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南极冰盖地形数据库BEDMAP 2述评 被引量:6
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作者 陈昀 孙波 +2 位作者 刘春 崔祥斌 王甜甜 《极地研究》 CAS CSCD 北大核心 2014年第2期254-261,共8页
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... 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。 展开更多
关键词 南极冰盖 BEDMAP 2 表面高程 冰厚 冰下地形
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南大洋海底地形对冰山运动与搁浅的影响 被引量:2
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作者 李田 刘岩 +7 位作者 程晓 欧阳伦曦 李新情 JiPing LIU Mohammed SHOKR 惠凤鸣 张晶 温家洪 《中国科学:地球科学》 CSCD 北大核心 2017年第4期450-460,共11页
冰山是南极冰盖-冰架-海洋系统中活跃的组成部分,南大洋海底地形是影响冰山运动与搁浅的重要因素,但前人对此鲜有研究,本文结合南极Bedmap-2海底地形数据和杨百瀚大学冰山数据库所记录的冰山运动轨迹数据分析了海底地形对冰山运动和搁... 冰山是南极冰盖-冰架-海洋系统中活跃的组成部分,南大洋海底地形是影响冰山运动与搁浅的重要因素,但前人对此鲜有研究,本文结合南极Bedmap-2海底地形数据和杨百瀚大学冰山数据库所记录的冰山运动轨迹数据分析了海底地形对冰山运动和搁浅的影响.结果表明:(1)冰山搁浅事件与搁浅冰山轨迹点的数量分布主要与冰山水下厚度分布有关,在水深为200~300m海域内数量最高.自由运动冰山在南极陆坡锋区域(海洋水深500m左右)存在数量与速度的峰值;(2)海底地形对冰山运动的直接影响是冰山搁浅,在沿南极海岸线外围水深低于2000m的362×10~4km^2的海域里,从冰架前缘崩解的小型冰山可能搁浅区(水深小于400m)占28%即不易搁浅,这些搁浅区主要分布在东南极与南极半岛沿岸.从大冰架上崩解的大中型冰山(长轴大于18.5km)可能搁浅区(水深小于800m)占总面积的74%即较易搁浅;(3)在水深小于2000m的海域内冰山运动速度与海水深度之间具有正相关性(R=0.85,P<0.01)(即海水越深的地方冰山运动越快),而海冰的季节性变化对这种相关性的影响不大,说明海底地形起伏所引起的海水深度的变化会对冰山运动速度产生影响. 展开更多
关键词 bedmap-2 海底基岩 搁浅 冰山 南极
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The discovery of surface runoff in the megadunes of Badain Jaran Desert,China,and its significance 被引量:4
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作者 ZHAO JingBo MA YanDong +3 位作者 LUO XiaoQing YUE DaPeng SHAO TianJie DONG ZhiBao 《Science China Earth Sciences》 SCIE EI CAS CSCD 2017年第4期707-719,共13页
The Badain Jaran Desert exhibits the greatest difference in altitude of all of the world's deserts.On the slopes of megadunes in the desert,there are physical and chemical deposits produced by surface runoff.In ad... The Badain Jaran Desert exhibits the greatest difference in altitude of all of the world's deserts.On the slopes of megadunes in the desert,there are physical and chemical deposits produced by surface runoff.In addition,we have observed rarely-seen infiltration-excess surface runoff in the megadune depressions as well as spring streams at the base of megadunes.We used electron microscopy,energy spectrum analysis,infiltration experiments,moisture content determinations and grain-size analysis to study the mineral and chemical composition of the runoff precipitates,and grain-size of the deposits associated with the runoff,together with the hydrological balance in the megadune area,and the atmospheric precipitation mechanism responsible for groundwater recharge and for supplying water to lakes.The observations of shallow runoff and infiltration-excess surface runoff indicate the occurrence of strong and effective precipitation in summer,which would provide an important source for groundwater recharge.Several lines of evidence,such as the physical and chemical deposits resulting from shallow subsurface runoff,spring streams,infiltration-excess runoff,and gravity capillary water with a moisture content of 3-6%,demonstrate that precipitation reaches the base of the megadunes through infiltration and subsequently becomes groundwater.The chemical deposits,such as newly-formed calcite and gypsum,and gray-black physical deposits,as well as different stages in the development of fan-shaped landforms resulting from shallow subsurface runoff,indicate that groundwater recharge in the area is the result of long-term precipitation,rather than intermittent individual major rainfall events.Fine sand layers with a low infiltration capacity lead to subsurface runoff emerging at the ground surface.Five factors play an important role in maintaining a positive water balance and in replenishing groundwater via rainfall:effective rainfall as a water source,the high infiltration capacity of the sands enabling rainfall to rapidly become capillary water in the dunes,low evapotranspiration rates due to the sparse vegetation,the fact that the depth of the sand layer influenced by evaporation is shallow enough to maximize the deep infiltration of rainfall,and rapidly-moving gravity capillary water in the sandy dunes.These five factors together constitute a mechanism for groundwater recharge from rainfall,and explain the origin of the groundwater and lakes in the area.Our findings represent a significant advance in research on the hydrological cycle,including groundwater recharge conditions and recharge mechanisms,in this desert region. 展开更多
关键词 bedmap-2 Seafloor topography Iceberg grounding Antarctica
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