Digital Image Correlation of evolving restraining bend experiments in wet kaolin

Elston, Hanna M.; Cooke, Michele;

2022-06 || GFZ Data Services

We document the evolution of two 15° strike-slip restraining bends within wet kaolin. Computer-controlled stepper motors displace one half of the split-box apparatus at a constant rate of 0.5 mm/min to induce dextral faulting in a 2.5 cm thick layer of wet kaolin. The basal plate discontinuity has a 15° bend with a 2 cm stepover distance. Prior to any loading we cut a vertical fault surface that follows the basal plate discontinuity into the wet kaolin with an electrified probe and wooden template.

Originally assigned keywords

Corresponding MSL vocabulary keywords

MSL enriched keywords

Originally assigned sub domains
  • analogue modelling of geologic processes
MSL enriched sub domains
  • analogue modelling of geologic processes
  • rock and melt physics
Source http://doi.org/10.5880/fidgeo.2021.045
Source publisher GFZ Data Services
DOI 10.5880/fidgeo.2021.045
License CC BY 4.0
Authors
References
  • Elston, H., Cooke, M., & Hatem, A. (2022). Non-steady-state slip rates emerge along evolving restraining bends under constant loading. Geology, 50(5), 532–536. https://doi.org/10.1130/g49745.1
  • 10.1130/G49745.1
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  • Toeneboehn, K., Cooke, M. L., Bemis, S. P., Fendick, A. M., & Benowitz, J. (2018). Stereovision Combined With Particle Tracking Velocimetry Reveals Advection and Uplift Within a Restraining Bend Simulating the Denali Fault. Frontiers in Earth Science, 6. https://doi.org/10.3389/feart.2018.00152
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  • Cites
Contact
  • Elston, Hanna
  • University of Massachusetts, Amherst
  • helston@umass.edu
Citation Elston, H. M., & Cooke, M. (2022). Digital Image Correlation of evolving restraining bend experiments in wet kaolin [Data set]. GFZ Data Services. https://doi.org/10.5880/FIDGEO.2021.045