Global deep‐time plate motion models have traditionally followed a classical rigid plate approach, even though plate deformation is known to be significant. Here we present a global Mesozoic–Cenozoic deforming plate motion model that captures the progressive extension of all continental margins since the initiation of rifting within Pangea at ~240 Ma. The model also includes major failed continental rifts and compressional deformation along collision zones. The outlines and timing of regional deformation episodes are reconstructed from a wealth of published regional tectonic models and associated geological and geophysical data. We reconstruct absolute plate motions in a mantle reference frame with a joint global inversion using hot spot tr...
Understanding the long-term evolution of Earth's plate–mantle system is reliant on absolute plate mo...
We have developed an improved model of global digital palaeo-plate boundaries and plate motion to de...
We have developed an improved model of global digital palaeo-plate boundaries and plate motion to de...
Global deep‐time plate motion models have traditionally followed a classical rigid plate approach, e...
Many aspects of deep-time Earth System models, including mantle convection, paleoclimatology, paleob...
Many aspects of deep-time Earth System models, including mantle convection, paleoclimatology, paleob...
Global plate motion models provide a spatial and temporal framework for geological data and have bee...
Global plate motion models provide a spatial and temporal framework for geological data and have bee...
Global plate motion models provide a spatial and temporal framework for geological data and have bee...
Global plate motion models provide a spatial and temporal framework for geological data and have bee...
Traditional plate reconstruction methodologies do not allow for plate deformation to be considered. ...
Detailed global plate motion models that provide a continuous description of plate boundaries throug...
Detailed global plate motion models that provide a continuous description of plate boundaries throug...
We have developed an improved model of global digital palaeo-plate boundaries and plate motion to de...
We have developed an improved model of global digital palaeo-plate boundaries and plate motion to de...
Understanding the long-term evolution of Earth's plate–mantle system is reliant on absolute plate mo...
We have developed an improved model of global digital palaeo-plate boundaries and plate motion to de...
We have developed an improved model of global digital palaeo-plate boundaries and plate motion to de...
Global deep‐time plate motion models have traditionally followed a classical rigid plate approach, e...
Many aspects of deep-time Earth System models, including mantle convection, paleoclimatology, paleob...
Many aspects of deep-time Earth System models, including mantle convection, paleoclimatology, paleob...
Global plate motion models provide a spatial and temporal framework for geological data and have bee...
Global plate motion models provide a spatial and temporal framework for geological data and have bee...
Global plate motion models provide a spatial and temporal framework for geological data and have bee...
Global plate motion models provide a spatial and temporal framework for geological data and have bee...
Traditional plate reconstruction methodologies do not allow for plate deformation to be considered. ...
Detailed global plate motion models that provide a continuous description of plate boundaries throug...
Detailed global plate motion models that provide a continuous description of plate boundaries throug...
We have developed an improved model of global digital palaeo-plate boundaries and plate motion to de...
We have developed an improved model of global digital palaeo-plate boundaries and plate motion to de...
Understanding the long-term evolution of Earth's plate–mantle system is reliant on absolute plate mo...
We have developed an improved model of global digital palaeo-plate boundaries and plate motion to de...
We have developed an improved model of global digital palaeo-plate boundaries and plate motion to de...