Author/Authors :
Koppikar، نويسنده , , D.A.، نويسنده , , Kulkarni، نويسنده , , S.V.، نويسنده , , Srinivas، نويسنده , , P.N.، نويسنده , , Khaparde، نويسنده , , S.A.، نويسنده , , Jain، نويسنده , , R.، نويسنده ,
Abstract :
Although Eddy current losses in flitch plates of
large power transformers may form a s d pa rt of total
transformer losses, they are important because they EIQ
appear concentrated in a small area and cause hazardow ha&
spots. An analytical method to calculate flitch plate eddy loss
is a very useful practical guide to a transformer designer, bmt
for high power transformers, a more accarate analysis by
techniques such as the Finite Element Method @EM) is
desirable. A series of 2-D FEM simulations, using a s t a t i s t i d
technique - orthogonal array design of experiments, have been
carried out to find the effect of various factors on the losses in
a mild steel flitch plate. The procedure for carrying out the
experiments and the results obtained thereof are presented.
The more involved analysis of slotted flitch plates, has been
done using 3-D FEM. Loas and eddy current patterns in mild
steel and stainleas steel flitch plates have been studied. In both
cases, the effect of the number of slots and slot length on the
losses is discussed. Effect of slots on eddy current pattern is
explaimed. Results of simulation of laminated flitch plate are
presented. The eddy loss distribution obtained by 3-D FEM
electromagnetic analysis is used in 3-D FEM thermal analysis
to estimate temperature rise of the flitch plate. Verification of
3-D FEM analysis has been done by measurement of
temperatures on a slotted mild steel flitch plate of a 33 MVA,
single phase, 220/132/11 kV auto-transformer. The estimated
temperatures have been found to be in good agreement with
that obtained by measurements.