Spatiotemporal characteristics of freezing and thawing of the active layer in the source areas of the Yellow River (SAYR)

被引:55
作者
Luo, Dongliang [1 ]
Jin, Huijun [1 ]
Lu, Lanzhi [1 ]
Wu, Qingbai [1 ]
机构
[1] Chinese Acad Sci, State Key Lab Frozen Soils Engn, Cold & Arid Reg Environm & Engn Res Inst, Lanzhou 730000, Peoples R China
来源
CHINESE SCIENCE BULLETIN | 2014年 / 59卷 / 24期
基金
中国国家自然科学基金;
关键词
Warm permafrost; Active layer; Freezing processes; Thawing processes; Freeze-up period; Zero-curtain; THERMAL REGIME; VEGETATION COVER; COASTAL-PLAIN; PERMAFROST; THICKNESS; DEPTH; SOIL;
D O I
10.1007/s11434-014-0189-6
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Based on the analysis of data on temperatures and moisture of soils in the active layer at four different permafrost sites in the source areas of the Yellow River (SAYR) in 2010-2012, the freeze-thaw processes of soils in the active layer were compared and contrasted for understanding the spatiotemporal variations. At the four studied sites, the thickness and mean annual temperature of permafrost are different. The temperatures at the top of permafrost (TTOP), i.e., the maximum depth(s) of seasonal frost and/or thaw penetration, are -1.9 A degrees C at the Chalaping site (CLP), -0.9 A degrees C at the site on the southern bank of the Zhaling Lake (ZLH), -0.4 A degrees C at the Maduo Town site (MDX), and 1.1 A degrees C at the site on the northern bank of the Eling Lake (ELH). Differences in the mean annual ground temperature of permafrost and TTOPs may be responsible for the differentiations in the freeze-thaw processes of soils in the active layer. With rising TTOPs, the ground thawing started earlier: CLP in early June, ZLH in late May, MDX in early May, and ELH in mid-April, while the freezing began later: CLP in early October, ZLH in early to mid-October, MDX in mid-October, and ELH in the mid- to late October. With increasing TTOPs, the freeze-up periods for permafrost sites were shortened: 202 days at CLP, 130 days at ZLH, 100 days at MDX, and the period of complete thaw was 89 days at ELH. At the CLP and ZLH sites, the two-directional ground freezing (downwards from ground surfaces and upwards from the permafrost table) and thawing finished in the same year, but the ground freezing at the MDX continued to the end of the next January, with very slow freezing rates in the end. At the ELH site, ground freezing kept on until early May when thawing began on the surface, and upward and downward thawing became increasingly stable in late June to early July. At each site, with rising TTOPs, the downward freezing accelerated in comparison with the upward freezing, and with an increasing proportion of downward frozen depth, and with the larger ratios of freezing to thawing duration. In summary, the patterns of thawing and freezing processes in the active layer in the SAYR differ from those in other parts of the Qinghai-Tibet Plateau to a noticeable extent.
引用
收藏
页码:3034 / 3045
页数:12
相关论文
共 36 条
[11]  
[李森 Li Sen], 2005, [冰川冻土, Journal of Glaciology and Geocryology], V27, P476
[12]  
[梁四海 Liang Sihai], 2008, [地学前缘, Earth Science Frontiers], V15, P280
[13]   Impact of the timing and duration of seasonal snow cover on the active layer and permafrost in the Alaskan Arctic [J].
Ling, F ;
Zhang, TJ .
PERMAFROST AND PERIGLACIAL PROCESSES, 2003, 14 (02) :141-150
[14]  
[罗栋梁 Luo Dongliang], 2012, [地理科学, Scientia Geographica Sinica], V32, P898
[15]   Patterns in Vegetation Composition, Surface Height and Thaw Depth in Polygon Mires in the Yakutian Arctic (NE Siberia): A Microtopographical Characterisation of the Active Layer [J].
Minke, Merten ;
Donner, Norman ;
Karpov, Nikolay ;
de Klerk, Pim ;
Joosten, Hans .
PERMAFROST AND PERIGLACIAL PROCESSES, 2009, 20 (04) :357-368
[16]  
Muller S.W., 1947, Permafrost or permanently frozen ground and related engineering problems
[17]   Active Layer Characteristics At Ten Borehole Sites In Alpine Permafrost Terrain, Switzerland [J].
Mutter, Evelyn Zenklusen ;
Phillips, Marcia .
PERMAFROST AND PERIGLACIAL PROCESSES, 2012, 23 (02) :138-151
[18]   Decomposition of old organic matter as a result of deeper active layers in a snow depth manipulation experiment [J].
Nowinski, Nicole S. ;
Taneva, Lina ;
Trumbore, Susan E. ;
Welker, Jeffrey M. .
OECOLOGIA, 2010, 163 (03) :785-792
[19]  
Osterkamp TE, 1997, PERMAFROST PERIGLAC, V8, P23, DOI 10.1002/(SICI)1099-1530(199701)8:1<23::AID-PPP239>3.0.CO
[20]  
2-2