SUBDUCTED SLABS AND THE GEOID .1. NUMERICAL EXPERIMENTS WITH TEMPERATURE-DEPENDENT VISCOSITY

被引:54
作者
KING, SD [1 ]
HAGER, BH [1 ]
机构
[1] MIT, DEPT EARTH ATMOSPHER & PLANETARY SCI, CAMBRIDGE, MA USA
关键词
D O I
10.1029/94JB01552
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
One of the most powerful constraints on mantle viscosity comes from the correlation of the long-wavelength (degree 4-9) geoid with that predicted by a density model for subducted slabs. The effect of lateral variations of viscosity should be most pronounced at subduction zones, due to the strong effect of temperature on viscosity. An idealized slab model with temperature-dependent viscosity is considered, with various lateral and vertical viscosity structures, using a two-dimensional finite element formulation. The viscosity parameterization affects the amplitude of the long-wavelength geoid anomaly but not the sign of the correlation between the geoid and density anomalies. Depth-dependent viscosity models with a high-viscosity lithospheric layer do not completely match the temperature-dependent (laterally varying) results, suggesting that the theology of the slab does have an effect on the long-wavelength surface topography and geoid; however, this affect is minor, suggesting that the radial models of mantle viscosity inferred from surface observables are correct to first order. In contrast, the short-wavelength features are dramatically affected by the theology of the region surrounding the downwelling. Further study of the shorter-wavelength geoid over subduction zones may provide better insight into subduction zone processes.
引用
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页码:19843 / 19852
页数:10
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