers, understanding the future state of the cryosphere is critical. Because the observational record of glacier response to climate change is short, palaeo‐records of glacier change are needed. Using proglacial lake sediments, which contain continuous and datable records of past glacier activity, we investigate Holocene glacier fluctuations on northeastern Baffin Island. Basal radiocarbon ages from three lakes constrain Laurentide Ice Sheet retreat by ca. 10.5 ka. High sedimentation rates (0.03 cm a?1) and continuous minerogenic sedimentation throughout the Holocene in proglacial lakes, in contrast to organic‐rich sediments and low sedimentation rates (0.005 cm a?1) in neighbouring non‐glacial lakes, suggest that glaciers may have persisted in proglacial lake catchments since regional deglaciation. The presence of varves and relatively high magnetic susceptibility from 10 to 6 ka and since 2 ka in one proglacial lake suggest minimum Holocene glacier extent ca. 6–2 ka. Moraine evidence and proglacial and threshold lake sediments indicate that the maximum Holocene glacier extent occurred during the Little Ice Age. The finding that glaciers likely persisted through the Holocene is surprising, given that regional proxy records reveal summer temperatures several degrees warmer than today, and may be due to shorter ablation seasons and greater accumulation‐season precipitation. Copyright © 2009 John Wiley & Sons, Ltd.  相似文献   

3.
《China Geology》2021,4(3):389-401
Glaciers are crucial water resources for arid inland rivers in Northwest China. In recent decades, glaciers are largely experiencing shrinkage under the climate-warming scenario, thereby exerting tremendous influences on regional water resources. The primary role of understudying watershed scale glacier changes under changing climatic conditions is to ensure sustainable utilization of regional water resources, to prevent and mitigate glacier-related disasters. This study maps the current (2020) distribution of glacier boundaries across the Kaidu-Kongque river basin, south slope of Tianshan Mountains, and monitors the spatial evolution of glaciers over five time periods from 2000–2020 through thresholded band ratios approach, using 25 Landsat images at 30 m resolution. In addition, this study attempts to understand the role of climate characteristics for variable response of glacier area. The results show that the total area of glaciers was 398.21 km2 in 2020. The glaciers retreated by about 1.17 km2/a (0.26%/a) from 2000 to 2020. The glaciers were reducing at a significantly rapid rate between 2000 and 2005, a slow rate from 2005 to 2015, and an accelerated rate during 2015–2020. The meteorological data shows slight increasing trends of mean annual temperature (0.02°C/a) and annual precipitation (2.07 mm/a). The correlation analysis demonstrates that the role of temperature presents more significant correlation with glacier recession than precipitation. There is a temporal hysteresis in the response of glacier change to climate change. Increasing trend of temperature in summer proves to be the driving force behind the Kaidu-Kongque basin glacier recession during the recent 20 years.© 2021 China Geology Editorial Office.  相似文献   

4.
Tropical glaciers of the Cordillera Blanca, Perú are rapidly thinning and retreating as a result of climate warming. The retreat of these glaciers along narrow linear bedrock valleys has increased the number and size of moraine-dammed glacial lakes formed in the valleys. This study aims to identify the geomorphological and sedimentological characteristics of an enlarging moraine-dammed supraglacial lake (Llaca Lake) in the Cordillera Blanca. Field-based sedimentological observations and geomorphological mapping were combined with remotely sensed data and a photogrammetric model derived from aerial surveys by an uncrewed aerial vehicle to identify landform-sediment assemblages. The geomorphological and sedimentological characteristics of Llaca Lake are synthesized into three landsystem zones: Zone 1: distal portions of Llaca Lake and the latero-frontal moraine; Zone 2: the central zone of ice-cored hummocks; and Zone 3: the active glacier margin. These zones are differentiated based on the spatial distribution of landforms, sediments, and active geomorphological processes. This is the first study to describe the landform-sediment assemblages in a tropical moraine-dammed supraglacial lake system and provides a framework for further landsystem element analysis of these growing supraglacial lakes in rapidly deglaciating high-altitude environments.  相似文献   

5.
青藏高原典型冰川和湖泊变化遥感研究   总被引:70,自引:18,他引:52  
青藏高原冰川和湖泊变化是气候变化敏感的指示器,利用地形图、航空照片、TM卫星遥感资料和其它相关研究文献资料,分析了青藏高原典型地区的冰川和湖泊变化情况.结果表明:1960-2000年期间,在气温上升、降水增加、最大可能蒸散降低的背景下,研究区内不同地区湖泊的面积变化存在比较大的空间差异.以冰川融水为主要补给的纳木错和色林错地区的主要湖泊以扩大为主,而以降水为主要补给的黄河源地区的主要湖泊则基本上全面萎缩.研究区的冰川在1960-2000年期间以退缩为主,但各地退缩的幅度有较大的差异.  相似文献   

6.
近几十年来喜马拉雅山冰川变化及其对水资源的影响   总被引:9,自引:4,他引:5  
对近几十年来喜马拉雅山地区冰川变化的研究成果进行了综述,可以看出:气温普遍升高、冰川加剧退缩和冰川湖泊扩大是喜马拉雅山地区气候和冰川变化的主要特征和后果.冰川退缩导致冰川灾害的危险性增加并对本地区河流径流和水资源产生较长远的影响.但各段的气候、冰川变化及其影响存在区域差异,还需要对冰川变化和水资源影响方面的预估进行更广泛和深入的研究.  相似文献   

7.
Glacial meltwater is an important freshwater resource in the Caucasus and is important for regional irrigation and hydroelectricity generation. This paper analyses the spatial and temporal patterns of glacier change in the Caucasus Mountains from 1960 to 2020 based on Landsat images, coherence images from Sentinel-1 image pairs, GLIMS glacier inventory and WGMS glacier mass balance data. The results of the study show that in 2020 there were 1912 glaciers in the Caucasus Mountains, with a total area of(1 087. 36±66. 44)km2. The total glacier area shrank by(587. 36±98. 66)km2(35. 07±5. 89%)between 1960 and 2020, with an average annual shrinkage rate of(0. 58±0. 10%)·a-1. The area shrinkage rates of Caucasian glaciers for 1960-1986, 1986-2000 and 2000-2020 are(0. 44±0. 20%)·a-1, (0. 66±0. 77%)·a-1 and(0. 96±0. 31%)·a-1, respectively, indicating that Caucasian glaciers in a state of accelerated retreat over the last 60 years. Analysis of mass balance information shows that both the Djankuat and Garabashi glaciers in the Caucasus have been in a strong negative equilibrium for nearly 60 years, with a significant acceleration of mass deficit after 2000. Analysis of climate data suggests that the strong warming is the main reason for the accelerated retreat of glaciers in the Caucasus mountains in recent decades. © 2022 The authors.  相似文献   

8.
Glacial hazards relate to hazards associated with glaciers and glacial lakes in high mountain areas and their impacts downstream. The climatic change/variability in recent decades has made considerable impacts on the glacier life cycle in the Himalayan region. As a result, many big glaciers melted, forming a large number of glacial lakes. Due to an increase in the rate at which ice and snow melted, the accumulation of water in these lakes started increasing. Sudden discharge of large volumes of water with debris from these lakes potentially causes glacial lake outburst floods (GLOFs) in valleys downstream. Outbursts from glacier lakes have repeatedly caused the loss of human lives as well as severe damage to local infrastructure. Monitoring of the glacial lakes and extent of GLOF impact along the downstream can be made quickly and precisely using remote sensing technique. A number of hydroelectric projects in India are being planned in the Himalayan regions. It has become necessary for the project planners and designers to account for the GLOF also along with the design flood for deciding the spillway capacity of projects. The present study deals with the estimation of GLOF for a river basin located in the Garwhal Himalaya, India. IRS LISSIII data of the years 2004, 2006 and 2008 have been used for glacial lake mapping, and a total of 91 lakes have been found in the year 2008, and out of these, 45 lakes are having area more than 0.01?km2. All the lakes have been investigated for vulnerability for potential bursting, and it was found that no lake is vulnerable from GLOF point of view. The area of biggest lake is 0.193, 0.199 and 0.203?km2 in the years 2004, 2006 and 2008, respectively. Although no lake is potentially hazardous, GLOF study has been carried out for the biggest lake using MIKE 11 software. A flood of 100-year return period has been considered in addition to GLOF. The flood peak at catchment outlet comes out to be 993.74, 1,184.0 and 1,295.58 cumec due to GLOF; 3,274.74, 3,465.0 and 3,576.58 cumec due to GLOF; and 100-year return flood together considering breach width of 40, 60 and 80?m, respectively.  相似文献   

9.
青藏高原湖泊是气候变化的重要指示器,20世纪90年代中期以来,在暖湿化环境下降水增多和冰川冻土加速融化导致的湖泊扩张是青藏高原最为突出的环境变化特征。值得注意的是,湖泊水位变化的空间分布特征和西风带及印度季风带影响区的降水量变化具有高度的空间一致性。严酷的自然环境导致对青藏高原内陆湖泊的实地观测变得难以企及,而遥感技术的发展正好可以克服以上局限,该技术已经成为青藏高原湖泊变化监测的主要研究手段。本文围绕遥感监测技术与方法,综述了青藏高原湖泊面积、水量、冰物候、水体参数以及水量平衡定量估算等方面的研究进展。部分研究以流域为尺度应用多源遥感与水文模型进行水量平衡定量评估,结果表明青藏高原内陆地区的湖泊水量增加的主要贡献因素是降水增多,而冰川融化、冻土消融及其他因素的贡献程度却相对较小。当前,学术界一般认为:大尺度的降水年代际变化是青藏高原湖泊近期变化的主要原因,而冰川冻土加速消融又进一步加速湖泊扩张或抑制了部分湖泊收缩。过去,关于青藏高原湖泊变化的气候响应机制研究大多停留在对降水、蒸发、温度、风速、冰冻圈融化等气候因素的定性描述上;现在,在湖泊水量平衡方面,越来越多的研究开始在定量化方面取得进展;将来,随着更多遥感数据的开放共享,以及更多水文与气象站点的投入使用,将为青藏高原湖泊的水量平衡定量研究提供更好的数据条件。  相似文献   

10.
在全球变暖的大背景下,我国藏南地区冰川持续退缩,冰湖不断扩张,从而引发了一系列的地质灾害问题。文章利用Landsat系列影像,在面向对象分类方法的基础上采用波段比值法和NDWI指数提取了藏南希夏邦玛峰地区1994—2018年共9期冰川和冰湖的面积。研究表明,希夏邦玛峰地区净冰川持续退缩,总体速率为(1.28±0.32)%/a,冰湖的扩张速率约为(1.88±1.07)%/a。同时,面积小于1 km2的冰川退缩极为严重,高达33.25%。其次气象再分析数据表明夏季气温和降水的增加可能是该地区净冰川退缩加快的重要原因,并且共同促进了冰湖的加速扩张,大大提高了该地区冰湖溃决的风险。  相似文献   

11.
揭示新疆山地冰川变化及其影响,对新疆山地-绿洲-荒漠系统的健康和稳定发展意义重大。系统梳理新疆冰川物理变化、化学过程、生物资源、气候响应与生态效应等研究成果。结果表明:①新疆山地冰川总体上呈加速消融之势,且受地形、气候影响,冰川变化的区域性差异明显;②气溶胶解释了乌鲁木齐河源1号冰川表层物质的组成与来源,同位素定量了各流域径流中冰川融水的比例;③冰川变化对极端微生物生存条件、空间分布的影响研究较为成熟,但其与生物资源间的综合反馈机理尚不明晰;④冰川消融对水资源的影响随冰川融水拐点的到来而加剧,造成的生态服务缩减和冰雪产业损失日益凸显。制定统一的冰川提取标准、扩宽研究视角、全面系统观测冰川、提高模拟预测精度、加强灾害预警与制定对策是未来新疆山地冰川研究的关注点。  相似文献   

12.
近40年来青藏高原湖泊变迁及其对气候变化的响应   总被引:7,自引:0,他引:7  
湖泊对气候波动有敏感记录。本文以GIS和RS技术为基础,在野外实地考察的基础上,从20世纪70年代、90年代、2000年前后和2010年前后4期Landsat遥感影像中提取了青藏高原所有湖泊边界信息,建立了青藏高原湖泊空间数据库。分析表明的青藏高原面积大于0.5 km2的湖泊总面积变化:(1)从20世纪70年代至90年代增加了13.42%; (2)从20世纪90年代至2000年前后增加了4.86%; (3)从2000年前后至2010年前后增加了13.04%。可见,近40年来,青藏高原湖泊个数和面积均呈增加的趋势。气象数据分析表明,青藏高原气候出现了由暖干向暖湿的转型,表现为气温升高、降雨量增加和蒸发量减小。笔者选取了研究区内面积大于10 km2的时间上合适做比较的所有湖泊,逐一分析了其在4个时期的动态变化情况,并根据变化结果进行了分区。不同时期的湖泊变迁具有区域差异性:(1)从20世纪70年代至90年代,西藏北部、中部、藏南、青海羌塘盆地和青海东部湖泊呈萎缩趋势; (2)20世纪90年代至2000年,青海北部湖泊萎缩; (3)2000年至2010年,除藏南外,青藏高原其余地区湖泊全面扩张。不同补给源的湖泊对气候变化的响应模式不同:(1)气温主要影响以冰雪融水及其径流为主要补给源的湖泊,如色林错、赤布张错等; (2)降雨量主要影响以大气降雨和地表径流为主要补给源的湖泊,如青海羌塘盆地; (3)蒸发量直接影响湖泊水量的散失,在青藏高原总体蒸发量减小的大环境下,部分地区因升温引起的湖泊蒸发效应超过了降水和径流量增加,湖泊出现萎缩的现象,如羊卓雍错流域。总之,地质构造控制了湖泊变迁的总格局,而短时间尺度的湖泊变迁主要受气候因素的影响。此外,湖泊动态变化还受冰川、人类活动、湖盆形状、补给和排泄区等因素的影响。  相似文献   

13.
青藏高原现代冰川变化是对气候变化的响应, 对区域水资源评估有着重要的理论意义和现实意义.采用GIS分析方法, 利用三期卫星遥感数据研究青藏高原中部念青唐古拉山西段冰川在2个时间段(1977-2001和2001-2010)的时空分布和变化, 并对比分析其在南坡和北坡变化速率趋势以及在不同海拔高度的变化特征.研究发现: (1)2010年念青唐古拉山西段冰川面积为571.81±16.01 km2, 主要分布在5 500~6 200 m的高山区; (2)1977-2010年念青唐古拉山西段冰川退缩明显, 总面积减少22.42%±2.90%;(3)相比于1977-2001年时间段, 近十年来该区冰川退缩速率呈明显加剧趋势; (4)与前一个时段相比, 低于5 700 m海拔区域, 各海拔段的冰川年均面积退缩速率呈减缓趋势; 而在5 700~7 000 m海拔区域, 则呈加剧趋势; (5)北坡冰川退缩率(23.6%±2.88%)高于南坡(21.97%±2.90%), 且南北坡2001-2010年年均冰川面积减少最大的海拔段比1977-2001年都升高了200 m, 研究区冰川的持续退缩有向高海拔转移的趋势; (6)南坡拉萨河流域内的冰川年均减少面积最大的海拔段比北坡高100 m左右.气温升高是影响近十年以来研究区的冰川退缩加剧的根本原因, 将对区域水文和生态环境产生重大的影响.   相似文献   

14.
基于遥感和GIS的喜马拉雅山科西河流域冰湖变化特征分析   总被引:6,自引:3,他引:3  
受全球气候变暖的影响, 冰川退缩, 冰湖数量增多和面积增大被认为指示气候变化的重要依据, 冰湖面积增大导致其潜在危险性增大. 因此, 研究冰湖的变化对于气候变化和冰湖灾害研究具有重要意义. 基于Landsat TM/ETM+遥感影像采用人工解译的方法, 获取了喜马拉雅山地区科西河流域1990年前后、2000年和2010年的冰湖数据, 并对冰湖面积>0.1 km2且一直存在的199个冰湖的面积和长度变化进行对比分析. 结果表明: 科西河流域内面积>0.1 km2的冰湖的面积呈现增加趋势, 1990年冰湖面积为73.59 km2, 2010年冰湖面积增加至86.12 km2. 科西河流域内喜马拉雅山南北坡冰湖变化存在差异, 喜马拉雅山北坡变化较大的冰湖主要分布在海拔4 800~5 600 m之间, 而南坡变化较大的冰湖主要分布在海拔4 300~5 200 m之间; 喜马拉雅山北坡的冰湖有65%的冰湖表现扩张, 且扩张冰湖的面积主要是由冰湖在靠近终碛垅的一端基本不发生变化, 而仅在靠近冰川一端发生变化贡献的; 喜马拉雅山南坡的冰湖有32%的冰湖变化表现扩张, 且扩张的冰湖面积主要来自于冰面湖扩张. 在科西河流域内, 位于喜马拉雅山北坡的冰湖平均变化速度略高于南坡的冰湖平均变化速度.  相似文献   

15.
近15a喜玛拉雅山中段波曲流域冰川和冰湖变化   总被引:10,自引:5,他引:5  
陈晓清  崔鹏  杨忠  齐永青 《冰川冻土》2005,27(6):793-800
西藏聂拉木县波曲流域内分布有大量的冰川和冰湖,通过对2000/2001年度遥感数据解译并与1987年的数据对比,发现近15 a来该流域内的冰川面积、冰湖数量和面积等均发生了巨大的变化,结果表明:冰川总面积减小了20%,>0.020 km2的冰湖数量增加了11%,冰湖面积增加了47%.其中位于西夏邦马峰东侧的嘎龙错和扛西错最为典型,面积分别增加了104%和118%.2005年夏季野外考察对以上资料进行了核实.在全球气候变暖的趋势下,预计该流域内的冰川面积将进一步缩小,冰湖数量在小幅增加后将会出现大规模的冰湖溃决,导致严重的泥石流灾害.  相似文献   

16.
Both monsoons and westerlies have exerted influence on climate dynamics over the Tibetan Plateau (TP) since the last deglaciation, producing complex patterns of paleohydroclimatic conditions. Diverse proxy records are essential to forge a robust understanding of the climate system on the TP. Currently, there is a general lack of understanding of the response of inland lakes over the TP to climate change, especially glacier‐fed lakes. Paleohydrological reconstructions of such lakes could deepen our understanding of the history of lake systems and their relationship to regional climate variability. Here we use records of n‐alkanes and grain size from the sediments of Bangong Co in the western TP to reconstruct paleohydrological changes over the past 16,000 years. The Paq record (the ratio of non‐emergent aquatic macrophytes versus emergent aquatic macrophytes and terrestrial plants) is generally consistent with the variations in summer temperature and precipitation isotopes. The changes in grain‐size distributions show a similar trend to Paq but with less pronounced fluctuations in the early‐middle Holocene. The new data combined with previous results from the site demonstrate that: 1) Bangong Co experienced relatively large water‐level fluctuations during the last deglaciation, with a steadily high lake‐level during the early‐middle Holocene and a decreasing lake‐level in the late Holocene; 2) The lake level fluctuations were driven by both high summer temperatures via the melting water and monsoon precipitation. However, the dominant factor controlling lake level changed over time. The lake‐level history at Bangong Co deduced from the n‐alkanes and grain‐size records reveals the past hydrological changes in the catchment area, and stimulates more discussion about the future of glacier‐fed lakes under the conditions of unprecedented warming in the region.  相似文献   

17.
石羊河流域冰川变化与地形因子的关系探究   总被引:2,自引:2,他引:0  
李林凤  李开明 《冰川冻土》2019,41(5):1026-1035
以甘肃省石羊河流域为研究区,运用GIS和RS技术结合人工目视解译,提取了1995年、2002年、2009年、2015年、2016年5期遥感影像冰川边界信息。结合DEM数据提取了坡度、朝向、海拔三个地形因子。基于相关性分析与地理探测器的方法,对冰川变化与地形因子进行了相关分析,并研究了冰川变化与地形因子之间的空间关系。结果表明:(1)该地区冰川年均面积变化率由1973-1995年的-1.27%·a-1变为2015-2016年的-2.87%·a-1,消融速度加快,面积小于0.1 km2的小冰川消融显著;(2)石羊河流域冰川分布主要的朝向是N、NE、NW,朝向与冰川变化具有一定相关性,南坡退缩较快;(3)坡度与冰川变化呈异向相关,海拔高度控制着冰川的消融速度,低海拔冰川的退缩幅度更大;(4)地形因子对冰川变化空间分异的影响显著不同,海拔是冰川变化空间分异最重要的控制因素,其次是朝向,最后是坡度。  相似文献   

18.
利用SRTM DEM和ASTER立体像对数据获取的DEM分析了2000—2020年兴都库什东部的冰川物质平衡,并结合CRU TS 4.04气象数据探讨了气温、降水、地形和冰湖对南、北冰川区物质平衡空间差异的影响。结果表明:2000—2020年兴都库什东部冰川区物质平衡为(-0.02±0.04) m w.e.·a-1,冰川整体呈现微弱的负物质平衡状态。从坡向来看,南坡以正物质平衡冰川居多,北坡以负物质平衡冰川居多。从南、北两个子区域来看,北部冰川区物质平衡为(0.07±0.04) m w.e.·a-1,南部冰川区物质平衡为(-0.32±0.04) m w.e.·a-1。北部冰川面积规模大,所处海拔区间高,南部则相反。北部冰川区处于较高的海拔区间且冬季气温较低,导致夏季升温所产生的冰川消融的影响被削弱,冰川物质平衡的分布与降水分布在空间上具有一致性。南部冰川区出现的强烈物质亏损主要是由于夏季气温的急剧升高和冰川处于较低的海拔区间。南、北区域冰前湖和冰面湖面积不断扩大的空间差异性,也在一定程度上加剧了该地区冰川物质平衡的空间差异。  相似文献   

19.
揭示新疆山地冰川变化及其影响,对新疆山地-绿洲-荒漠系统的健康和稳定发展意义重大。系统梳理新疆冰川物理变化、化学过程、生物资源、气候响应与生态效应等研究成果。结果表明:①新疆山地冰川总体上呈加速消融之势,且受地形、气候影响,冰川变化的区域性差异明显;②气溶胶解释了乌鲁木齐河源1号冰川表层物质的组成与来源,同位素定量了各流域径流中冰川融水的比例;③冰川变化对极端微生物生存条件、空间分布的影响研究较为成熟,但其与生物资源间的综合反馈机理尚不明晰;④冰川消融对水资源的影响随冰川融水拐点的到来而加剧,造成的生态服务缩减和冰雪产业损失日益凸显。制定统一的冰川提取标准、扩宽研究视角、全面系统观测冰川、提高模拟预测精度、加强灾害预警与制定对策是未来新疆山地冰川研究的关注点。  相似文献   

20.
利用Landsat卫星影像,采用面向对象分类方法提取珠穆朗玛峰自然保护区湖泊信息,分析了湖泊动态及对区域气候变化的响应关系。结果表明:(1)2015年保护区湖泊总面积为489.07 km2,构造湖、河成湖、冰川湖分别占总面积的77.3%、2.6%、20.1%。(2)1975-2015年,保护区内各类湖泊面积变化速率不同,冰川湖最大(1.05 km2·a-1),构造湖次之(-0.85 km2·a-1),河成湖最稳定(0.013 km2·a-1);保护区南坡冰川湖面积变化速率(0.53 km2·a-1)略大于北坡(0.52 km2·a-1)。(3)北坡构造湖、河成湖对区域气候的响应呈阶段性变化规律,1975-2000年珠峰地区气候呈暖湿化趋势,2000年构造湖、河成湖面积达到峰值,两类总计增加22.8 km2;2000-2015年转变为显著的暖干气候,构造湖、河成湖面积均呈减少趋势,总共减少57.16 km2。随着区域气候的变暖,冰川湖总面积不断扩大,近40年间冰川湖面积累计增加43.06 km2。(4)灰色关联度分析显示,年极端低温对构造湖面积变化影响最显著,年均气温对冰川湖起主导作用,年均相对湿度对河成湖影响最大。较其他气候因子而言,降水量对各类湖泊面积变化的影响均最小。  相似文献   

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