A framework to solve forward and inverse geophysical problems either using deterministic (optimization) or probabilistic (Monte Carlo) methods in Julia.
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Work in progress!
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A framework to solve forward and inverse geophysical problems either using deterministic (optimization) or probabilistic (Monte Carlo) methods in Julia.
Warning
Work in progress!
Probabilistic and deterministic inverse algorithms for geophysical problems and beyond.
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Acoustic and elastic seismic wave propagation and gradients (using the adjoint method).
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Traveltime computations by solving the eikonal equation in 2D and 3D and related gradients for tomography
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Magnetic and gravity anomaly calculations in 2.75D using polygon-based parameterization
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