Turbines encounter blade failures due to fatigue and creep. It has been shown in the literature that the primary cause of steam turbine blade failures worldwide can be ascribed to fatigue in low pressure (LP) turbine blades. The failure and damage to these blades can lead to catastrophic consequences. Some utilities use empirical methods to determine the forces experienced by turbine blades but desire more accurate methods. The inaccurate prediction of high-cycle fatigue (HCF), thermal durability and stage performance is introduced when one does not consider blade row interaction. Blade row interactions can, however, be accounted for by means of computational fluid dynamics (CFD). Furthermore, modern high- fidelity CFD tools would be able...
Turbine stages are exposed to a variety of excitation sources in the power industry. The resulting f...
The present paper deals with the low cycle fatigue analysis of the low pressure (LP) steam turbine b...
Abstract: Steam turbines are an integral part of power generating systems. The durability and reliab...
Steam turbine engines are essential devices in power generation and other industrial applications, c...
The present paper deals with the low cycle fatigue analysis of the low pressure (LP) steam turbine b...
The prediction of the fatigue life of a turbine blade requires preliminary fluid dynamics analyses...
The prediction of the fatigue life of a turbine blade requires preliminary fluid dynamics analyses...
The present paper deals with the low cycle fatigue analysis of the low pressure (LP) steam turbine b...
This dissertation presents an approach to use blade tip timing measurements with finite element anal...
The prediction of the fatigue life of a turbine blade requires preliminary fluid dynamics analyses...
The present paper deals with the low cycle fatigue analysis of the low pressure (LP) steam turbine b...
AbstractThis work is primarily focused in utilising a technique to assess low cycle fatigue life of ...
The attachment region in steam turbine blades is critical to structural integrity, and hence, surfac...
A computational method of fluid-structure coupling is implemented to predict the fatigue response of...
Abstract — Steam turbine blades are one of the most critical components in power plants Blade is a m...
Turbine stages are exposed to a variety of excitation sources in the power industry. The resulting f...
The present paper deals with the low cycle fatigue analysis of the low pressure (LP) steam turbine b...
Abstract: Steam turbines are an integral part of power generating systems. The durability and reliab...
Steam turbine engines are essential devices in power generation and other industrial applications, c...
The present paper deals with the low cycle fatigue analysis of the low pressure (LP) steam turbine b...
The prediction of the fatigue life of a turbine blade requires preliminary fluid dynamics analyses...
The prediction of the fatigue life of a turbine blade requires preliminary fluid dynamics analyses...
The present paper deals with the low cycle fatigue analysis of the low pressure (LP) steam turbine b...
This dissertation presents an approach to use blade tip timing measurements with finite element anal...
The prediction of the fatigue life of a turbine blade requires preliminary fluid dynamics analyses...
The present paper deals with the low cycle fatigue analysis of the low pressure (LP) steam turbine b...
AbstractThis work is primarily focused in utilising a technique to assess low cycle fatigue life of ...
The attachment region in steam turbine blades is critical to structural integrity, and hence, surfac...
A computational method of fluid-structure coupling is implemented to predict the fatigue response of...
Abstract — Steam turbine blades are one of the most critical components in power plants Blade is a m...
Turbine stages are exposed to a variety of excitation sources in the power industry. The resulting f...
The present paper deals with the low cycle fatigue analysis of the low pressure (LP) steam turbine b...
Abstract: Steam turbines are an integral part of power generating systems. The durability and reliab...