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December 8, 2025Elements2 citations

Assembling Pangaea – The Complex Morphology of the Laurussia – Gondwana Collision

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RNR. Damian NanceKSKarel SchulmannYKYvette D. Kuiper

Key Points

  • This research aims to explore the complex morphology resulting from the collision of Gondwana and Laurentia during the assembly of Pangaea.
  • Analyzed geodynamic domains during the Late Paleozoic era.
  • Studied tectonic events from ca. 380–290 Ma in various regions of Pangaea.
  • Utilized a global model of mantle convection to explain crustal changes.
  • Identified multiple subduction-collisional tectonic events within the Variscan belt.
  • Described the formation of deformation belts and oroclines resulting from late-stage tectonic activities.
  • Highlighted differences in tectonic evolution between northeast and southern regions of Pangaea.

Abstract

The Late Paleozoic convergence and collision between Gondwana and Laurentia resulted in along-strike variations in the Alleghanian–Mauritanide–Variscan orogeny during the assembly of the greater part of Pangaea. A series of ca. 380–290 Ma events segmented the orogen into two principal geodynamic domains with contrasting tectonic evolutions. In the northeast, the European Variscan belt records multiple subduction–collisional tectonic events, including indentation by Laurussian and later Gondwanan promontories and by Gondwana-derived terranes. Late-stage events (330–290 Ma) produced strongly curved deformation belts (oroclines), and late- to post-orogenic extension. In contrast, the southern Appalachians formed south-west of the promontory collisions where subduction of Rheic Ocean remnants produced a continuous Andean-style orogenic arc that preceded ca. 290 Ma terminal collision. We explain Pangaea amalgamation using a global model of mantle convection like that of modern Earth.

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Cite This Study

Nance et al. (2025) studied this question.

synapsesocial.com/papers/693624984fa91c937236bff9https://doi.org/10.2138/gselements.21.6.422
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