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Development of a fluid structure interaction tool for the study and prevention of transformer tank explosions

机译:开发用于研究和预防变压器油箱爆炸的流体结构相互作用工具

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Oil filled transformers explosions and their prevention is a complex industrial issue. Experimental tests showed that when an electrical fault occurs in a transformer, it generates dynamic pressure waves that propagate in the oil. Reflections of these waves on the walls build up high static pressure which transformer tanks cannot withstand. The tank's ability to withstand this pressure is thus one of the key parameters of transformer explosion prevention, and a numerical tool was developed to simulate the phenomena highlighted during the tests, especially the pressure wave propagation. The present paper's aim is thus to complete this numerical tool so that the mechanical behavior of the tank can be accurately studied. The hydrodynamic numerical tool was subsequently coupled with a dynamic structure analysis package: the open source software Code_ASTER. A weak coupling strategy was first developed by applying the simulated pressures to the structure geometry in order to evaluate stresses and deformations. This strategy has evolved with the development of a strong coupling strategy which required establishing a moving mesh technique for the hydrodynamic code to accept displacement data from the structure code and complete the exchange between hydrodynamic and structure codes. First encouraging results are shown.
机译:充油变压器爆炸及其预防是一个复杂的工业问题。实验测试表明,当变压器发生电气故障时,它会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很高的静压力,这是变压器油箱无法承受的。因此,油箱承受此压力的能力是防止变压器爆炸的关键参数之一,并且开发了一种数值工具来模拟测试过程中突出显示的现象,尤其是压力波的传播。因此,本文的目的是完善此数值工具,以便可以精确地研究储罐的机械性能。随后,将流体力学数值工具与动力学结构分析软件包结合在一起:开源软件Code_ASTER。为了评估应力和变形,首先通过将模拟压力应用于结构几何来开发一种弱耦合策略。随着强耦合策略的发展,该策略得到了发展,该策略需要为流体力学代码建立移动网格技术,以接受来自结构代码的位移数据并完成流体力学代码与结构代码之间的交换。首先显示出令人鼓舞的结果。

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