Marine Geoscience Data System

Data DOI: 10.26022/IEDA/331348

Citation:
Lin, Jian, et al., (2023), Southwest Indian Ridge (SWIR 9-16E) residual mantle Bouguer gravity anomaly data (netCDF format). Marine Geoscience Data System (MGDS). doi:10.26022/IEDA/331348
Title:
Southwest Indian Ridge (SWIR 9-16E) residual mantle Bouguer gravity anomaly data (netCDF format)
Abstract:
Shipboard free-air gravity data were processed in the same way as described by Wang et al. (2015) to obtain Residual Mantle Bouguer Anomaly (RMBA): The gravitational effects of seafloor topography and relief on the crust-mantle interface were subtracted from the free-air gravity anomaly to obtain mantle Bouguer anomaly (MBA), assuming a reference crustal thickness of 6 km and using the spectrum method of Parker (1973). Densities of water, crust, and mantle were assumed to be 1.03 10^3, 2.7 10^3, and 3.3 10^3 kg m^-3, respectively. RMBA was then calculated by removing the gravitational effect of lithospheric cooling from MBA, based on a 3-D mantle thermal model. The mantle thermal structure was calculated for a 100 km thick layer, using the 2-D age grid of Wang et al. (2015) and assuming simple 1-D plate cooling (Turcotte and Schubert, 2002; Wang et al., 2011). The parameters used in the calculation are the same as in Wang et al. (2011). This mantle thermal model was then converted to a 3-D mantle density structure, which was used to calculate gravitational effects. The data file is in GMT-compatible netCDF grid format.
Creator(s):
Lin, Jian
Dick, Henry
Date Available:
2023-08-25
Date Created:
2023-08-25
Data Type(s):
Gravity:Anomaly:MantleBouguerResidual
Resource Type:
Dataset
File Format(s):
application/x-netcdf
Data Curated by:
Version:
1
Language:
en
License:
Creative Commons Attribution-NonCommercial-Share Alike 3.0 United States [CC BY-NC-SA 3.0] URI: http://creativecommons.org/licenses/by-nc-sa/3.0/us/

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