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| 1 | 基于CryoSat-2测高数据的全南极冰盖DEM的建立与精度评估显示文摘数字高程模型(DEM)是南极冰盖变化研究的基础,由于现场实测数据的稀缺,卫星测高数据是南极地区构建DEM的'主要数据来源.CryoSat-2是新一代用于极地冰盖、海冰监测的测高卫星,本文利用2012-12-2015-01两个完整周期的CryoSat-2测高数据建立一个新的南极冰盖DEM.坡度是影响卫星测高精度的重要因素之一,利用改进的重定位方法对CryoSat-2数据进行坡度改正.插值方法是影响DEM精度的重要因素,通过对几种常用插值方法的比较,最后选用克里金插值方法对测高数据进行插值,建立了1km分辨率的南极DEM.在88°S以南的CryoSat-2数据空白区,利用南极数字数据库(ADD)的等高线数据对DEM进行填补,建立了全南极冰盖DEM.利用ICESat卫星测高数据、IceBridge航空测高数据以及GPS地面实测数据对新建立的CryoSat-2 DEM进行精度验证,并与Bamber 1 km DEM、ICESat DEM、RAMPv2 DEM以及JLB97 DEM等四种国际上常用的南极DEM进行比较.结果表明:新建立的CryoSat-2 DEM的整体精度约为0.730±8.398 m;在冰弯顶部区域,DEM精度优于1 m;在冰架上,DEM精度约为4 m;在内陆冰盖大部分地区,DEM精度优于10 m;在地形复杂的山区和沿海边缘地区,DEM误差超过150 m. | 李斐 肖峰 张胜凯 鄂栋臣 程晓 郝卫峰 袁乐先 左耀文 | 2017 | 地球物理学报2017,60,5: | 8 |
| 2 | Chinese radioglaciological studies on the Antarctic ice sheet: progress and prospects显示文摘Chinese radioglaciological studies on the Antarctic ice sheet(AIS) began in 2004/05 when the 21 st Chinese National Antarctic Research Expedition(CHINARE 21) team arrived at Dome A for the first time and radio echo sounding(RES) was conducted along the inland traverse and in the Dome A region. Subsequently, more field surveys were conducted along the traverse and in the Dome A region using different radar systems targeting different scientific purposes, such as revealing the landscape of the Gamburtsev Subglacial Mountains by detailed grid RES, or locating a deep ice core drilling site by mapping and studying internal structures, bedrock topography and subglacial conditions in the Dome A region. Furthermore, the evolution of the AIS was inferred from the typical mountain glaciation topography beneath Dome A, and the age of the deep ice core at Kunlun Station was estimated through numerical modeling. Recently, the Snow Eagle 601 airplane was acquired and an airborne geophysical system was constructed to survey the AIS in Princess Elizabeth Land during CHINARE 32(2015/16) and CHINARE 33(2016/17) in order to fill the large data gap there. In this paper, we review both the recent progress of Chinese radioglaciological science in Antarctica and future proposed work. | CUI Xiangbin WANG Tiantian SUN Bo TANG Xueyuan GUO Jingxue | 2017 | Advances in Polar Science2017,28,3: | 6 |
| 3 | Snowdrift effect on snow deposition:Insights from a comparison of a snow pit profile and meteorological observations in east Antarctica显示文摘A high-frequency and precise ultrasonic sounder was used to monitor precipitated/deposited and drift snow events over a 3-year period(17 January 2005 to 4 January 2008) at the Eagle automatic weather station site,inland Antarctica.Ion species and oxygen isotope ratios were also generated from a snow pit below the sensor.These accumulation and snowdrift events were used to examine the synchronism with seasonal variations of δ^(18)O and ion species,providing an opportunity to assess the snowdrift effect in typical Antarctic inland conditions.There were up to 1-year differences for this 3-year-long snow pit between the traditional dating method and ultrasonic records.This difference implies that in areas with low accumulation or high wind,the snowdrift effect can induce abnormal disturbances on snow deposition.The snowdrift effect should be seriously taken into account for high-resolution dating of ice cores and estimation of surface mass balance,especially when the morphology of most Antarctic inland areas is similar to that of the Eagle site. | DING MingHu ZHANG Tong XIAO CunDe LI ChuanJin JIN Bo BIAN LinGen WANG ShuJie ZHANG DongQi QIN DaHe | 2017 | Science China Earth Sciences2017,60,4: | 3 |
| 4 | 南极冰盖地表能量平衡的研究进展显示文摘南极冰盖地表能量平衡研究,是耦合冰冻圈、大气圈和水圈过程的基础之一,对了解冰盖表面物质平衡过程、提升极地天气气候预报水平有着极其重要的意义。随着近年来极地观测水平的提升,南极冰盖地表能量平衡研究取得了长足的进步,特别是在辐射参数化和有效热传导系数模拟等方面。但在南极广袤的地域和多样的天气条件下,已有的研究大都适用于局地环境,限制了我们的模拟和预测能力。因此,适用于极地特殊环境的传感器的研发、关键气候区的科学试验的开展和基础的气象站网建设,能加深我们对冰/雪-气相互作用过程的理解,进而改进已有的参数化方案,应用于多圈层模式的耦合。 | 杨堤益 丁明虎 邹小伟 | 2021 | 极地研究2021,33,1: | 3 |
| 5 | 南极中山站-Dome A断面表层雪稳定同位素空间分布及环境影响因素分析显示文摘中山站-Dome A断面是表层雪稳定同位素组成分析的理想区域,沿线进行δ18O、δD和d的空间分布及环境影响因素研究对反映东南极地区的气候变化和物质来源具有关键意义。因而,本文基于线性回归及相关性分析方法,详细探究了断面上多种环境因素与表层雪稳定同位素分布的空间关系。结果表明,温度和地理因素与同位素比值之间有显著相关关系,且海拔是地理因素中的主要影响因素,随海拔上升表层雪的δ18O呈线性下降趋势。另外,通过断面上δ-T斜率与南极其他断面对比,发现斜率可能具有冰盖近岸和内陆地区较低的区域性特征,而造成这一现象的原因是水汽源区的改变和低温条件下水汽过饱和时的同位素动力分馏。最后,d的空间分布在沿海区域和内陆区域也有不同,推测主控因素分别是水汽源区条件和温度。 | 马天鸣 谢周清 李院生 安春雷 史贵涛 于金海 马红梅 姜苏 | 2017 | 极地研究2017,29,2: | 2 |
| 6 | 南极Dome A至普里兹湾沿岸下降风特征显示文摘本文利用我国极地数值天气预报系统和美国南极中尺度预报系统的存档数据,分析了Dome A至普里兹湾沿岸地区下降风风场的时空分布和大气质量通量,给出了该地区下降风的基本特点。该地区下降风受南极冰盖地形影响强烈,艾默里冰架西侧等陡峭地区风速总体较大;下降风随季节变化较大,冬季的下降风较强。强下降风在前进过程中有绝热增温现象,并给艾默里冰架西部带来近表层升温。下降风风速最大处位于地面以上约100~200 m高度,风速较大地区的下降风在垂直方向上分布较为深厚。下降风在普里兹湾沿岸的表层大气质量通量在时空分布上极不均匀,艾默里冰架西侧的下降风气流较强时,普里兹湾海域有较多的中尺度气旋活动。下降风引发普里兹湾中尺度气旋旋生的过程值得关注,需进一步研究下降风引发中尺度气旋的机理。 | 孙启振 张占海 付敏 李春花 秦听 丁卓铭 赵杰臣 | 2021 | 海洋学报2021,43,7: | 2 |
| 7 | Accumulation and geochemical evidence for the Little Ice Age episode in eastern Antarctica显示文摘Data on accumulation and concentration of chemical compounds recorded in an essentially unexplored area(Dome Argus)of the Indian Ocean sector of eastern Antarctica during the past 2,680 years(680 B.C. to 1999 A.D.) are presented. During the first 1, 700 years(680 B. C. to 1000 A. D.), the accumulation data shows a slightly decreasing trend, while chemical ions appear to be stable, representing a stable climatic condition. An intensive increasing trend of the accumulation occurred during the 12^(th) to 14^(th) century. The period from 15^(th) to 19^(th) century was characterized by a rapid reducing accumulation and concentrations of volatile compounds suffering post-depositional loss linked to sparse precipitation amount,which was temporally consistent with the Little Ice Age(LIA) episode. Comparison between observed accumulation rates with other eastern Antarctic ice cores show a consistent decreasing trend during LIA, while sea salt and dust-originated ions increased due to sea ice extent and intensified atmospheric transportation. Distribution of volcanic originated sulfate over the Antarctic continent show a significant change during the 15^(th) century, coincident with the onset of the LIA. These results are important for the assessment of Antarctic continent mass balance and associated interpretation of the Dome A deep ice core records. | ChuanJin Li JiaWen Ren CunDe Xiao MingHu Ding AiHong Xie ZhiHeng Du XiangYu Ma DaHe Qin | 2019 | Research in Cold and Arid Regions2019,11,1: | 1 |