Stochastic framework for modeling the linear apparent behavior of complex materials: application to random porous materials with interphases
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Publication:317980
DOI10.1007/s10409-013-0101-7zbMath1346.74008OpenAlexW2076193817MaRDI QIDQ317980
Publication date: 4 October 2016
Published in: Acta Mechanica Sinica (Search for Journal in Brave)
Full work available at URL: https://hal-upec-upem.archives-ouvertes.fr/hal-00923206/file/ams2013-Preprint.pdf
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- A Mathematical Theory of Communication
- On the statistical dependence for the components of random elasticity tensors exhibiting material symmetry properties
- A probabilistic model for bounded elasticity tensor random fields with application to polycrystalline microstructures
- Introduction to computational micromechanics
- Non-Gaussian positive-definite matrix-valued random fields for elliptic stochastic partial differential operators
- Stochastic Model and Generator for Random Fields with Symmetry Properties: Application to the Mesoscopic Modeling of Elastic Random Media
- Non-Gaussian positive-definite matrix-valued random fields with constrained eigenvalues: Application to random elasticity tensors with uncertain material symmetries
- Modeling of random anisotropic elastic media and impact on wave propagation
- A multi-scale spectral stochastic method for homogenization of multi-phase periodic composites with random material properties
- Construction of probability distributions in high dimension using the maximum entropy principle: Applications to stochastic processes, random fields and random matrices
- Fourth-rank tensors of the thirty-two crystal classes: multiplication tables
- Microstructural Randomness and Scaling in Mechanics of Materials
- Random heterogeneous materials. Microstructure and macroscopic properties
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