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Stressed Oil Volume Theory in Transformer Winding Corner Stress Analysis

机译:变压器绕组转角应力分析中的油量理论

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The aim of this paper is to demonstrate how stressed oil volume (SOV) theory can be used in experimental research to obtain better reliability of transformer insulation design criteria. For this purpose, combined stress research is taken as an example. In combined stress research winding edge geometry is investigated, where at the same time winding edge is exposed to axial lightning impulse stress due to potential difference between discs/coils and radial LI stress due to potential difference between windings. Transformer designers usually consider this axial and radial stress as two independent manifestations, evaluating each with its own design criteria. Combining the radial and axial stress into a single design criterion should lead to a more reliable insulation design. This paper shows how SOV theory can be used to analyse the influence of radial electric field on axial oil gap LI withstand stress, which is an essential step in combined stress design criteria development.
机译:本文的目的是演示如何在实验研究中使用应力油量(SOV)理论来获得更好的变压器绝缘设计标准可靠性。为此,以组合应力研究为例。在组合应力研究中,研究了绕组边缘的几何形状,其中绕组边缘同时受到由于圆盘/线圈之间的电势差引起的轴向雷电冲击应力和由于绕组之间的电势差引起的径向LI应力的影响。变压器设计人员通常将此轴向应力和径向应力视为两个独立的表现形式,并根据各自的设计标准对其进行评估。将径向和轴向应力组合到一个单一的设计准则中应可导致更可靠的绝缘设计。本文展示了如何使用SOV理论来分析径向电场对轴向油隙LI承受应力的影响,这是制定组合应力设计标准的必不可少的步骤。

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