noaa-ngdc-antarctic-paleobathymetry
Hayes, D.E. and C. Zhang and R.A. Weissel

folder antarctic-paleobathymetry (168 files)
fileanimations/3gp/apb_256.3gp 607.33kB
fileanimations/3gp/apb_512.3gp 1.19MB
fileanimations/3gp/apb_640.3gp 1.19MB
fileanimations/3gp/apb_800.3gp 1.19MB
fileanimations/3gp/apb_1024.3gp 2.39MB
fileanimations/avi/apb_256.avi 6.26MB
fileanimations/avi/apb_512.avi 25.04MB
fileanimations/avi/apb_640.avi 39.12MB
fileanimations/avi/apb_800.avi 61.14MB
fileanimations/avi/apb_1024.avi 100.15MB
fileanimations/gif/apb_256.gif 1.72MB
fileanimations/gif/apb_512.gif 5.87MB
fileanimations/mov/apb_256.mov 2.45MB
fileanimations/mov/apb_512.mov 7.70MB
fileanimations/mov/apb_640.mov 4.35MB
fileanimations/mov/apb_800.mov 15.84MB
fileanimations/mov/apb_1024.mov 23.55MB
fileanimations/mp4/apb_256.mp4 1.44MB
fileanimations/mp4/apb_512.mp4 2.46MB
fileanimations/mp4/apb_640.mp4 2.48MB
fileanimations/mp4/apb_800.mp4 2.49MB
fileanimations/mp4/apb_1024.mp4 2.51MB
fileappendices/appendix_a.pdf 153.46kB
fileappendices/appendix_b1.pdf 64.12kB
fileappendices/appendix_b2.pdf 66.69kB
fileappendices/appendix_c.pdf 93.02kB
filefiles/basefiles/afr_0.dg.ascii.gz 2.41MB
filefiles/basefiles/afr_c0.gz 2.45kB
filefiles/basefiles/ALL_basefiles.tar.gz 57.38MB
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filefiles/basefiles/all_herdman_0.dg.gz 0.50kB
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filefiles/basefiles/all_shagrocks_0.dg.gz 1.34kB
filefiles/basefiles/ame_c0.gz 2.29kB
filefiles/basefiles/aus_0.dg.ascii.gz 1.50MB
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filefiles/basefiles/chile_sub_0.dg.ascii.gz 5.65MB
filefiles/basefiles/drake_mid_0.dg.ascii.gz 117.72kB
filefiles/basefiles/drake_n_0.dg.ascii.gz 144.98kB
filefiles/basefiles/drake_s_0.dg.ascii.gz 168.56kB
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filefiles/basefiles/nazca_e_sub_0.dg.ascii.gz 5.07MB
filefiles/basefiles/nazca_se_sub_0.dg.ascii.gz 610.41kB
filefiles/basefiles/pacific_w_sub_0.dg.ascii.gz 3.75MB
filefiles/basefiles/plate0c_0.dg.gz 1.64MB
filefiles/basefiles/plate0kerg_0.dg.gz 383.48kB
filefiles/basefiles/plate0o_0.dg.ascii.gz 17.08MB
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Type: Dataset
Tags: NOAA, NGDC, paleobathymetry, antarctic

Bibtex:
@article{,
title= {noaa-ngdc-antarctic-paleobathymetry},
journal= {},
author= {Hayes, D.E. and C. Zhang and R.A. Weissel},
year= {},
url= {https://www.ncei.noaa.gov/products/circum-antarctic-paleobathymetry},
abstract= {This software package models the paleobathymetry of the circum-Antarctic oceans back to the Late Cretaceous. It is based on a revised tectonic model of the circum-Antarctic region, and incorporates features such as spatially variable subsidence rates, refined rotation poles and a detailed treatment of selected areas. 

The software output consists of color-coded maps at user-specified Cenozoic ages and the associated gridded paleobathymetry for all oceans lying south of 30°S.
Citation

Hayes, D.E., C. Zhang and R.A. Weissel (2009), Modeling Paleobathymetry in the Southern Ocean. Eos, Vol. 90, No. 19, 12 May 2009, p. 165-166. doi: 10.1029/2009EO190001

Methodology

This model approximates the composite effects of sedimentation through loading and burial while assuming a constant sedimentation rate at each grid point. It differs from that of Brown, et al., 2006 because it does not assume uniform cooling-induced subsidence throughout the entire region being modelled.
Technique

There are many steps involved in reconstructing paleobathymetry for any specified time. First, plates are rotated back to their position at the target time and oceanic crust younger than the target age is removed. Next, the residual present-day bathymetry must be adjusted to account for the effects of crustal subsidence, sedimentation and eustatic sea level changes. In some places, crust that existed at the target age has since been subducted and must be resurrected.

The user may accept our default parameters or enter new values at runtime for parameters such as subsidence. The user may also alter basic input data such as bathymetry, crustal age, sediment thickness and stage poles by creating new files. See Appendix A for the required file formats.
},
keywords= {NOAA, NGDC, paleobathymetry, antarctic},
terms= {},
license= {},
superseded= {}
}


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