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Jaroslav Haslinger

Jaroslav Haslinger

Overview

Jaroslav Haslinger is affiliated with Charles University in Czech Republic. Their research spans fields primarily in Engineering and Computer Science, with a strong focus on subfields such as Computational Mechanics, Computational Theory and Mathematics, Mechanics of Materials, Biomedical Engineering, and Civil and Structural Engineering.

Their main topics of study include Advanced Numerical Methods in Computational Mathematics, Contact Mechanics and Variational Inequalities, Computational Fluid Dynamics and Aerodynamics, Numerical methods in engineering, Advanced Mathematical Modeling in Engineering, Elasticity and Material Modeling, and Stability and Controllability of Differential Equations.

Jaroslav Haslinger has published extensively, with frequent appearance in the following venues:

  • Mathematics and Computers in Simulation
  • ZAMM - Journal of Applied Mathematics and Mechanics / Zeitschrift für Angewandte Mathematik und Mechanik
  • Mathematical Models and Methods in Applied Sciences
  • Mathematics
  • arXiv (Cornell University)

Some recent papers authored by Haslinger include:

  • The parameter identification in the Stokes system with threshold slip boundary conditions, 2020, ZAMM - Journal of Applied Mathematics and Mechanics / Zeitschrift für Angewandte Mathematik und Mechanik
  • Dual strategies for solving the Stokes problem with stick-slip boundary conditions in 3D, 2020, Mathematics and Computers in Simulation
  • Parameter identification for heterogeneous materials by optimal control approach with flux cost functionals, 2020, Mathematics and Computers in Simulation
  • An abstract inf-sup problem inspired by limit analysis in perfect plasticity and related applications, 2021, Mathematical Models and Methods in Applied Sciences
  • Numerical Modeling of the Leak through Semipermeable Walls for 2D/3D Stokes Flow: Experimental Scalability of Dual Algorithms, 2021, Mathematics

Frequent collaborators in their work include Raino A. E. Mäkinen, Radek Kučera, Václav Šátek, Stanislav Sysala, and Radim Blaheta, illustrating an interdisciplinary and cooperative research approach.

Best Publications

  • Solution of Variational Inequalities in Mechanics

    Ivan Hlaváček;J Haslinger;Jindřich Nečas;J Lovíšek

  • Introduction to Shape Optimization: Theory, Approximation, and Computation

    J. Haslinger;R. A. E. Makinen

  • Finite Element Approximation for Optimal Shape Design: Theory and Applications

    J Haslinger;P. Neittaanmäki

  • Numerical methods for unilateral problems in solid mechanics

    J. Haslinger;I. Hlaváček;J. Nečas

  • Finite Element Approximation for Optimal Shape, Material and Topology Design

    J Haslinger;P. Neittaanmäki

  • Finite Element Method for Hemivariational Inequalities: Theory, Methods and Applications

    Jaroslav Haslinger;Markku Miettinen;Panagiotis D Panagiotopoulos

  • A New Fictitious Domain Approach Inspired by the Extended Finite Element Method

    Jaroslav Haslinger;Yves Renard

  • Approximation of the signorini problem with friction, obeying the coulomb law

    J. Haslinger;J.C. Nedlec

  • Approximation of the Signorini problem with friction by a mixed finite element method

    Jaroslav Haslinger;Ivan Hlaváček

  • Shape Optimization and Fictitious Domain Approach for Solving Free Boundary Problems of Bernoulli Type

    J. Haslinger;T. Kozubek;K. Kunisch;G. Peichl

  • Multidisciplinary Free Material Optimization

    Jaroslav Haslinger;Michal Kocvara;Günter Leugering;Michael Stingl

  • Shape Optimization in Contact Problems with Coulomb Friction

    P. Beremlijski;J. Haslinger;M. Kocvara;J. Outrata

  • FETI based algorithms for contact problems: scalability, large displacements and 3D Coulomb friction

    Zdeněk Dostál;David Horák;Radek Kučera;Vít Vondrák

  • An algorithm for the numerical realization of 3D contact problems with Coulomb friction

    Jaroslav Haslinger;Radek Kučera;Zdeněk Dostál

  • Optimum composite material design

    Jaroslav Haslinger;Jan Dvořák

  • On a splitting type algorithm for the numerical realization of contact problems with Coulomb friction

    Jaroslav Haslinger;Zdeněk Dostál;Radek Kučera

  • Convergence of a finite element method based on the dual variational formulation

    Jaroslav Haslinger;Ivan Hlaváček

  • The reciprocal variational approach to the Signorini problem with friction. Approximation results

    J. Haslinger;P. D. Panagiotopoulos

  • Implementation of the fixed point method in contact problems with Coulomb friction based on a dual splitting type technique

    Zdeněk Dostál;Jaroslav Haslinger;Radek Kučera

  • Optimal control of systems governed by hemivariational inequalities: existence and approximation results

    J. Haslinger;P. D. Panagiotopoulos

Frequent Co-Authors

Pekka Neittaanmäki
Pekka Neittaanmäki University of Jyväskylä
Panagiotis D. Panagiotopoulos
Panagiotis D. Panagiotopoulos Aristotle University of Thessaloniki
Karl Kunisch
Karl Kunisch University of Graz
Josef Málek
Josef Málek Charles University
Günter Leugering
Günter Leugering University of Erlangen-Nuremberg
Kazufumi Ito
Kazufumi Ito North Carolina State University
Tomáš Roubíček
Tomáš Roubíček Charles University

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