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access icon openaccess Prediction of oil flow and temperature distribution of transformer winding based on multi-field coupled approach

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References

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      • 2. Rosillo, M.E., Carlos, A., Taramillo, G.: ‘Advanced thermal modeling and experimental performance of oil distribution transformers’, IEEE Trans. Power Del., 2012, 27, (4), pp. 17101717.
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      • 3. Wu, W., Wang, Z.D., Revell, A., et al: ‘Computational fluid dynamics calibration for network modelling of transformer cooling oil flows-part I heat transfer in oil ducts’, IET Electr. Power Appl., 2011, 6, (1), pp. 1927.
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      • 4. Paramane, S.B., Joshi, K., Van der Veken, W., et al: ‘CFD study on thermal performance of radiators in a power transformer: effect of blowing direction and offset of fans’, IEEE Trans. Power Deliv., 2014, 29, (6), pp. 25962604.
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      • 5. Weinläder, A., Wu, W., Tenbohlen, S., et al: ‘Prediction of the oil flow distribution in oil-immersed transformer windings by network modelling and computational fluid dynamics’, IET Electr. Power Appl., 2011, 6, (2), pp. 8290.
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      • 6. Rosillo, M.E., Herrera, C.A, Jaramillo, G.: ‘Advanced thermal modelling and experimental performance of oil distribution transformers’, IEEE Trans. Power Deliv., 2012, 27, (4), pp. 17101716.
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      • 7. Cui, Y., Ma, H., Saha, T., et al: ‘Multi-physics modelling approach for investigation of moisture dynamics in power transformers’, IET Gener. Transm. Distrib., 2016, 10, (8), pp. 19932001.
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      • 8. Zhang, X., Wang, Z., Liu, Q.: ‘Prediction of pressure drop and flow distribution in disc-type transformer windings in an OD cooling mode’, IEEE Trans. Power Deliv., 2017, 32, (4), pp. 16551663.
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      • 9. Das, A.K., Chatterjee, S.: ‘Finite element method-based modelling of flow rate and temperature distribution in an oil-filled disc-type winding transformer using COMSOL multiphysics’, IET Electr. Power Appl., 2017, 11, (4), pp. 664673.
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      • 10. Wiggert, P.: ‘Mechanic of fluids’ (China Machine Press, Beijing, 2009, 1st Edn), pp. 946952.
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