Abstract The suitability of corn oil nanofluid as an insulation material is studied herein by analysing the partial discharge characteristics. Experiments are conducted on nano‐silica modified corn oil at 0.01, 0.05, and 0.1 wt.% mass fractions. Electrode configurations are used to generate partial discharge (PD) sources such as corona discharge, internal discharge, and surface discharge. Partial discharge inception voltage dependency on electrode geometry is studied. Phase‐resolved partial discharge analysis (PRPD) at various test conditions is done to understand the influence of live element geometry that causes PD in real‐time operations, Weibull statistical analysis of PD parameters like scale parameter, shape parameter, skewness, and r...
Recent studies present a model which assumes that conductive nanoparticles can reduce the speed of t...
Mineral oil has been chosen as an insulating liquid in power transformers due to its superior charac...
Liquid insulation, a key element in the transmission and distribution of electric power, guarantees ...
A previous study showed that both mineral oil based nanofluids with 0.01% silica mass fraction and w...
This study provides a thorough investigation of partial discharge (PD) activities in nanofluid insul...
This paper discusses on the breakdown voltage of vegetable oils with nanoparticles added to be used ...
This study provides a thorough investigation of partial discharge (PD) activities in nanofluid insul...
Transformer oil is conventionally used as an insulating liquid for the purpose of insulation and coo...
This paper investigates the suitability of vegetable oils to replace mineral oil based on its AC bre...
High voltage (HV) transformer is one of the most important apparatus in power industries. With an in...
Due to the increasing demand on developing good insulation, several researchers have performed exper...
Equipment in an electric power system, such as a high voltage transformer, relies heavily on a criti...
In many applications of high voltage engineering, electrical and thermal stresses increase due to an...
Mineral oil is a dielectric liquid commonly used in high voltage equipment such as power transformer...
Nanoparticles currently in use are challenged in further improving the dielectric strength of insula...
Recent studies present a model which assumes that conductive nanoparticles can reduce the speed of t...
Mineral oil has been chosen as an insulating liquid in power transformers due to its superior charac...
Liquid insulation, a key element in the transmission and distribution of electric power, guarantees ...
A previous study showed that both mineral oil based nanofluids with 0.01% silica mass fraction and w...
This study provides a thorough investigation of partial discharge (PD) activities in nanofluid insul...
This paper discusses on the breakdown voltage of vegetable oils with nanoparticles added to be used ...
This study provides a thorough investigation of partial discharge (PD) activities in nanofluid insul...
Transformer oil is conventionally used as an insulating liquid for the purpose of insulation and coo...
This paper investigates the suitability of vegetable oils to replace mineral oil based on its AC bre...
High voltage (HV) transformer is one of the most important apparatus in power industries. With an in...
Due to the increasing demand on developing good insulation, several researchers have performed exper...
Equipment in an electric power system, such as a high voltage transformer, relies heavily on a criti...
In many applications of high voltage engineering, electrical and thermal stresses increase due to an...
Mineral oil is a dielectric liquid commonly used in high voltage equipment such as power transformer...
Nanoparticles currently in use are challenged in further improving the dielectric strength of insula...
Recent studies present a model which assumes that conductive nanoparticles can reduce the speed of t...
Mineral oil has been chosen as an insulating liquid in power transformers due to its superior charac...
Liquid insulation, a key element in the transmission and distribution of electric power, guarantees ...