TY - JOUR
T1 - Orocline timing through joint analysis
T2 - Insights from the Ibero-Armorican Arc
AU - Pastor-Galán, Daniel
AU - Gutiérrez-Alonso, Gabriel
AU - Weil, Arlo Brandon
N1 - Funding Information:
This paper is part of the IGCP Project from UNESCO No. 574: Bending and Bent Orogens, and Continental Ribbons. Financial support was supplied by Research Projects ODRE and ODRE II (“Oroclines and Delamination: Relations and Effects”) No. CGL2006-00902 and CGL2009-1367 , from the Spanish Ministry of Science and Innovation . DPG is also granted by an ACPI grant from the Junta de Castilla and Leon . Thanks also to F. Storti, S. Marshak and R. Caputo for his helpful, critical and constructive review of the manuscript.
PY - 2011/7/10
Y1 - 2011/7/10
N2 - The timing and kinematics of oroclinal bending in the core of the Ibero-Armorican Arc (IAA) has recently been constrained using paleomagnetic data from the Cantabrian Zone in northern Iberia. This study analyzes the joint-patterns present in rock units deposited pre-, syn- and post-oroclinal bending. Systematic changes in the orientations of tensional joint-sets in superimposed stratigraphic units are interpreted to record the progressive stages of oroclinal bending in the core of the IAA. Time constrains for joint set development are constrained by the known ages of the bounding unconformities that limit the studied stratigraphic units. Joint azimuth variability in the pre-orocline rocks (Neoproterozoic to pre-Upper Carboniferous) is comparable to the present arc curvature of the orocline (about 180°); the joints in the syn-orocline rocks (Upper Pennsylvanian or Stephanian, 304 to 299. Ma) show a lower azimuthal variability that is comparable to about 50-70% of the total curvature seen in pre-orocline rocks. Finally, post-orocline rocks (Permian) contain joints that have uniform azimuths for each set across the entirety of the present-day arc. Together these spatially and temporally distinct joint sets suggest that rotations in the Cantabrian Zone took place in the Upper Pennsylvanian during a ca. 10. Ma time period, which agrees well with previous paleomagnetic arguments. The data also provides supporting evidence for oroclinal bending by rotation around vertical axes of an initially linear, or nearly linear, orogenic belt. And finally, these data highlight the potential power in using tectonic joint sets for constraining thrust belt kinematics in curved orogenic systems when unconformity bounded stratigraphic sequences are present that are coeval with orocline development.
AB - The timing and kinematics of oroclinal bending in the core of the Ibero-Armorican Arc (IAA) has recently been constrained using paleomagnetic data from the Cantabrian Zone in northern Iberia. This study analyzes the joint-patterns present in rock units deposited pre-, syn- and post-oroclinal bending. Systematic changes in the orientations of tensional joint-sets in superimposed stratigraphic units are interpreted to record the progressive stages of oroclinal bending in the core of the IAA. Time constrains for joint set development are constrained by the known ages of the bounding unconformities that limit the studied stratigraphic units. Joint azimuth variability in the pre-orocline rocks (Neoproterozoic to pre-Upper Carboniferous) is comparable to the present arc curvature of the orocline (about 180°); the joints in the syn-orocline rocks (Upper Pennsylvanian or Stephanian, 304 to 299. Ma) show a lower azimuthal variability that is comparable to about 50-70% of the total curvature seen in pre-orocline rocks. Finally, post-orocline rocks (Permian) contain joints that have uniform azimuths for each set across the entirety of the present-day arc. Together these spatially and temporally distinct joint sets suggest that rotations in the Cantabrian Zone took place in the Upper Pennsylvanian during a ca. 10. Ma time period, which agrees well with previous paleomagnetic arguments. The data also provides supporting evidence for oroclinal bending by rotation around vertical axes of an initially linear, or nearly linear, orogenic belt. And finally, these data highlight the potential power in using tectonic joint sets for constraining thrust belt kinematics in curved orogenic systems when unconformity bounded stratigraphic sequences are present that are coeval with orocline development.
KW - Cantabrian-Asturian arc
KW - Ibero-Armorican arc
KW - Joint analysis
KW - Orocline
KW - Orocline timing
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U2 - 10.1016/j.tecto.2011.05.005
DO - 10.1016/j.tecto.2011.05.005
M3 - Article
AN - SCOPUS:79959769035
SN - 0040-1951
VL - 507
SP - 31
EP - 46
JO - Tectonophysics
JF - Tectonophysics
IS - 1-4
ER -