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        <h2>Section: 
      Research Program</h2>
        <h3 class="titre3">Multiphysics coupling</h3>
        <p>Within our project, we start from the conception and analysis of <i>models</i>
based on <i>partial differential equations</i> (PDEs). Already at the PDE
level, we address the question of <i>coupling</i> of different models;
examples are that of simultaneous fluid flow in a discrete network of
two-dimensional <i>fractures</i> and in the surrounding three-dimensional
porous medium, or that of interaction of a compressible flow with the
surrounding elastic <i>deformable structure</i>. The key physical
characteristics need to be captured, whereas existence, uniqueness, and
continuous dependence on the data are minimal analytic requirements that we
seek to satisfy. At the modeling stage, we also develop model-order reduction
techniques, such as the use of reduced basis techniques or proper generalized
decompositions, to tackle evolutive problems, in particular in the nonlinear
case.
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