Palaeomagnetism of red beds of the Late Devonian Worange Point Formation, SE Australia

Gently folded strata of the Late Devonian Merrimbula Group along the south coast of New South Wales are similar to numerous deposits of Late Devonian to Early Carboniferous, subaerial to shallow marine, quartzose sandstone that are known as the Lambie Facies of SE Australia. Because the Lambie sands...

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Published in:Geophysical Journal International
Main Authors: Thrupp, G. A., Kent, D. V., Schmidt, P. W., Powell, C. Mca.
Format: Text
Language:English
Published: Oxford University Press 1991
Subjects:
Online Access:http://gji.oxfordjournals.org/cgi/content/short/104/1/179
https://doi.org/10.1111/j.1365-246X.1991.tb02503.x
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author Thrupp, G. A.
Kent, D. V.
Schmidt, P. W.
Powell, C. Mca.
author_facet Thrupp, G. A.
Kent, D. V.
Schmidt, P. W.
Powell, C. Mca.
author_sort Thrupp, G. A.
collection HighWire Press (Stanford University)
container_issue 1
container_start_page 179
container_title Geophysical Journal International
container_volume 104
description Gently folded strata of the Late Devonian Merrimbula Group along the south coast of New South Wales are similar to numerous deposits of Late Devonian to Early Carboniferous, subaerial to shallow marine, quartzose sandstone that are known as the Lambie Facies of SE Australia. Because the Lambie sands overlap the early Palaeozoic tectonic elements of the Lachlan Fold Belt, large displacement since the Late Devonian of any Lachlan terranes, with respect to interior Australia, is precluded. We collected oriented core samples from 37 sites primarily in reddish, quartzose litharenites of the Worange Point Formation. The remanent magnetization is carried by haematite. Incremental thermal demagnetization reveals a dominant, well-defined, steep-upward-north component of magnetization that post-dates the mid-Carboniferous folding. The south pole position (146.4°E, 68.6°S, A 95 3.1°) derived from the overprinted specimens is close to both the Late Carboniferous and mid-Cretaceous reference poles as well as the spin axis of today. The overprint is attributed to both viscous partial thermoremanent and chemical remanent magnetization (VPTRM and CRM). Its exclusively normal polarity is consistent with a mid-Cretaceous acquisition, perhaps related to the rifting of the SE Australian margin. A characteristic component of magnetization is isolated between ∼660° and ∼680°C in ∼30 per cent of the samples. Although a regional fold test of the overall result is inconclusive because the directions of characteristic magnetization are generally close to the axes of folding, two sets of samples from opposite limbs of a local syncline pass a fold test at 90 per cent confidence, indicating a pre-folding origin of the remanence. The presence of both polarities in thin horizons, some of which are palaeosols, and diagenetic haematite associated with incipient cleavage formed in an early stage of deformation before folding, indicates that the acquisition of remanent magnetization occurred over a protracted period. an analysis that combines ...
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spelling fthighwire:oai:open-archive.highwire.org:gji:104/1/179 2025-01-17T00:52:58+00:00 Palaeomagnetism of red beds of the Late Devonian Worange Point Formation, SE Australia Thrupp, G. A. Kent, D. V. Schmidt, P. W. Powell, C. Mca. 1991-01-01 00:00:00.0 text/html http://gji.oxfordjournals.org/cgi/content/short/104/1/179 https://doi.org/10.1111/j.1365-246X.1991.tb02503.x en eng Oxford University Press http://gji.oxfordjournals.org/cgi/content/short/104/1/179 http://dx.doi.org/10.1111/j.1365-246X.1991.tb02503.x Copyright (C) 1991, Oxford University Press Articles TEXT 1991 fthighwire https://doi.org/10.1111/j.1365-246X.1991.tb02503.x 2015-02-28T17:32:55Z Gently folded strata of the Late Devonian Merrimbula Group along the south coast of New South Wales are similar to numerous deposits of Late Devonian to Early Carboniferous, subaerial to shallow marine, quartzose sandstone that are known as the Lambie Facies of SE Australia. Because the Lambie sands overlap the early Palaeozoic tectonic elements of the Lachlan Fold Belt, large displacement since the Late Devonian of any Lachlan terranes, with respect to interior Australia, is precluded. We collected oriented core samples from 37 sites primarily in reddish, quartzose litharenites of the Worange Point Formation. The remanent magnetization is carried by haematite. Incremental thermal demagnetization reveals a dominant, well-defined, steep-upward-north component of magnetization that post-dates the mid-Carboniferous folding. The south pole position (146.4°E, 68.6°S, A 95 3.1°) derived from the overprinted specimens is close to both the Late Carboniferous and mid-Cretaceous reference poles as well as the spin axis of today. The overprint is attributed to both viscous partial thermoremanent and chemical remanent magnetization (VPTRM and CRM). Its exclusively normal polarity is consistent with a mid-Cretaceous acquisition, perhaps related to the rifting of the SE Australian margin. A characteristic component of magnetization is isolated between ∼660° and ∼680°C in ∼30 per cent of the samples. Although a regional fold test of the overall result is inconclusive because the directions of characteristic magnetization are generally close to the axes of folding, two sets of samples from opposite limbs of a local syncline pass a fold test at 90 per cent confidence, indicating a pre-folding origin of the remanence. The presence of both polarities in thin horizons, some of which are palaeosols, and diagenetic haematite associated with incipient cleavage formed in an early stage of deformation before folding, indicates that the acquisition of remanent magnetization occurred over a protracted period. an analysis that combines ... Text South pole HighWire Press (Stanford University) South Pole Geophysical Journal International 104 1 179 202
spellingShingle Articles
Thrupp, G. A.
Kent, D. V.
Schmidt, P. W.
Powell, C. Mca.
Palaeomagnetism of red beds of the Late Devonian Worange Point Formation, SE Australia
title Palaeomagnetism of red beds of the Late Devonian Worange Point Formation, SE Australia
title_full Palaeomagnetism of red beds of the Late Devonian Worange Point Formation, SE Australia
title_fullStr Palaeomagnetism of red beds of the Late Devonian Worange Point Formation, SE Australia
title_full_unstemmed Palaeomagnetism of red beds of the Late Devonian Worange Point Formation, SE Australia
title_short Palaeomagnetism of red beds of the Late Devonian Worange Point Formation, SE Australia
title_sort palaeomagnetism of red beds of the late devonian worange point formation, se australia
topic Articles
topic_facet Articles
url http://gji.oxfordjournals.org/cgi/content/short/104/1/179
https://doi.org/10.1111/j.1365-246X.1991.tb02503.x