The physical structures of snow and sea ice in the Arctic section of 150°-180°W during the summer of 2010

被引:15
作者
Huang Wenfeng [1 ]
Lei Ruibo [2 ]
Matero, Ilkka [3 ]
Li Qun [2 ]
Wang Yongxue [1 ]
Li Zhijun [1 ]
机构
[1] Dalian Univ Technol, State Key Lab Coastal & Offshore Engn, Dalian 116024, Peoples R China
[2] State Ocean Adm, Polar Res Inst China, Shanghai 200136, Peoples R China
[3] Univ Helsinki, Dept Phys, FI-00014 Helsinki, Finland
基金
中国国家自然科学基金;
关键词
sea ice; snow; thickness; salinity; temperature; density; Arctic Ocean; THERMAL-CONDUCTIVITY; THICKNESS; MODEL; WINTER; COVER; LAKES;
D O I
10.1007/s13131-013-0314-4
中图分类号
P7 [海洋学];
学科分类号
0707 ;
摘要
The physical structures of snow and sea ice in the Arctic section of 150 degrees-180 degrees W were observed on the basis of snow-pit, ice-core, and drill-hole measurements from late July to late August 2010. Almost all the investigated floes were first-year ice, except for one located north of Alaska, which was probably multi-year ice transported from north of the Canadian Arctic Archipelago during early summer. The snow covers over all the investigated floes were in the melting phase, with temperatures approaching 0 C and densities of 295-398 kg/m(3). The snow covers can be divided into two to five layers of different textures, with most cases having a top layer of fresh snow, a round-grain layer in the middle, and slush and/or thin icing layers at the bottom. The first-year sea ice contained about 7%-17% granular ice at the top. There was no granular ice in the lower layers. The interior melting and desalination of sea ice introduced strong stratifications of temperature, salinity, density, and gas and brine volume fractions. The sea ice temperature exhibited linear cooling with depth, while the salinity and the density increased linearly with normalized depth from 0.2 to 0.9 and from 0 to 0.65, respectively. The top layer, especially the freeboard layer, had the lowest salinity and density, and consequently the largest gas content and the smallest brine content. Both the salinity and density in the ice basal layer were highly scattered due to large differences in ice porosity among the samples. The bulk average sea ice temperature, salinity, density, and gas and brine volume fractions were -0.8 degrees C, 1.8, 837 kg/m(3), 9.3% and 10.4%, respectively. The snow cover, sea ice bottom, and sea ice interior show evidences of melting during mid-August in the investigated floe located at about 87 degrees N, 175 degrees W
引用
收藏
页码:57 / 67
页数:11
相关论文
共 31 条
[1]   Effects of snow physical parameters on shortwave broadband albedos [J].
Aoki, T ;
Hachikubo, A ;
Hori, M .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2003, 108 (D19)
[2]   On the numerical resolution in a thermodynamic sea-ice model [J].
Cheng, B .
JOURNAL OF GLACIOLOGY, 2002, 48 (161) :301-311
[3]   Modelling of superimposed ice formation during the spring snowmelt period in the Baltic Sea [J].
Cheng, Bin ;
Vihma, Timo ;
Pirazzini, Roberta ;
Granskog, Mats A. .
ANNALS OF GLACIOLOGY, VOL 44, 2006, 2006, 44 :139-+
[4]   Accelerated decline in the Arctic Sea ice cover [J].
Comiso, Josefino C. ;
Parkinson, Claire L. ;
Gersten, Robert ;
Stock, Larry .
GEOPHYSICAL RESEARCH LETTERS, 2008, 35 (01)
[5]   EQUATIONS FOR DETERMINING THE GAS AND BRINE VOLUMES IN SEA-ICE SAMPLES [J].
COX, GFN ;
WEEKS, WF .
JOURNAL OF GLACIOLOGY, 1983, 29 (102) :306-316
[6]   Ice-cover variability on shallow lakes at high latitudes: model simulations and observations [J].
Duguay, CR ;
Flato, GM ;
Jeffries, MO ;
Menard, P ;
Morris, K ;
Rouse, WR .
HYDROLOGICAL PROCESSES, 2003, 17 (17) :3465-3483
[8]   THICKNESS, STRUCTURE, AND PROPERTIES OF LEVEL MULTIYEAR ICE IN THE EURASIAN SECTOR OF THE ARCTIC-OCEAN [J].
EICKEN, H ;
LENSU, M ;
LEPPARANTA, M ;
TUCKER, WB ;
GOW, AJ ;
SALMELA, O .
JOURNAL OF GEOPHYSICAL RESEARCH-OCEANS, 1995, 100 (C11) :22697-22710
[9]   Evaluation of ship-based electromagnetic-inductive thickness measurements of summer sea-ice in the Bellingshausen and Amundsen Seas, Antarctica [J].
Haas, C .
COLD REGIONS SCIENCE AND TECHNOLOGY, 1998, 27 (01) :1-16
[10]   Reduced ice thickness in Arctic Transpolar Drift favors rapid ice retreat [J].
Haas, Christian ;
Pfaffling, Andreas ;
Hendricks, Stefan ;
Rabenstein, Lasse ;
Etienne, Jean-Louis ;
Rigor, Ignatius .
GEOPHYSICAL RESEARCH LETTERS, 2008, 35 (17)