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1.
研究南极冰盖的物质平衡状况是研究冰盖与全球海平面变化关系的基础性工作,也对重建冰芯古气候记录有重要意义。积累率是冰盖物质平衡计算中最重要的收入项。大空间尺度上的表面物质平衡信息只能通过遥感技术来获取。但因存在多源误差,仅靠遥感手段,冰盖物质平衡的信息难以准确获取,这是南极冰川学面临的最大挑战之一。因此实测数据不可或缺。表面物质平衡的实地测量有多种方法,如花杆、超声高度计(雪深仪)、雪层物理/化学层位法(比如雪坑、冰芯/雪芯积累率恢复,探冰雷达连续测量冰内等时层结构等)。本文对南极冰盖表面物质平衡的实地测量技术做一概述,对每种方法的特点进行了比较和讨论。  相似文献   

2.
南极冰盖的物质平衡研究:进展与展望   总被引:2,自引:0,他引:2       下载免费PDF全文
南极冰盖物质平衡最新的研究进展表明,西南极洲表现出两种变化模式,西部在增厚,而北面在更快地减薄。西南极冰盖总体可能正在减薄,其物质损失的速率可能足以使海平面每年上升近0.2mm。东南极冰盖物质不平衡可能很小,甚至其符号还不能被确定。南极半岛正在经历着快速变化。目前还不能可靠地估算南极冰盖的物质平衡状态。同时,大型冰川的停滞,一些冰川流速加快,冰盖大范围加速减薄,冰架大面积的快速崩解和支流冰川的加速,以及着地线强烈的底部融化等显示出南极冰盖存在快速变化。南极冰盖物质平衡未来的重点研究领域是开展冰盖表面高程变化的监测与模拟,确定表面物质平衡及其在各冰流盆地的分布,着地线的冰流通量,冰架底部的融化,了解冰后期冰盖退缩的动力过程,以及开发、对比和改进与冰盖物质平衡模拟和预测相关的各种模型。  相似文献   

3.
南极冰盖表面冰流速研究综述   总被引:1,自引:0,他引:1       下载免费PDF全文
陈军  柯长青 《极地研究》2015,27(1):115-124
冰川表面流速作为南极冰盖物质平衡估算的一项重要内容,对于研究全球变暖背景下的海平面上升具有重要意义。随着技术的进步,南极的冰流速监测方法已经从传统的花杆测量、光学仪器边角测量,发展到先进的GPS测量和遥感观测。南极冰盖冰流速总体特征是:海岸带冰流速快于内陆冰流速,冰架冰流速快于陆地冰流速,西南极冰流速快于东南极冰流速。未来加强对数据稀疏地区的冰流速监测,扩大冰流速研究的时间尺度,开发冰流速研究的新方法以及构建冰流速波动与气候变化相互关系模型等,成为南极冰流速研究的新热点。  相似文献   

4.
南极冰盖地形数据库BEDMAP 2述评   总被引:1,自引:0,他引:1       下载免费PDF全文
陈昀  孙波  刘春  崔祥斌  王甜甜 《极地研究》2014,26(2):254-261
南极冰盖物质收支与不稳定性对全球气候变化和海平面升高有着重要影响,而冰盖厚度和冰下地形则是研究南极冰盖的物质平衡、动力及不稳定性极为重要的参数。自20世纪50年代以来,国际上针对南极冰盖开展了大量的冰雷达以及重、磁测量,这些测量结果被汇集并形成冰厚和冰下地形数据库,进而服务于冰盖模式和地球系统研究,最新推出的成果便是BEDMAP 2(Bedrock Mapping Project 2)。首先介绍了BEDMAP 2的数据来源、结构以及数据处理,并讨论了数据的质量评价,然后分析了BEDMAP 2中展示的整个南极冰盖与冰下地形及其特点。最后,对于BEDMAP 2对中国在南极冰盖考察和研究方面的作用进行了一些讨论与展望。  相似文献   

5.
南极冰盖表面微地貌是大气与冰盖相互作用的直接产物,微地貌的形态特征、结构性质及其发展变化对南极冰盖表面的物质平衡、能量平衡以及冰盖记录大气信息的过程具有重要的影响,冰盖表面微地貌的结构性质以及空间分布的确定是计算南极冰盖物质平衡与能量平衡的重要依据,同时在南极冰芯钻探选址以及冰芯解译古气候信息时具有重要的参考价值。根据微地貌的形成方式将南极冰盖表面微地貌分为沉积型、侵蚀型、沉积间断型三类,介绍了南极冰盖表面常见的微地貌形态雪丘、雪纹、雪垄、雪窝以及光洁区的形态特征与结构性质,并对冰盖表面微地貌的分布规律特征进行了总结,文中重点对不同微地貌区域内的物质平衡与能量平衡特征进行了介绍,最后探讨了冰盖表面光洁区对南极冰芯选址的影响,并对未来南极微地貌研究进行了展望。  相似文献   

6.
冰雷达是用于极地冰雪探测的主要技术手段,为研究极地冰雪的几何特征、内部结构、冰下地形地貌和冰底环境提供了重要的基础观测数据。20世纪50年代,人类首次发现特定频段的电磁波可以“穿透”南极冰盖,进而在60年代研制出用于极地冰盖冰下探测的冰雷达系统。之后60多年里,随着计算机、电子信息和卫星定位导航等技术的发展,冰雷达技术研究取得快速发展,形成了适用于极地冰盖、海冰及其上覆积雪不同探测需求的多样化冰雷达系统。本文在简要回顾了早期冰雷达技术发展的基础上,着重从极地冰盖深部探测、极地冰盖和海冰浅表层探测以及新型极地冰雪探测冰雷达技术3个方面,回顾总结了近10年来国内外主要进展。未来,为适应极地冰盖、海冰及其上覆积雪观测研究的多种需求,需要进一步提升冰雷达系统性能(探测深度、跨轨迹向分辨率、垂向分辨率等),并且研制满足新型平台(无人机、卫星等)搭载需求的小型、低功耗冰雷达系统,以及发展多通道、多频、多极化集同观测模式的综合冰雷达技术。  相似文献   

7.
ICESat与ICESat-2应用进展与展望   总被引:2,自引:0,他引:2       下载免费PDF全文
杨帆  温家洪  Weili Wang 《极地研究》2011,23(2):138-148
近十年来,格陵兰和南极冰盖消融增速,两极地区显著变化.美国国家航空航天管理局(NASA)的冰、云和陆地高程卫星(ICESat)自2003年发射至2009年的在轨期间,用于定量分析冰盖和海冰的变化速率,并对这些变化的驱动机制进行检测与监测.ICESat在极地冰雪遥感应用等方面展示出了无可比拟的优势,对精确估算冰盖对海平面...  相似文献   

8.
南极冰盖物质平衡与海平面变化研究新进展   总被引:2,自引:0,他引:2       下载免费PDF全文
本文在简要介绍冰盖物质平衡及其对海平面影响的基础上,从整体法和分量法两个方面总结了南极冰盖物质平衡研究的最新进展,并分析了影响其物质平衡的不确定因素。研究表明,整个南极冰盖物质平衡呈现负增长的趋势,其中西南极Amundsen海湾附近的冰盖物质流失最为明显。另外,南极冰盖边缘的大部分地区还呈现变薄的趋势。南极冰盖物质流失是引起海平面上升的最大潜在因素之一,其冰架的缓冲作用、冰盖的不稳定性和冰盖底部融水的作用等不确定因素对南极冰盖物质平衡具有重要的影响。未来随着观测技术和数据处理技术的不断提高,南极冰盖物质平衡的估算及其不确定因素有望得到进一步的认识,从而为预测海平面的上升范围提供更多的理论和技术支撑。  相似文献   

9.
揭示气候变化的南极冰盖研究新进展   总被引:6,自引:1,他引:6  
秦大河  任贾文 《地理学报》1995,50(2):178-184
南极冰盖是气候的产物,对气候也有反馈作用,冰盖物质平衡变化与全球海平面升降息息相关,并引发地球系统内的一系列变化,南极冰盖是记录全球变化信息的良好载体,具有信息量大,时间序列长,保真性能强,分辨率高以及可进行现代过程定量研究等其他介质无法取代的独特优点,随着科学技术的发展和人类对全球问题的日益重视,南极冰盖与全球变化研究这一领域将会以高起点,多学科互相交叉,渗透为特色,成为未来南极研究的热点领域。  相似文献   

10.
南极冰川学与全球变化是最近举行的“南极与全球变化:相互作用和影响”国际学术研讨会的主题。南极冰盖净物质平衡的观测和估算,冰盖物质平衡与气候变化的预测模型;南极冰雪大气、气候和环境化学;南极深冰芯分析,及其与其它古环境记录的对比研究,是目前南极冰川学研究的几个热点、关键问题。  相似文献   

11.
Interpretation of the GRACE-derived mass trend in Enderby Land, Antarctica   总被引:2,自引:1,他引:1  
Monthly gravity solutions of the Gravity Recovery and Climate Experiment (GRACE) reveal three areas in Antarctica with striking interannual mass trends. The positive mass trend in Enderby Land, East Antarctica, is poorly understood because of uncertainties in the surface ice-sheet mass balance, post-glacial rebound (PGR), and processing of GRACE data. In this study, we compare the GRACE mass trends with values estimated from in situ snow-stake measurements, and Ice Cloud and land Elevation Satellite (ICESat) data. The mass trends estimated from ICESat data show a strong correlation with GRACE mass trends. In contrast, the snow-stake data show discrepancies with temporal variations in GRACE mass, especially in 2006. The discrepancies are probably associated with basal ice-sheet outflow, which is difficult to observe using snow stakes. We conclude that the bulk of the GRACE mass trend can be explained by snow accumulation and basal ice-sheet outflow.  相似文献   

12.
唐学远  张占海  孙波 《极地研究》2006,18(4):290-300
数值模拟南极冰盖是提升人们认识南极冰盖演化行为的重要手段。通过数值模拟研究可以揭示某些观测数据包含的冰盖物理机理以及在缺乏观测数据的情形下预测冰盖的演化行为。本文在综述南极冰盖数值研究国际进展的基础上,分析了南极冰盖数值模拟方面几个主要模型的特点,特别针对南极冰盖的三维数值模拟展开讨论,分析并探讨了冰盖数值模拟可能会遇到的潜在不稳定源以及在拓展模型研究范围时会遇到的障碍。对目前三维冰盖数值模拟存在的几个问题进行了讨论,并对未来发展进行了展望。  相似文献   

13.
Transport of moisture-bearing air to the Antarctic is one of the important factors that control the mass balance of the ice sheet. Here, we investigate the distribution of air-parcel transport using a backward trajectory analysis over the entire Antarctic ice sheet, based on whether the air parcel was located inside or outside of Antarctica at 5 days before arrival. At this time, we considered the air from outside Antarctica to be moisture rich. Oceanic air was found to dominate in West Antarctica throughout the year, whereas air from inland was more prominently distributed around East Antarctica, especially in summer. In East Antarctica, there was a significant seasonal variation: air from inland dominated in summer, while air of oceanic origin dominated in winter. The distribution of air parcels that came from oceanic/inland sources was similar to the accumulation map (based on satellite data), which indicates that oceanic air parcels could be a substitute for moisture transport to the Antarctic. To determine the future impacts of climate change (e.g., sea level rise), more precise predictions of the variations in the surface mass balance will be required. Our results contribute towards the improved understanding of the spatial distributions of accumulation and aerosols found in Antarctic snow and ice cores.  相似文献   

14.
The Antarctic ice sheet is arguably the most critical in terms of future sea-level rise, primarily because it contains 70% of the world's fresh water. While there exists evidence of accelerated ice-sheet ablation during the past decade, the possibility that the ice sheets contributed little to 20th century sea-level rise could result in Antarctica becoming the largest contributor to sea-level rise during the 21st century. Here we review the findings of studies published following the 2007 Intergovernmental Panel for Climate Change (IPCC) study, focusing on the role of Antarctica in present-day (1992–2006) sea-level rise. We show that the choice of glacial isostatic adjustment (GIA) model significantly affects GRACE-estimated Antarctic mass loss, adding 0.25–0.45 mm/yr to the estimate of sea-level rise. The current estimate of Antarctica's contribution to sea-level rise has a wide range: from −0.12 to +0.52 mm/yr. The discrepancy between observed sea-level trend of 1.8 mm/yr and those estimated from various geophysical sources (2.10 ± 0.99 mm/yr) is 0.30 mm/yr. The role of Antarctica in sea-level rise might be better constrained by lengthening satellite observations, using long-term GPS data to discriminate subglacial vertical motion from ice mass balance, and detecting the sea-level signal due to elastic loading from the melting ice-sheets.  相似文献   

15.
Annual balance measurements on the Lemon Creek Glacier, Alaska conducted by the Juneau Icefield Research Program (JIRP) from 1953 through 1998 provide a continuous 46 year record. This is one of the nine American glaciers selected in a global monitoring network during the International Geophysical year, 1957/58. These data have been acquired primarily by employing consistent ground methods, conducted on similar annual dates and calculated using comparable methodology. The results have been until now fairly precise, but of uncertain accuracy. An adjunct comparison of topographic surface maps of the glacier made in 1957 and 32 years later in 1989 provides a rough determination of glacier surface elevation changes which are clearly of less precision than the compilation of annual ground data. Airborne surface profiling in 1995, and global positioning system leveling transects in 1996–1998 update the record of surface elevation changes over the past decade. The mean glacier ice thickness reductions suggested by these methods from 1957–1989, from 1957–1995 and from 1957–1998 are ?13.2 m, ?16.4 m, and ?21.7 m, respectively. It is of interest that the geodetic interpretations agree fairly well with the trend of sequential balances from ground-level stratigraphic measurements. To date, however, the infrequent mapping methods in this study have yielded specific balances averaging between 5 and 11% less than those resulting from our annual on-site glaciological monitoring. For future studies this can be an important factor. The ground data are, therefore, the ones in which we have most confidence. These show cumulative ice losses of ?13.9 m (12.7 m water equivalent w.e.) from 1957–1989, of ?19.0 m (?17.1 m w.e.) from 1957–1995, of ?24.4 m (22 m w.e.) from 1957–1998, and ?24.7 m (22.2 m w.e.) for the total cumulative loss over the full 46 years between 1953 and 1998. Although the balance trend has been increasingly negative it averages ?0.48 m/a in w.e. or 0.52 m of ice loss per year. To refine the reliability of density determinations in this data set the effects of internal accumulation from refrozen meltwater producing diagenetic ice structures in the annual firnpack have been taken into account. An unusual dearth of such structures within the 1997/98 firnpack provided a unique opportunity to facilitate application of the probing technique over broad areas of the nv. This added to our ground truth and verified accuracy of the test-pit measurements used in these long-term mass balance computations. The glacier's continuing negative mass balance has fueled a terminal retreat of 800 m during the 1953–1998 period. The annual balance trend indicates that despite a higher mean elevation and a higher elevation terminus from thinning and retreat, mean annual balance has been strongly negative since 1977 (?0.78 m/a w.e.). Dramatically increased negative mass balances have occurred in the 1990s, with 1996 and 1997 being the only years on record with no retained accumulation since field observations were initiated in the glacier source areas in 1948.  相似文献   

16.
Baby Glacier, Axel Heiberg Island, N.W.T., Canada is a small (0.6 km2), high-latitude (79°N), high-altitude (700–1200 m) glacier with a mass balance record extending from 1959–60 to the present. The record demonstrates shrinkage of the glacier, but a statistically significant trend is not evident. Correlations are strong between the mass balance of Baby Glacier and that of the nearby and much larger White Glacier, and also those of even larger, more distant glaciers. Thus programmes of measurement on small, simple ice bodies such as Baby Glacier can be representative of a large region. However, inter-annual changes are more accentuated for Baby Glacier. Baby Glacier does not meet all of the usual criteria for a representative glacier, but it straddles the regional equilibrium zone, a fact which helps to offset the disadvantages of its small size and limited altitudinal range. The equilibrium zone deserves to be an important focus for studies of high-arctic mass balance, with the aim of facilitating future measurement programmes which will rely on satellite remote sensing.  相似文献   

17.
对位于北极Svalbard群岛新奥尔松(Ny-lesund)的Austre Lovénbreen和Pedersenbreen冰川首个物质平衡年(2005/06年度)的冰川表面物质平衡及其运动特征进行研究,并阐述了Austre Lovénbreen冰川末端位置的变化状况。结果表明:(1)Austre Lovénbreen和Pedersenbreen冰川净物质平衡分别为-0.44和-0.20m w.e.,年消融量分别为0.99和0.94m w.e.,对应冰川零平衡线高度分别为478.10和494.87m。(2)两条冰川符合Svalbard地区跃动冰川运动的特征模式。运动速度矢量的水平分量表现为:向主流线辐合或平行于主流线。下游运动速度较慢,而在中上游运动相对较快。Austre Lovénbreen冰川表面各观测点的运动速度平均值为2.28m·a-1,运动速度最大值和最小值分别为3.91和0.81m·a-1;Pedersenbreen冰川表面观测点运动速度平均值为6.74m·a-1,运动速度最大值和最小值分别为8.13和5.49m·a-1。运动速度矢量的垂直分量表现为:消融区冰川消融量随海拔升高而减弱,Austr...  相似文献   

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