Online estimation of Inlet contaminant concentration using Eulerian-Lagrangian method of fundamental solutions and Bayesian inference
From MaRDI portal
Publication:6543645
DOI10.1016/j.camwa.2024.04.019MaRDI QIDQ6543645
Julio Cesar Sampaio Dutra, Carlos Eduardo Rambalducci Dalla, Wellington Betencurte da Silva, Marcelo J. Colaço
Publication date: 24 May 2024
Published in: Computers & Mathematics with Applications (Search for Journal in Brave)
inverse problemsadvection-diffusionparticle filterEulerian-Lagrangian method of fundamental solutions
Cites Work
- Optimization by Simulated Annealing
- Properties of a method of fundamental solutions for the parabolic heat equation
- A method of fundamental solutions for transient heat conduction in layered materials
- The Eulerian-Lagrangian method of fundamental solutions for two-dimensional unsteady Burgers' equations
- The method of fundamental solutions for solving incompressible Navier-Stokes problems
- Sequential particle filter estimation of a time-dependent heat transfer coefficient in a multidimensional nonlinear inverse heat conduction problem
- Solution of the advection-diffusion equation using the Eulerian-Lagrangian boundary element method
- Localized method of fundamental solutions for two- and three-dimensional transient convection-diffusion-reaction equations
- A modified Tikhonov regularization method for a Cauchy problem of a time fractional diffusion equation
- Eulerian-Lagrangian method of fundamental solutions for multi-dimensional advection-diffusion equation
- Evaluation of dispersion parameters for River São Pedro, Brazil, by the simulated annealing method
- Sequential estimation of the time-dependent heat transfer coefficient using the method of fundamental solutions and particle filters
- Solving subsurface flow toward wells in layered soils using hybrid method of fundamental solutions
This page was built for publication: Online estimation of Inlet contaminant concentration using Eulerian-Lagrangian method of fundamental solutions and Bayesian inference