A novel method for estimation of intensity and location of multiple point heat sources based on strain measurement
DOI10.1016/j.enganabound.2018.10.023zbMath1404.80015OpenAlexW2899846512WikidataQ128965361 ScholiaQ128965361MaRDI QIDQ1634644
Publication date: 18 December 2018
Published in: Engineering Analysis with Boundary Elements (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.enganabound.2018.10.023
inverse problemmeshless methodsartificial bee colony algorithmradial point interpolation methodbackground decomposition method (BDM)
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- A new method for meshless integration in 2D and 3D Galerkin meshfree methods
- The method of fundamental solutions for the inverse heat source problem
- Application of the method of fundamental solutions and radial basis functions for inverse transient heat source problem
- Nonlinear transient heat conduction analysis of functionally graded materials in the presence of heat sources using an improved meshless radial point interpolation method
- A modified genetic algorithm for solving the inverse heat transfer problem of estimating plan heat source
- Source term identification for an axisymmetric inverse heat conduction problem
- A meshless method for solving an inverse spacewise-dependent heat source problem
- Inverse problem of determining the unknown strength of an internal plane heat source
- Quad trees: A data structure for retrieval by composite keys
- A new approximate method for an inverse time-dependent heat source problem using fundamental solutions and RBFs
- A meshless radial basis function method for 2D steady-state heat conduction problems in anisotropic and inhomogeneous media
- Inverse heat conduction problems by meshless local Petrov-Galerkin method
- An analytical transfer function method to solve inverse heat conduction problems
- A powerful and efficient algorithm for numerical function optimization: artificial bee colony (ABC) algorithm
- A fundamental solution method for inverse heat conduction problem
- The determination of two moving heat sources in two-dimensional inverse heat problem
- Inverse source identification for Poisson equation
- A boundary element method of inverse non-linear heat conduction analysis with point and line heat sources
- A numerical study of the SVD–MFS solution of inverse boundary value problems in two‐dimensional steady‐state linear thermoelasticity
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