Effects of lateral viscosity variations on the geoid
نویسندگان
چکیده
[1] We investigate the effects of lateral viscosity variations (LVVs) on mantle circulation model predictions of the global geoid. The present study is motivated in part by earlier findings that LVVs due to stiff slabs in the lower mantle have a strong influence on the geoid, and that slabs in the lower mantle are perhaps no stronger than the ambient mantle. However, more recently, it has been argued based on global seismic tomography models that LVVs are a minor effect on the geoid. In the light of these seemingly contradictory results, we re-visit the problem of slab strength in the lower mantle. We substantiate that the geoid calculated from tomography is hardly affected by the presence of LVVs, whereas the geoid computed from global slab models yields a poor fit to the observed geoid when LVVs are considered. However, this degradation of fit only occurs for very long wavelengths of flow, indicating inherent differences between the slab and tomography models. We also investigate the effects on the geoid due to weak plate boundaries, strong cratonic keels, and a low viscosity region in the D00 layer due to post-perovskite. In addition to the geoid, we attempt to fit plate motions with a circulation model that has prescribed weak zones at plate boundaries. Motions are matched well and, taking into account LVVs, the geoid with appropriate surface velocity boundary conditions agrees with the observed geoid as well as for free slip cases. Citation: Ghosh, A., T. W. Becker, and S. J. Zhong (2010), Effects of lateral viscosity variations on the geoid, Geophys. Res. Lett., 37, L01301, doi:10.1029/ 2009GL040426.
منابع مشابه
Multiscale dynamics of the Tonga–Kermadec subduction zone
S U M M A R Y Our understanding of mantle convection and the motion of plates depends intimately on our understanding of the viscosity structure of the mantle. While geoid and gravity observations have provided fundamental constraints on the radial viscosity structure of the mantle, the influence of short-wavelength variations in viscosity is still poorly understood. We present 2-D and 3-D fini...
متن کاملRadial profiles of temperature and viscosity in the Earth’s mantle inferred from the geoid and lateral seismic structure
In the framework of dynamical modelling of the geoid, we have estimated basic features of the radial profile of temperature in the mantle. The applied parameterization of the geotherm directly characterizes thermal boundary layers and values of the thermal gradient in the upper and lower mantle. In the inverse modelling scheme these parameters are related to the observables (geoid and seismic s...
متن کاملThe Effects of Dynamic Topography and Thermal Isostasy on the Topogra- Phy and Geoid of Venus
Introduction: The Venusian geoid, gravity field, and topography have been used in a variety of applications and are the primary sources of information about the internal structure of the planet. We focus on the relationship between the geoid and topography to determine both the support mechanism for the topography and lithospheric density structure. Magnitude of Dynamic Topography: The long-wav...
متن کاملDynamic topography, gravity and the role of lateral viscosity variations from inversion of global mantle flow
S U M M A R Y Lateral viscosity variations (LVVs) in the mantle influence geodynamic processes and their surface expressions. With the observed long-wavelength geoid, free-air anomaly, gravity gradient in three directions and discrete, high-accuracy residual topography, we invert for depthand temperature-dependent and tectonically regionalized mantle viscosity with a mantle flow model. The inve...
متن کاملEffects of Viscosity Variations on Buoyancy-Driven Flow from a Horizontal Circular Cylinder Immersed in Al2O3-Water Nanofluid
The buoyancy-driven boundary-layer flow from a heated horizontal circular cylinder immersed in a water-based alumina (Al2O3) nanofluid is investigated using variable properties for nanofluid viscosity. Two different viscosity models are utilized to evaluate heat transfer enhancement from a cylinder. Exact analytic solutions of the problem are attained employing a novel...
متن کامل