World's Best Scientists 2026 revealed!

D-Index & Metrics

Engineering and Technology

D-Index
40
Citations
7113
World Ranking
7265
National Ranking
247

Overview

Josef Kiendl is affiliated with Bundeswehr University Munich in Germany. Their research contributions focus primarily on the field of Engineering, with significant work in Computational Mechanics, Mechanics of Materials, and Mechanical Engineering. Additional areas of study include Control and Systems Engineering as well as Computer Graphics and Computer-Aided Design.

The main topics of Josef Kiendl's research encompass:

  • Advanced Numerical Analysis Techniques
  • Numerical methods in engineering
  • Computational Geometry and Mesh Generation
  • Tribology and Lubrication Engineering
  • Composite Structure Analysis and Optimization
  • Additive Manufacturing and 3D Printing Technologies
  • Advanced Materials and Mechanics

The scientist has published extensively in various academic venues. The most frequent publication outlets include:

  • Computer Methods in Applied Mechanics and Engineering
  • SSRN Electronic Journal
  • arXiv (Cornell University)
  • Progress in Additive Manufacturing
  • Computational Mechanics

Recent publications authored or co-authored by Josef Kiendl include:

  • Optimization of Manufacturing Parameters and Tensile Specimen Geometry for Fused Deposition Modeling (FDM) 3D-Printed PETG, 2021, Materials
  • A robust penalty coupling of non-matching isogeometric Kirchhoff-Love shell patches in large deformations, 2020, Computer Methods in Applied Mechanics and Engineering
  • Phase-field simulation of ductile fracture in shell structures, 2021, Computer Methods in Applied Mechanics and Engineering
  • Isogeometric analysis for multi-patch structured Kirchhoff-Love shells, 2023, Computer Methods in Applied Mechanics and Engineering
  • An immersed-boundary/isogeometric method for fluid-structure interaction involving thin shells, 2020, Computer Methods in Applied Mechanics and Engineering

Josef Kiendl collaborates regularly with other researchers. Frequent co-authors include:

  • Alessandro Reali
  • Leonardo Leonetti
  • Alessia Patton
  • Laura De Lorenzis
  • Alessandro Nitti

Best Publications

  • Isogeometric shell analysis with Kirchhoff–Love elements

    J. Kiendl;K.-U. Bletzinger;J. Linhard;R. Wüchner

  • The bending strip method for isogeometric analysis of Kirchhoff–Love shell structures comprised of multiple patches

    J. Kiendl;Y. Bazilevs;M.-C. Hsu;R. Wüchner

  • 3D simulation of wind turbine rotors at full scale. Part II: Fluid–structure interaction modeling with composite blades

    Y. Bazilevs;M.-C. Hsu;J. Kiendl;R. Wüchner

  • Rotation free isogeometric thin shell analysis using PHT-splines

    N. Nguyen-Thanh;J. Kiendl;H. Nguyen-Xuan;R. Wüchner

  • Isogeometric Kirchhoff–Love shell formulations for general hyperelastic materials

    Josef Kiendl;Ming-Chen Hsu;Michael C.H. Wu;Alessandro Reali;Alessandro Reali

  • Dynamic and fluid---structure interaction simulations of bioprosthetic heart valves using parametric design with T-splines and Fung-type material models

    Ming-Chen Hsu;David Kamensky;Fei Xu;Josef Kiendl

  • Isogeometric shape optimization of shells using semi-analytical sensitivity analysis and sensitivity weighting

    J. Kiendl;R. Schmidt;R. Wüchner;K.-U. Bletzinger

  • Controlling toughness and strength of FDM 3D-printed PLA components through the raster layup

    Josef Kiendl;Chao Gao

  • Phase-field description of brittle fracture in plates and shells

    Josef Kiendl;Marreddy Ambati;Laura De Lorenzis;Hector Gomez

  • Free vibration analysis of thin plates by using a NURBS-based isogeometric approach

    S. Shojaee;E. Izadpanah;N. Valizadeh;J. Kiendl

  • Locking-free isogeometric collocation methods for spatial Timoshenko rods

    F. Auricchio;F. Auricchio;L. Beirão da Veiga;J. Kiendl;C. Lovadina

  • Single-variable formulations and isogeometric discretizations for shear deformable beams

    J. Kiendl;F. Auricchio;Thomas J Hughes;A. Reali

  • Penalty coupling of non-matching isogeometric Kirchhoff-Love shell patches with application to composite wind turbine blades

    Austin J. Herrema;Emily L. Johnson;Davide Proserpio;Michael C.H. Wu

  • Isogeometric Analysis and Shape Optimal Design of Shell Structures

    Josef M. Kiendl

  • Isogeometric collocation methods for the Reissner–Mindlin plate problem

    J. Kiendl;F. Auricchio;L. Beirão da Veiga;C. Lovadina

  • Variational formulations, model comparisons and numerical methods for Euler–Bernoulli micro- and nano-beam models:

    Jarkko Niiranen;Viacheslav Balobanov;Josef Kiendl;S. B. Hosseini

  • Isogeometric analysis for sixth-order boundary value problems of gradient-elastic Kirchhoff plates

    Jarkko Niiranen;Josef Kiendl;Antti H. Niemi;Alessandro Reali;Alessandro Reali

  • A computational procedure for prebending of wind turbine blades

    Y. Bazilevs;M.-C. Hsu;J. Kiendl;D.J. Benson

  • On the Assumed Natural Strain method to alleviate locking in solid-shell NURBS-based finite elements

    J. F. Caseiro;R. A. Valente;A. Reali;J. Kiendl

  • A locking-free model for Reissner-Mindlin plates: Analysis and isogeometric implementation via NURBS and triangular NURPS

    L. Beirão Da Veiga;T.J.R. Hughes;J. Kiendl;C. Lovadina

Frequent Co-Authors

Alessandro Reali
Alessandro Reali University of Pavia
Ming-Chen Hsu
Ming-Chen Hsu Iowa State University
Ferdinando Auricchio
Ferdinando Auricchio University of Pavia
Kai-Uwe Bletzinger
Kai-Uwe Bletzinger Technical University of Munich
Yuri Bazilevs
Yuri Bazilevs Brown University
Carlo Lovadina
Carlo Lovadina University of Milan
L. Beirão da Veiga
L. Beirão da Veiga University of Milano-Bicocca
Giovanni Garcea
Giovanni Garcea University of Calabria
Thomas J. R. Hughes
Thomas J. R. Hughes The University of Texas at Austin

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