Data used in the paper "The minimum scale of grooving on a recently ruptured limestone fault"
<p>There are two types of data presented: matlab structures and xyz files.</p> <p>We include two matlab structures of the results of our analysis, one for the Mt. Vettoretto fault and one for the Corona Heights fault. They have the following 9 fields:</p> <ul> <li>div_x: The length scale where parallel and perpendicular roughness in respect to the striations converge. This is also known as the minimum scale of grooving or the critical length scale, L<sub>c</sub>.</li> <li>div_y: The RMS height where parallel and perpendicular roughness converge.</li> <li>L1 and L2: The length scales in parallel and perpendicular directions.</li> <li>H1 and H2: The RMS height along the length scales in parallel and perpendicular directions. If L1 is in the parallel direction then H1 is also in the parallel direction.</li> <li>Z: The gridded topographic map that is used in the Monte Carlos RMS analysis to then calculate L1, L2, H1, and H2.</li> <li>dx: The spacing of the gridded data points in the gridded topographic map.</li> <li>FileName: The name of the original xyz scan for the Mt. Vettoretto data. For the Corona Heights data, the name of the files given to me by T. Candela.</li> </ul> <p>The xyz files presented are white light interferometer and structure from motion scans of the Mt. Vettoretto fault surface. They correspond to the "FileName" field of the MtVet_MinScaleRMS.mat file.</p>
ShareScore
32/100
Overall dataset sharing score
Score breakdown
These five areas show where the dataset supports — or may limit — practical reuse.
- Stewardship
- 4
- Harmonization
- 4
- Access
- 16
- Reuse readiness
- 8
- Engagement
- 0