Investigation of Partial Discharge Due to Particle Movement in Power Transformer Using Computational Fluid Dynamics and Monte Carlo Technique

Author:

Vasantha Gowri N.ORCID,Ramalinga Raju M.,Singh B. P.

Publisher

Springer Science and Business Media LLC

Subject

Electrical and Electronic Engineering,General Computer Science

Reference14 articles.

1. P. Upadhyay, J. Amarnath, B.P. Singh, Determination of particle movement of conducting particles in SF6/N2mixture using Monte Carlo simulation. IEEE Conference on Electrical Insulation and Discharge Phenomenon, pp. 276–279, 15–18 October 2006,CEIDP 2006, Kansas City INSPEC Accession Number9552747

2. N.Vasantha Gowri, M. Ramalinga Raju, B.P. Singh, Monte Carlo simulation of particle movement in an un-energized transformer. IEEE Conference on Electrical Insulation and Dielectric Phenomena (CEIDP), 19–22 Oct 2014, Des Moines, IA, USA, Electronic ISBN: 978–1–4799–7525–9, Print on Demand(PoD) ISBN: 978–1–4799–7528–0

3. A. Weinlader, W. Wu, S. Tenbohlen, Z. Wang, Prediction of the oil flow distribution in oil-immersed transformer windings by network modelling and computational fluid dynamics. IET Electr. Power Appl. 6(2), 1751–8660 (2012)

4. H. Campelo, C.M. Fonte, R.G. Sousa, R. Lopes, J.C.B. Lopes, J. Ramos, D. Couto and M.M. Dias, Detailed CFD analysis Of ODAF power transformers, International Colloquium Transformer Research and Asset Management Cavtat, Croatia, November 12–14, 2009, PP: 1–10

5. H.M.R. Campelo, M.A. Quintela, F. Torriano, P. Labbe and P. Picher, Numerical thermo-fluid analysis of a power transformer disc-type winding, Electrical Insulation Conference (EIC), Montréal, Qc, Canada, 19–22 June 2016, PP: 362–365

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