Publication | Open Access
The computation of finite-time Lyapunov exponents on unstructured meshes and for non-Euclidean manifolds
120
Citations
57
References
2010
Year
Geometric Partial Differential EquationGeometryFinite-time Lyapunov ExponentsDiscrete Differential GeometryTopological DynamicManifold ModelingFinite-time Lyapunov ExponentGlobal AnalysisVortex DynamicConvection CellsGeometric Singular Perturbation TheoryFtle MeshUnstructured MeshesNon-euclidean ManifoldsHydrodynamic Stability
We generalize the concepts of finite-time Lyapunov exponent (FTLE) and Lagrangian coherent structures to arbitrary Riemannian manifolds. The methods are illustrated for convection cells on cylinders and Mobius strips, as well as for the splitting of the Antarctic polar vortex in the spherical stratosphere and a related point vortex model. We modify the FTLE computational method and accommodate unstructured meshes of triangles and tetrahedra to fit manifolds of arbitrary shape, as well as to facilitate dynamic refinement of the FTLE mesh.
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