Publication | Closed Access
Accurate extraction of Lagrangian coherent structures over finite domains with application to flight data analysis over Hong Kong International Airport
52
Citations
4
References
2010
Year
Numerical AnalysisEngineeringAerospace SimulationStructural OptimizationComputational MechanicsFinite DomainsSystems EngineeringComputational ElectromagneticsAircraft Design ProcessComputational GeometryAutomated Feature DetectionAccurate ExtractionAircraft NavigationAerostructureAerospace EngineeringAerodynamicsTrajectory IntegrationLagrangian Coherent StructuresAircraft Landing
Locating Lagrangian coherent structures (LCS) for dynamical systems defined on a spatially limited domain present a challenge because trajectory integration must be stopped at the boundary for lack of further velocity data. This effectively turns the domain boundary into an attractor, introduces edge effects resulting in spurious ridges in the associated finite-time Lyapunov exponent (FTLE) field, and causes some of the real ridges of the FTLE field to be suppressed by strong spurious ridges. To address these issues, we develop a finite-domain FTLE method that renders LCS with an accuracy and fidelity that is suitable for automated feature detection. We show the application of this technique to the analysis of velocity data from aircraft landing at the Hong Kong International Airport.
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