The prediction of mass flow distribution is a first, though crucial, step in the thermal design of zig–zag cooled power transformer windings. Typically this prediction is based on thermo-hydraulic network models, which critically depend on the applied correlations. In this paper new correlations for flow through elbows and for dividing/merging flow in T-junctions are numerically extracted from dedicated CFD studies and applied to a case study. It is shown that the new correlations are superior for the prediction of the mass flow distribution for this test case in comparison to correlations thus far available in literature.status: publishe
The present article describes flow pattern of cooling oil inside the windings of a disc-type transfo...
In this paper a method of temperature front measurement is proposed to quantify flow distribution wi...
The focus of this paper is a computational fluid dynamics (CFD) analysis of the end winding region o...
In this paper the mass flow distribution in zig-zag cooled power transformer windings is shown to pl...
© 2013 IEEE. Predicting liquid flow distribution in the winding is crucial for transformer thermal d...
© 2017 IEEE. In this paper, a method for predicting pressure drop and flow distribution in disc-Type...
The PhD in engineering has the research topic: “Thermal-Hydraulic Network Model Based Design of Powe...
A disc-type winding of an oil-immersed power transformer is modeled with Computational Fluid Dynamic...
The transformer life and performance strongly depend on winding hot-spot temperature (HST). Various ...
From Wiley via Jisc Publications RouterHistory: received 2021-02-01, rev-recd 2021-07-08, accepted 2...
© 2019 The Authors The liquid flow and temperature distributions in oil natural (ON) cooled power tr...
The PhD in engineering has the research topic: “Thermal-Hydraulic Network Model Based Design of Powe...
© 2019 The Authors The thermal design of a power transformer determines its lifetime and loading cap...
This contribution presents the early results of a R&D collaboration established between the Universi...
© 1986-2012 IEEE. Oil-flow distribution in the winding has a direct impact on cooling performance. I...
The present article describes flow pattern of cooling oil inside the windings of a disc-type transfo...
In this paper a method of temperature front measurement is proposed to quantify flow distribution wi...
The focus of this paper is a computational fluid dynamics (CFD) analysis of the end winding region o...
In this paper the mass flow distribution in zig-zag cooled power transformer windings is shown to pl...
© 2013 IEEE. Predicting liquid flow distribution in the winding is crucial for transformer thermal d...
© 2017 IEEE. In this paper, a method for predicting pressure drop and flow distribution in disc-Type...
The PhD in engineering has the research topic: “Thermal-Hydraulic Network Model Based Design of Powe...
A disc-type winding of an oil-immersed power transformer is modeled with Computational Fluid Dynamic...
The transformer life and performance strongly depend on winding hot-spot temperature (HST). Various ...
From Wiley via Jisc Publications RouterHistory: received 2021-02-01, rev-recd 2021-07-08, accepted 2...
© 2019 The Authors The liquid flow and temperature distributions in oil natural (ON) cooled power tr...
The PhD in engineering has the research topic: “Thermal-Hydraulic Network Model Based Design of Powe...
© 2019 The Authors The thermal design of a power transformer determines its lifetime and loading cap...
This contribution presents the early results of a R&D collaboration established between the Universi...
© 1986-2012 IEEE. Oil-flow distribution in the winding has a direct impact on cooling performance. I...
The present article describes flow pattern of cooling oil inside the windings of a disc-type transfo...
In this paper a method of temperature front measurement is proposed to quantify flow distribution wi...
The focus of this paper is a computational fluid dynamics (CFD) analysis of the end winding region o...