Published September 29, 2025 | Version v.1.0
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Modelling magma flow within dyke-fed sill geometries: A coupled thermal and fluid dynamics approach-COMSOL Multiphysics files

  • 1. Geosciences Barcelona - CSIC
  • 2. ROR icon University of Liverpool
  • 3. ROR icon Czech Academy of Sciences
  • 4. University of Bristol

Description

COMSOL Multiphysics files corresponding to the numerical models presented in the paper “Modelling magma flow within dyke-fed sill geometries: A coupled thermal and fluid dynamics approach” (https://doi.org/10.1016/j.jvolgeores.2025.108480) are provided. A detailed description of the model setup, including the selected physics, geometry, material properties, and boundary conditions, can be found in the paper. The models are distributed in COMSOL Multiphysics file format (.mph) and require COMSOL Multiphysics version 5.4 or later to be opened. For compactness of file size, computed solutions are not included; the models must be run to generate results. 

Only models with different geometries are included, excluding those that share the same geometry but differ in injection velocity. A table of the included models is provided below, and the definitions of the variables can be found in the referenced paper.

Williams, K.M., A. Geyer, C. Annen, and J. Kavanagh. “Modelling Magma Flow within Dyke-Fed Sill Geometries: A Coupled Thermal and Fluid Dynamics Approach.” Journal of Volcanology and Geothermal Research 469 (January 2026): 108480. https://doi.org/10.1016/j.jvolgeores.2025.108480.

 

Model

Sill thickness (a) (m)

Dyke(s) thickness (b) (m)

Dyke1 thickness (b1) (m)

Dyke2 thickness (b2) (m)

Dyke spacing (s) (m)

Injection velocity (uinlet) (m/s)

1FD_10_5_M

10

5

 

 

 

0.01

1FD_100_5_M

100

5

 

 

 

0.01

1FD_100_50_M

100

50

 

 

 

0.01

2FD_10_5_10_M

10

5

 

 

10

0.01

2FD_100_50_100_M

100

50

 

 

100

0.01

2FD_100_50_50_M

100

50

 

 

50

0.01

2FD_100_50/10_50_M

100

 

50

10

50

0.01

3FD_10_5_10_F

10

5

 

 

10

0.1

3FD_10_5_10_FS

10

5

 

 

10

0.1, 0.001

4FD_10_5_10_F

10

5

 

 

10

0.1

1FD_end_10_5_M

10

5

 

 

-

0.01

1FD_end100_10_5_M

10

5

 

 

-

0.01

 

Files

Files (1.1 GB)

Name Size Download all
md5:910e3f877142e2b3eb8084aefa29ba74
468.5 MB Download
md5:6fbe0f5b05753c6810e57d85dbe1293c
467.6 MB Download
md5:99ff179a7836a4777623da8c8addb6a4
19.1 MB Download
md5:32b7447fdc9f69351bc8d12ccffbdeff
14.5 MB Download
md5:ea9bc0c7303f1db6de099a9783286e25
14.1 MB Download
md5:3e8057f5b771969c8d3d2be23b1ae852
18.5 MB Download
md5:e4d42a028e1fa4f0d2f741957e914a99
19.2 MB Download
md5:dc0887c24b3f183e3a071a6ebfaab532
19.3 MB Download
md5:fc71d692349c9bb11ed44813ab18a8b5
11.9 MB Download
md5:dc5b5743169d07999c229769d1623bb1
12.4 MB Download
md5:2662ded07c90183f6997b3462cf199d8
12.4 MB Download
md5:9797fdf9f9201e08455c80471554c35a
13.0 MB Download

Additional details

Related works

Is supplement to
Publication: 10.1016/j.jvolgeores.2025.108480 (DOI)