The thermal conductivity between winding and lamination is one of the most critical parameters in electrical machine thermal analysis. Its value depends on the insulation material and on the manufacturing process of the winding system and for this reason cannot be computed using analytical equations. In this paper a practical investigation of equivalent thermal conductivity of electrical machines stator winding is presented and discussed. The fully experimental approach is based on a fast transient thermal test to evaluate the winding equivalent thermal conductivity. The test campaign is carried out on two sets of Total Enclosed Fan Cooled ‘TEFC' industrial induction motors produced by two different manufacturers; the rated power of the dev...
This paper explores and assesses power loss generation and heat extraction in a stator with directly...
Active cooling is typically required for continuously operated electric motors to prevent rotors and...
This paper introduces an innovative thermal modelling technique which accurately predicts the windin...
The thermal conductivity between winding and lamination is one of the most critical parameters in e...
The use of fractional-slot concentrated windings (FSCW) in electrical machines allows more compact, ...
The use of Fractional-Slot Concentrated Windings (FSCW) in electrical machines allows...
-This paper deals with the measurements and parameters determination of a stator thermal model suit...
This paper presents a thermal analysis of a segmented stator winding design. As the thermal performa...
This paper presents a thermal analysis of a segmented stator winding design. As the thermal performa...
This paper proposes a second-order thermal model for electrical machines. The goal of this model is ...
This paper proposes a second-order thermal model for electrical machines. The goal of this model is ...
In the future, the sustainable use of renewable energy is becoming more important. About 80% of the ...
The organic materials used for stator winding insulation are subject to deterioration from thermal, ...
AbstractIn the future, the sustainable use of renewable energy is becoming more important. About 80%...
This paper presents the validation of a first-order winding thermal model in machine ope...
This paper explores and assesses power loss generation and heat extraction in a stator with directly...
Active cooling is typically required for continuously operated electric motors to prevent rotors and...
This paper introduces an innovative thermal modelling technique which accurately predicts the windin...
The thermal conductivity between winding and lamination is one of the most critical parameters in e...
The use of fractional-slot concentrated windings (FSCW) in electrical machines allows more compact, ...
The use of Fractional-Slot Concentrated Windings (FSCW) in electrical machines allows...
-This paper deals with the measurements and parameters determination of a stator thermal model suit...
This paper presents a thermal analysis of a segmented stator winding design. As the thermal performa...
This paper presents a thermal analysis of a segmented stator winding design. As the thermal performa...
This paper proposes a second-order thermal model for electrical machines. The goal of this model is ...
This paper proposes a second-order thermal model for electrical machines. The goal of this model is ...
In the future, the sustainable use of renewable energy is becoming more important. About 80% of the ...
The organic materials used for stator winding insulation are subject to deterioration from thermal, ...
AbstractIn the future, the sustainable use of renewable energy is becoming more important. About 80%...
This paper presents the validation of a first-order winding thermal model in machine ope...
This paper explores and assesses power loss generation and heat extraction in a stator with directly...
Active cooling is typically required for continuously operated electric motors to prevent rotors and...
This paper introduces an innovative thermal modelling technique which accurately predicts the windin...