Currently, the use of underground electric cables is a regular feature of present-day power transmission and distribution schemes. Issues related to economical limitations and the lack of adequate space led to the need for cables with an elevated current carrying capacity (ampacity). In order to achieve this objective, public services around the globe are focusing not only on better designs, but also on improving the level of precision in the context of cable parameter values. Precise parameter values are essential for ensuring that the replicated outcomes correspond sufficiently close to actual circumstances. While the conventional approach to ampacity calculation is through the IEC-60287 procedure, the numerical route is considered more s...
For engineering education students, solution of an electric-thermal multiphysics problem by using CO...
The so-called ampacity rating, i.e. the maximum admissible conductor current due to thermal restrict...
The so-called ampacity rating, i.e. the maximum admissible conductor current due to thermal restrict...
Currently, the use of underground electric cables is a regular feature of present-day power transmis...
Endurance of an insulation material to high temperatures determines the maximum current-carrying cap...
In this paper, steady-state ampacity (current carrying capacity) evaluation of underground power cab...
In this paper, steady-state ampacity (current carrying capacity) evaluation of underground power cab...
The use of underground power distribution has grown significantly over the years with the rapid incr...
This thesis presents a combined numerical and experimental study of the heat transfer modes that tak...
While designing electrical power systems, underground cable ampacity is extremely important. There a...
In this thesis, the finite element method (FEM) is applied to the calculation of frequency-dependent...
In order to increase the available current carrying capacity of high voltage cables, utilities may e...
In this thesis, the finite element method (FEM) is applied to the calculation of frequency-dependent...
This paper addresses challenges with modelling of segmented power cable conductors using finite elem...
The dynamic management of electric power distribution lines has become a topic of great interest at ...
For engineering education students, solution of an electric-thermal multiphysics problem by using CO...
The so-called ampacity rating, i.e. the maximum admissible conductor current due to thermal restrict...
The so-called ampacity rating, i.e. the maximum admissible conductor current due to thermal restrict...
Currently, the use of underground electric cables is a regular feature of present-day power transmis...
Endurance of an insulation material to high temperatures determines the maximum current-carrying cap...
In this paper, steady-state ampacity (current carrying capacity) evaluation of underground power cab...
In this paper, steady-state ampacity (current carrying capacity) evaluation of underground power cab...
The use of underground power distribution has grown significantly over the years with the rapid incr...
This thesis presents a combined numerical and experimental study of the heat transfer modes that tak...
While designing electrical power systems, underground cable ampacity is extremely important. There a...
In this thesis, the finite element method (FEM) is applied to the calculation of frequency-dependent...
In order to increase the available current carrying capacity of high voltage cables, utilities may e...
In this thesis, the finite element method (FEM) is applied to the calculation of frequency-dependent...
This paper addresses challenges with modelling of segmented power cable conductors using finite elem...
The dynamic management of electric power distribution lines has become a topic of great interest at ...
For engineering education students, solution of an electric-thermal multiphysics problem by using CO...
The so-called ampacity rating, i.e. the maximum admissible conductor current due to thermal restrict...
The so-called ampacity rating, i.e. the maximum admissible conductor current due to thermal restrict...