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Thermal expansion coefficients predicted from a theoretical composite model were compared to the experimental data.
The results obtained from the whole structure heterogeneous composite model and the homogeneous composite model were also analyzed and compared.
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An equivalent composite model is often used to analyze deepwater double-layer hydrocarbon strings.
That is to say, to get more values out of the big data, a composite model is more needed.
The simulation results of the periodic composite model are in good agreement with the experimental data.
A composite model is employed to describe the material with its dislocation cell structure.
In this study, a nacreous composite model is constructed and validated by experimental results under uniaxial tensile loading.
Our composite model was designed to simulate a single set of aligned vertical cracks (HTI symmetry) filled with fluids.
The training algorithms for all the parameters in the composite model are developed using the expectation-maximization framework.
The results of this analytical composite model are in good agreement with the experimental result.
A two-phase composite model was also developed and a finite element analysis was conducted on this model.
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