Note on modelling of fatigue damage rates for non-Gaussian stresses

Author:

Rychlik I.1

Affiliation:

1. Mathematical Sciences; Chalmers University of Technology and University of Gothenburg; SE-412 96; Göteborg; Sweden

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference16 articles.

1. Brodtkorb , P. A. Johannesson , P. Lindgren , G. Rychlik , I. Rydén , J. Sjö , E. WAFO - a MATLAB toolbox for analysis of random waves and loads Proc 10th Int Offshore and Polar Eng Conf Seattle 2000 343 350

2. Nonlinear vibration models for extremes and fatigue;Winterstein;ASCE J. Eng. Mech.,1988

3. Modelling and statistical analysis of ocean-wave data using transformed Gaussian processes;Rychlik;Mar. Struct.,1997

4. Transformed Gaussian stationary models for ocean waves;Azais;Probabilist. Eng. Mech.,2011

5. Fatigue damage assessment for a spectral model of non-Gaussian random loads;Åberg;Prob. Eng. Mech.,2009

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2. The Laplace multi-axial response model for fatigue analysis;International Journal of Fatigue;2016-04

3. Representation of fatigue for wind turbine control;Wind Energy;2016-03-03

4. Modelling roughness of road profiles on parallel tracks using roughness indicators;International Journal of Vehicle Design;2016

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