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Wieslaw Ostachowicz

Wieslaw Ostachowicz

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Mechanical and Aerospace Engineering
Poland
2022

D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
58
Citations
12209
World Ranking
766
National Ranking
6

Research.com Recognitions

  • 2022 - Research.com Mechanical and Aerospace Engineering in Poland Leader Award
  • 2016 - Polish Academy of Science

Overview

Wieslaw Ostachowicz is affiliated with the Polish Academy of Sciences in Poland and has contributed extensively to engineering research, with a focus on mechanics of materials, civil and structural engineering, and mechanical engineering. Their work also spans areas in electrical and electronic engineering, as well as biomedical engineering.

The primary fields of study covered in their publications include:

  • Engineering

Key subfields of research encompass:

  • Mechanics of Materials
  • Civil and Structural Engineering
  • Mechanical Engineering
  • Electrical and Electronic Engineering
  • Biomedical Engineering

The main research topics addressed involve:

  • Ultrasonics and Acoustic Wave Propagation
  • Structural Health Monitoring Techniques
  • Non-Destructive Testing Techniques
  • Advanced Fiber Optic Sensors
  • Optical measurement and interference techniques
  • Thermography and Photoacoustic Techniques
  • Acoustic Wave Phenomena Research

Frequent collaborators in Wieslaw Ostachowicz's research include Maciej Radzieński, Maosen Cao, Paweł Kudela, Rohan Soman, and Ganggang Sha. These coauthors have contributed to several studies across various topics of interest.

The scientist has published numerous papers in prominent journals, with frequent publications in venues such as Mechanical Systems and Signal Processing, Journal of Sound and Vibration, Measurement, Smart Materials and Structures, and SSRN Electronic Journal.

Highlighted recent papers are:

  • Application of embedded fibre Bragg grating sensors for structural health monitoring of complex composite structures for marine applications, 2020, Marine Structures
  • A Data-Driven Damage Identification Framework Based on Transmissibility Function Datasets and One-Dimensional Convolutional Neural Networks: Verification on a Structural Health Monitoring Benchmark Structure, 2020, Sensors
  • Deep learning aided topology optimization of phononic crystals, 2023, Mechanical Systems and Signal Processing
  • Guided wavefield curvature imaging of invisible damage in composite structures, 2020, Mechanical Systems and Signal Processing
  • Nonlinear pseudo-force in a breathing crack to generate harmonics, 2020, Journal of Sound and Vibration

In recognition of their contributions, Wieslaw Ostachowicz received an award from the Polish Academy of Science in 2016.

Best Publications

  • Analysis of the effect of cracks on the natural frequencies of a cantilever beam

    W.M. Ostachowicz;M. Krawczuk

  • Optimization of sensor placement for structural health monitoring: a review:

    Wieslaw Ostachowicz;Rohan Soman;Pawel Malinowski

  • Guided Waves in Structures for SHM: The Time - domain Spectral Element Method

    Wieslaw Ostachowicz;Pawel Kudela;Marek Krawczuk;Arkadiusz Zak

  • The dynamic analysis of a cracked Timoshenko beam by the spectral element method

    M. Krawczuk;M. Krawczuk;M. Palacz;W. Ostachowicz

  • Modelling of wave propagation in composite plates using the time domain spectral element method

    Paweł Kudela;Arkadiusz Żak;Marek Krawczuk;Marek Krawczuk;Wiesław Ostachowicz

  • Wave propagation modelling in 1D structures using spectral finite elements

    P. Kudela;M. Krawczuk;M. Krawczuk;W. Ostachowicz

  • Transient vibration phenomena in deep mine hoisting cables. Part 1: Mathematical model

    Stefan Kaczmarczyk;W Ostachowicz

  • Damage localisation in plate-like structures based on PZT sensors

    Wieslaw Ostachowicz;Pawel Kudela;Pawel Malinowski;Tomasz Wandowski

  • Structural damage identification using damping: a compendium of uses and features

    M S Cao;G G Sha;Y F Gao;W Ostachowicz;W Ostachowicz

  • Identification of multiple damage in beams based on robust curvature mode shapes

    Maosen Cao;Maosen Cao;Maciej Radzieński;Wei Xu;Wiesław Ostachowicz;Wiesław Ostachowicz

  • Identification of cracks in thin-walled structures by means of wavenumber filtering

    Paweł Kudela;Maciej Radzieński;Wiesław Ostachowicz;Wiesław Ostachowicz

  • Modelling and vibration analysis of a cantilever composite beam with a transverse open crack

    M. Krawczuk;W.M. Ostachowicz

  • A novel method for single and multiple damage detection in beams using relative natural frequency changes

    Ganggang Sha;Ganggang Sha;Maciej Radzieński;Maosen Cao;Maosen Cao;Wiesław Ostachowicz

  • Structural Health Monitoring system based on a concept of Lamb wave focusing by the piezoelectric array

    Pawel Kudela;Maciej Radzienski;Wieslaw Ostachowicz;Zhibo Yang

  • Vibration analysis of a cracked beam

    W.M. Ostachowicz;M. Krawczuk

  • Damage detection of structures using spectral finite element method

    Wieslaw M. Ostachowicz

  • Temperature and stress fields induced during laser cladding

    R. Jendrzejewski;G. Śliwiński;M. Krawczuk;W. Ostachowicz

  • Damage identification for beams in noisy conditions based on Teager energy operator-wavelet transform modal curvature

    Maosen Cao;Maosen Cao;Wei Xu;Wieslaw Ostachowicz;Wieslaw Ostachowicz;Zhongqing Su

  • New trends in structural health monitoring

    Unknown

  • Damage detection in composite plates with embedded PZT transducers

    P. Kudela;W. Ostachowicz;A. Żak

  • Guided Waves in Structures for SHM

    Unknown

Frequent Co-Authors

Marek Krawczuk
Marek Krawczuk Gdańsk University of Technology
Maosen Cao
Maosen Cao Hohai University
Nicola Pugno
Nicola Pugno University of Trento
Zhongqing Su
Zhongqing Su Hong Kong Polytechnic University
Bart Peeters
Bart Peeters Siemens (Belgium)
Keith Worden
Keith Worden University of Sheffield
Michael D. Gilchrist
Michael D. Gilchrist University College Dublin
André Preumont
André Preumont Université Libre de Bruxelles
Limin Zhou
Limin Zhou Southern University of Science and Technology

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