Identification of reaction rate parameters from uncertain spatially distributed concentration data using gradient-based PDE constrained optimization
DOI10.1016/J.CAMWA.2024.05.026MaRDI QIDQ6553613
Shota Ito, Gudrun Thäter, Mathias J. Krause, Fedor Bukreev, Adrian Kummerländer, Stephan Simonis, Julius Jeßberger, Jorg Thöming, Georg R. Pesch, Alexander Zimmermann
Publication date: 11 June 2024
Published in: Computers & Mathematics with Applications (Search for Journal in Brave)
inverse problemparameter identificationcomputational fluid dynamicslattice Boltzmann methodsgradient-based optimization
Cites Work
- Adjoint-based inverse analysis of windkessel parameters for patient-specific vascular models
- An inverse problem in reaction kinetics
- A parameter estimation framework for patient-specific hemodynamic computations
- On the limited memory BFGS method for large scale optimization
- Parallel dilute particulate flow simulations in the human nasal cavity
- CFD-MRI: A coupled measurement and simulation approach for accurate fluid flow characterisation and domain identification
- Solving fluid flow domain identification problems with adjoint lattice Boltzmann methods
- Weakly compressible lattice Boltzmann simulations of reacting flows with detailed thermo-chemical models
- Temporal large eddy simulation with lattice Boltzmann methods
- A convex optimization framework for the identification of homogeneous reaction systems
- OpenLB -- open source lattice Boltzmann code
- Noise reduction of flow MRI measurements using a lattice Boltzmann based topology optimisation approach
- Multiple-relaxation-time lattice Boltzmann model for the convection and anisotropic diffusion equation
- Evaluating Derivatives
- Lattice BGK Models for Navier-Stokes Equation
- Perspectives in Flow Control and Optimization
- A coupled lattice BGK model for the Boussinesq equations
- A Limited Memory Algorithm for Bound Constrained Optimization
- Parameter estimation in fluid flow models from aliased velocity measurements
- On relaxation systems and their relation to discrete velocity Boltzmann models for scalar advection–diffusion equations
- The Lattice Boltzmann Method
- A Model for Collision Processes in Gases. I. Small Amplitude Processes in Charged and Neutral One-Component Systems
- Revisiting the second-order convergence of the lattice Boltzmann method with reaction-type source terms
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