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A Novel Approach to Investigate the Hot-Spot Temperature Rise in Power Transformers

机译:研究电力变压器热点温升的新方法

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For large power transformers, the hot-spot temperature rise in their structural parts is an essential issue to address. Computation of the hot-spot temperature rise is, however, a complicated engineering problem because of the uneven loss distribution and effect of internal oil flow upon the convective heat transfer coefficients on the body surfaces of transformers. This paper presents a novel approach to compute and analyze the hot-spot temperature rise of the structural parts for an ODFS-334 MVA/500 kV single-phase auto-transformer. The surface convection heat transfer coefficients, which are computed based on computational fluid dynamics, are used as the boundary conditions of the magnetic-thermal coupling analysis using finite-element method. To validate the feasibility and applicability of the proposed method, the numerical results obtained from the proposed method are compared with those of experimental ones.
机译:对于大型电力变压器,其结构部件中的热点温度升高是需要解决的重要问题。然而,由于损耗分布不均匀以及内部油流对变压器的体表对流传热系数的影响,热点温升的计算是一个复杂的工程问题。本文提出了一种新颖的方法来计算和分析ODFS-334 MVA / 500 kV单相自耦变压器结构部件的热点温升。基于计算流体动力学计算出的表面对流换热系数被用作使用有限元方法进行磁热耦合分析的边界条件。为了验证该方法的可行性和适用性,将该方法获得的数值结果与实验结果进行了比较。

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