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首页> 外文期刊>The international journal of multiphysics >Pressure wave propagation induced by short circuits inside power transformers: Development of a simulation tool, comparisons with experiments and applications
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Pressure wave propagation induced by short circuits inside power transformers: Development of a simulation tool, comparisons with experiments and applications

机译:电力变压器内部短路引起的压力波传播:仿真工具的开发,与实验和应用的比较

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摘要

Transformer explosion and its prevention is a complex industrial issuewhere various physical phenomena occur. To understand them, anexperimental test campaign was performed by CEPEL on large scaletransformers. It consisted in creating arcing in oil filled transformer tanks.The tests confirmed that the arc generates dynamic pressure waves thatpropagate in the oil. Reflections of these waves on the walls build up highstatic pressure to which transformer tanks can not withstand. This staticpressure increase can be prevented by a quick oil evacuation triggered bythe first dynamic pressure peak generated by the electrical arc. Moreover,a numerical tool was developed to simulate the phenomena highlightedduring the tests and mainly the pressure wave propagation. It is thus basedon a compressible two-phase flow modelling where viscous flow,electromagnetic, thermal and gravity effects are taken into account. Theequations are solved using a finite volume method allowing computingcomplex 3D transformer geometries. Comparisons between the dataobtained during the experiments and the results given by the simulationsvalidated the model. It can be used to study transformer explosions as wellas depressurisation induced by the explosion prevention technology basedon a quick oil evacuation.
机译:变压器爆炸及其预防是一个复杂的工业问题,其中会发生各种物理现象。为了理解它们,CEPEL在大型变压器上进行了实验测试。它包括在充油的变压器油箱中产生电弧。试验证实,电弧产生在油中传播的动态压力波。这些波在墙壁上的反射会形成变压器箱无法承受的高静压力。可以通过由电弧产生的第一动压峰触发的快速排油来防止这种静压增加。此外,开发了一种数值工具来模拟测试中突出显示的现象,主要是压力波的传播。因此,它基于可压缩的两相流模型,其中考虑了粘性流,电磁,热和重力效应。使用有限体积方法求解方程,从而可以计算复杂的3D变压器几何形状。实验期间获得的数据与模拟给出的结果之间的比较验证了该模型。它可用于研究变压器爆炸以及基于快速排油的防爆技术引起的降压。

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