Failures of rotating equipment often cause severe consequences, so it is necessary to study their integrity and life as detailed as possible, especially when crack is detected. In the case studied here, hydro power plant turbine shaft is analysed by using fracture mechanics parameters both for static and dynamic loading in order to assess its structural integrity and life. In both cases classical engineering approach and Finite Element Method have been applied to evaluate stress state and number of cycles from a given initial crack length to its critical value. Results of analytical and numerical modelling are compared to verify both approaches
The foremost focus of this thesis is to develop analytical tools that improve society’s collective u...
Rotor discs for gas turbines are heavy components usually designed following a safe-life approach, w...
This paper presents evaluation fracture mechanics parameters in low pressure turbine components. ...
Failures of rotating equipment often cause severe consequences, so it is necessary to study their in...
M.Ing.This dissertation deals with the structural integrity analysis of a low pressure (LP) turbine ...
Rotational components of aero engine turbine are the most important components. It operates at high ...
To plan for timely reconstruction, modernization, repairs or replacement of equipment it is importan...
LecturePg. 105-110This paper describes the application of a fracture mechanics-based procedure for l...
This paper describes the analysis of major failure of 28 MW horizontal hydro turbine shaft. The anal...
Cracks can develop in rotating shafts and can propagate to relevant depths without affecting consist...
Fatigue life assessment of turbine rotating components is usually performed taking into account the ...
This paper describes the influence of corrosion on stress concentration factor and crack initiation ...
Linear elastic fracture mechanics (LEFM) approaches are seldom used to analyze fatigue problems in h...
This paper presents the stress analysis of a second stage turbine disc, subjected to spin rig test. ...
A consideration is given to the problem of determining remaining operational life of steam turbine r...
The foremost focus of this thesis is to develop analytical tools that improve society’s collective u...
Rotor discs for gas turbines are heavy components usually designed following a safe-life approach, w...
This paper presents evaluation fracture mechanics parameters in low pressure turbine components. ...
Failures of rotating equipment often cause severe consequences, so it is necessary to study their in...
M.Ing.This dissertation deals with the structural integrity analysis of a low pressure (LP) turbine ...
Rotational components of aero engine turbine are the most important components. It operates at high ...
To plan for timely reconstruction, modernization, repairs or replacement of equipment it is importan...
LecturePg. 105-110This paper describes the application of a fracture mechanics-based procedure for l...
This paper describes the analysis of major failure of 28 MW horizontal hydro turbine shaft. The anal...
Cracks can develop in rotating shafts and can propagate to relevant depths without affecting consist...
Fatigue life assessment of turbine rotating components is usually performed taking into account the ...
This paper describes the influence of corrosion on stress concentration factor and crack initiation ...
Linear elastic fracture mechanics (LEFM) approaches are seldom used to analyze fatigue problems in h...
This paper presents the stress analysis of a second stage turbine disc, subjected to spin rig test. ...
A consideration is given to the problem of determining remaining operational life of steam turbine r...
The foremost focus of this thesis is to develop analytical tools that improve society’s collective u...
Rotor discs for gas turbines are heavy components usually designed following a safe-life approach, w...
This paper presents evaluation fracture mechanics parameters in low pressure turbine components. ...