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Add all code for producing figures for the manuscript: Lithospheric anisotropy characterises the post-subduction setting of northern Borneo: new results from XKS splitting analysis
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# Lithospheric anisotropy characterises the post-subduction setting of northern Borneo: new results from XKS splitting analysis | ||
Data and code required to reproduce the results presented in the manuscript: | ||
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Lithospheric anisotropy characterises the post-subduction setting of northern Borneo: new results from XKS splitting analysis | ||
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Bacon, C.A., Rawlinson, N., Pilia, S., Gilligan, A., Wehner, D., Cornwell, D.G., Tongkul, F. | ||
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## Steps to reproduce figures | ||
1. Install the packages listed in the environment.yml file, either manually, or using (for example) conda: | ||
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``` | ||
conda install -f environment.yml | ||
``` | ||
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2. Add `splitracer_summary.mplstyle` (a matplotlib stylesheet) to your `mpl_configdir` (usually found at `~/.config/matplotlib`) | ||
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3. Optional: Install Helvetica font for Matplotlib | ||
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4. Run `download_grd_datafiles.gmt` script to download the DEM data used in Figure 1: | ||
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``` | ||
cd figures | ||
bash download_grd_datafiles.gmt | ||
``` | ||
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5. Navigate to each figure directory and run the `.gmt` or `.py` scripts. | ||
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## Notes | ||
These figures were prepared using Linux 20.04. A limited number were produced using Affinity Designer for iPad, a licensed piece of software for graphic design. `.afdesign` files are provided. | ||
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For Supplementary Figure S6, one must install `AnisotroPy`, an open-source package for the analysis of seismic anisotropy. This can be downloaded from GitHub at https://github.com/hemmelig/AnisotroPy, where one can also find instructions on how to install the package. |
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name: epsl_manuscript_CABacon | ||
channels: | ||
- conda-forge | ||
- defaults | ||
dependencies: | ||
- matplotlib=3.5.1 | ||
- numpy=1.21.5 | ||
- obspy=1.2.2 | ||
- pandas=1.4.1 | ||
- pygmt=0.6.0 | ||
- pyproj=3.3.0 | ||
- python=3.8.13 | ||
- scipy=1.8.0 |
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Main text | ||
--------- | ||
Figure 1 - Network and context map showing Sabah and the wider northern Borneo region. | ||
Figure 2 - Cartoon showing tectonic events in the last 20 Ma. | ||
Figure 3 - Joint analysis of splitting measurements at MetMalaysia station KKM. | ||
Figure 4 - Map of splitting results, overlaid on lithospheric thickness estimates from two-plane-wave tomography. | ||
Figure 5 - Interpretation cartoon linking observed splitting trends with tectonic history of northern Borneo. | ||
Figure 6 - Radial anisotropy derived from FWI tomographic model, SASSY21. | ||
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Supplementary material | ||
---------------------- | ||
Figure S1 - Simplified geological map of northern Borneo. | ||
Figure S2 - Annotated network map. | ||
Figure S3 - Maps showing earthquake catalogues and azimuthal coverage. | ||
Figure S4 - An example of a good splitting measurement. | ||
Figure S5 - An example of a null splitting measurement. | ||
Figure S6 - n-layer modelling for KKM. | ||
Figure S7 - Map of splitting results, overlaid on crustal thickness estimates from VDSS. | ||
Figure S8 - Map of splitting results, overlaid on crustal thickness estimates from receiver function analysis. | ||
Figure S9 - Map of splitting results, overlaid on horizontal 100-km depth slice through radial anisotropy model derived from SASSY21. | ||
Figure S10 - Various depth slices through radial anisotropy model derived from SASSY21. |
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figures/data/earthquake_catalogues/supp_file_3_2018-2020_earthquakes.csv
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