POLYTHERMAL CONDITIONS IN ARCTIC GLACIERS

被引:113
作者
BLATTER, H [1 ]
HUTTER, K [1 ]
机构
[1] TH DARMSTADT,INST MECH,W-6100 DARMSTADT,GERMANY
关键词
D O I
10.3189/S0022143000007279
中图分类号
P9 [自然地理学];
学科分类号
0705 ; 070501 ;
摘要
Englacial temperature measurements in Arctic valley glaciers suggest in the ablation zone the existence of a basal layer of temperate ice lying below the bulk of cold ice. For such a polythermal glacier, a mathematical model is presented that calculates the temperature in the cold part and the position of the cold-temperate transition surface (CTS). The model is based on the continuum hypothesis for ice and the ice-water mixture, and on the conservation laws for moisture and energy. Temperate ice is treated as a binary mixture of ice and water at the melting point of pure ice. Boundary and transition conditions are formulated for the free surface, the base and the intraglacial cold-temperate transition surface. The model is reduced to two dimensions (plane flow) and the shallow-ice approximation is invoked. The limit of very small moisture diffusivity is analysed by using a stationary model with further reduction to one dimension (parallel-sided slab), thus providing the means of a consistent formulation of the transition conditions for moisture and heat flux through the CTS at the limit of negligibly small moisture diffusion. The application of the model to the steady-state Laika Glacier, using present-day conditions, results in a wholly cold glacier with a cold sole, in sharp contrast to observations. The present polythermal state of this glacier is suspected to be a remnant of the varying climatic conditions and glacier geometry during the past few centuries. Steady-state solutions representing a polythermal structure can indeed be found within a range of prescribed conditions which are judged to be realistic for Laika Glacier at the last maximum extent of the glacier.
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页码:261 / 269
页数:9
相关论文
共 17 条
[2]   MASS BALANCE AND THERMAL REGIME OF LAIKA ICE CAP, COBURG ISLAND, NWT, CANADA [J].
BLATTER, H ;
KAPPENBERGER, G .
JOURNAL OF GLACIOLOGY, 1988, 34 (116) :102-110
[3]   FLOW OF POLYTHERMAL GLACIERS .1. MODEL AND PRELIMINARY-ANALYSIS [J].
FOWLER, AC ;
LARSON, DA .
PROCEEDINGS OF THE ROYAL SOCIETY OF LONDON SERIES A-MATHEMATICAL AND PHYSICAL SCIENCES, 1978, 363 (1713) :217-242
[4]   ON THE TRANSPORT OF MOISTURE IN POLYTHERMAL GLACIERS [J].
FOWLER, AC .
GEOPHYSICAL AND ASTROPHYSICAL FLUID DYNAMICS, 1984, 28 (02) :99-140
[5]  
Gould JE, 1983, Z GLETSCHERKUNDE GLA, V19, P1
[6]   NUMERICAL FIXED DOMAIN MAPPING SOLUTION OF FREE-SURFACE FLOWS COUPLED WITH AN EVOLVING INTERIOR FIELD [J].
HINDMARSH, RCA ;
HUTTER, K .
INTERNATIONAL JOURNAL FOR NUMERICAL AND ANALYTICAL METHODS IN GEOMECHANICS, 1988, 12 (04) :437-459
[8]   A NUMERICAL STUDY OF PLANE ICE-SHEET FLOW [J].
HUTTER, K ;
YAKOWITZ, S ;
SZIDAROVSZKY, F .
JOURNAL OF GLACIOLOGY, 1986, 32 (111) :139-160
[9]   A MODEL COMPUTATION OF MOISTURE-CONTENT IN POLYTHERMAL GLACIERS [J].
HUTTER, K ;
BLATTER, H ;
FUNK, M .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH AND PLANETS, 1988, 93 (B10) :12205-12214
[10]  
Hutter K., 1983, THEORETICAL GLACIOLO