[图书][B] Inverse problems with applications in science and engineering

D Lesnic - 2021 - taylorfrancis.com
Driven by the advancement of industrial mathematics and the need for impact case studies,
Inverse Problems with Applications in Science and Engineering thoroughly examines the …

Detection of point-forces location using topological algorithm in Stokes flows

J Ferchichi, M Hassine, H Khenous - Applied Mathematics and …, 2013 - Elsevier
We consider a viscous incompressible fluid under the action of a finite number of particles
located inside the flow domain. Each particle exerts a pointwise force on the fluid. The main …

Stable determination of an immersed body in a stationary Stokes fluid

A Ballerini - Inverse Problems, 2010 - iopscience.iop.org
We consider the inverse problem of the detection of a single body, immersed in a bounded
container filled with a fluid which obeys the Stokes equations, from a single measurement of …

The method of fundamental solutions for Brinkman flows. Part II. Interior domains

A Karageorghis, D Lesnic, L Marin - Journal of Engineering Mathematics, 2021 - Springer
In part I, we considered the application of the method of fundamental solutions (MFS) for
solving numerically the Brinkman fluid flow in the unbounded porous medium outside …

Some geometric inverse problems for the Lamé system with applications in elastography

A Doubova, E Fernández-Cara - Applied Mathematics & Optimization, 2020 - Springer
In this paper, we consider some geometric inverse problems for the Lamé system. A first
motivation comes from from elastography, a technique that allows to identify the elastic …

SOME GEOMETRIC INVERSE PROBLEMS FOR THE LINEAR WAVE EQUATION.

A Doubova, E Fernández-Cara - Inverse Problems & …, 2015 - search.ebscohost.com
SOME GEOMETRIC INVERSE PROBLEMS FOR THE LINEAR WAVE EQUATION Anna Doubova
and Enrique Fernández-Cara (Communicated by Guillaume Page 1 Inverse Problems and …

Local solvability of an inverse problem to the Navier–Stokes equation with memory term

Y Jiang, J Fan, S Nagayasu, G Nakamura - Inverse Problems, 2020 - iopscience.iop.org
In this paper, we consider the Navier–Stokes equation with memory term in a three-
dimensional bounded domain. The equation is the so-called Oldroyd fluid model equation …

On the detection of a moving obstacle in an ideal fluid by a boundary measurement

C Conca, P Cumsille, J Ortega, L Rosier - Inverse Problems, 2008 - iopscience.iop.org
In this paper, we investigate the problem of the detection of a moving obstacle in a perfect
fluid occupying a bounded domain in from the measurement of the velocity of the fluid on …

Detection of a moving rigid solid in a perfect fluid

C Conca, M Malik, A Munnier - Inverse Problems, 2010 - iopscience.iop.org
In this paper, we consider a moving rigid solid immersed in a potential fluid. The fluid–solid
system fills the whole two-dimensional space and the fluid is assumed to be at rest at infinity …

On the identification of a rigid body immersed in a fluid: A numerical approach

C Alvarez, C Conca, R Lecaros, JH Ortega - Engineering analysis with …, 2008 - Elsevier
This work deals with the study of an inverse geometric problem in fluid mechanics. In
particular, we are interested in the numerical reconstruction of a rigid body which is …