Title :
Improved insert geometry for reducing tank wall
Author :
Olivares, J.C. ; Escarela-Perez, R. ; Kulkarni, S.V. ; de Leon, Francisco ; Melgoza, E. ; Hernandez, Oscar ; Olivares, J.
Abstract :
Summary form only given. This work presents a numerical analysis of losses generated in the tank wall surrounding the high-current bushings of pad-mounted transformers using a three-dimensional finite-element approach. Two cases are analyzed to study the impact of inserting small plates of different geometry (located near the high-current phases) on the reduction of tank losses. Significant reductions in stray losses occurring in the tank wall are obtained with plate inserts of low-cost. With the "T" configuration proposed in This work we reduce the tank wall losses by a factor of 1/21 at rated current when compared with the case of tank wall without the stainless steel plate. A three-dimensional time-harmonic finite-element model is used to determine the losses in the tank wall. Two load loss tests were carried out on experimental transformers to validate the simulations and effectiveness of the low-cost inserts.
Keywords :
bushings; finite element analysis; losses; power transformers; tanks (containers); T configuration; harmonic finite-element model; high-current bushings; load loss test; numerical analysis; pad-mounted transformers; stray losses; tank losses; tank wall; variant geometry plates; Finite element methods; Geometry; Insulators; Numerical analysis; Steel; Testing; Transformers;
Conference_Titel :
Power Engineering Society General Meeting, 2004. IEEE
Conference_Location :
Denver, CO
Print_ISBN :
0-7803-8465-2
DOI :
10.1109/PES.2004.1373099