The source of the Earth's long wavelength geoid anomalies: Implications for mantle and core dynamics
Bradford H. Hager, Mark A. Richards, Richard J. O’Connell
Abstract
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Bradford H. Hager, Mark A. Richards, Richard J. O’Connell
Abstract
Open-access reader
The long wavelength components of the Earth's gravity field result mainly from density contrasts associated with convection in the mantle. Direct interpretation of the geoid for mantle convection is complicated by the fact that convective flow results in dynamically maintained deformation of the surface of the Earth, the core mantle boundary (CMB), and any interior chemical boundaries which might exist. These boundary deformations effect the geoid opposite in sign and are comparable in magnitude to those of the interior density contrasts driving the flow. The total difference of two relatively large quantities.
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The long wavelength components of the Earth's gravity field result mainly from density contrasts associated with convection in the mantle. Direct interpretation of the geoid for mantle convection is complicated by the fact that convective flow results in dynamically maintained deformation of the surface of the Earth, the core mantle boundary (CMB), and any interior chemical boundaries which might exist. These boundary deformations effect the geoid opposite in sign and are comparable in magnitude to those of the interior density contrasts driving the flow. The total difference of two relatively large quantities.
Key concepts: Geoid, Mantle convection, Core–mantle boundary, Mantle (geology), Geology, Geophysics, Convection, Inner core