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EXPERIMENTAL TESTS ON LARGE TRANSFORMERS USING FAST TANK DEPRESSURIZATION TECHNIQUE TO PREVENT TRANSFORMER EXPLOSIONS

机译:使用快速油箱减压技术对大型变压器的实验测试,防止变压器爆炸

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Oil-filled transformer explosions are caused by low impedance faults that result in arcing in transformer tanks once the oil loses its dielectric properties. Within milliseconds, oil is then vaporized and the generated gas is pressurized because the liquid inertia prevents its expansion. The pressure difference between the gas bubbles and the surrounding liquid oil generates pressure waves, which propagate and interact with the tank. Then, the pressure peak reflections are building up the static pressure, which rises and leads to the tank explosion since tanks are not designed to withstand the resulting static pressure. This typical transformer incident is common. Indeed, conventional transformer protections are unable to react fast enough to prevent tank explosion that usually result in very expensive blackouts and fire damages for electricity facilities. This paper describes a transformer explosion prevention technology based on the direct mechanical response of a Depressurization Set to the tank inner dynamic pressure induced by electrical faults. Since transformers always rupture at their weakest point because of the static pressure increase, the Depressurization Set is designed to be this weakest point in term of inertia to break before the tank explodes. To evaluate its efficiency, experiments have been performed: Two experimental test campaigns were carried out, first by Electricite de France in 2002 and second, by CEPEL, Brazil, in 2004 on large scale transformers equipped with that prevention technology. These tests consisted in creating low impedance faults in oil filled transformer tanks. The 62 tests confirmed that the arc first creates a huge volume of gas that is quickly pressurized, generating one high pressure peak that propagates in the oil and activates the transformer protection within milliseconds before static pressure increases, thus preventing the tank explosion.
机译:充分的变压器爆炸是由低阻抗断层引起的,导致变压器罐中的电弧一旦油失去其介电性能。在毫秒内,然后蒸发油,所产生的气体是加压的,因为液体惯性可防止其膨胀。气泡与周围液体油之间的压力差产生压力波,其与罐繁殖并相互作用。然后,压力峰值反射正在建立静压,其上升并导致罐爆炸,因为坦克不设计以承受所得到的静压。这种典型的变压器事件是常见的。实际上,传统的变压器保护无法快速反应,以防止坦克爆炸,这通常导致电力设施非常昂贵的停电和防火损失。本文介绍了一种基于压抑的直接机械响应的变压器爆炸技术,该抑制设定为电气故障诱导的罐内动态压力。由于变压器由于静压而导致其最弱的点始终破裂,因此减压装置被设计为在罐爆炸前断裂的惯性术语中最弱的点。为了评估其效率,进行了实验:进行了两项实验测试活动,首先是2002年的电力法国,第二,由巴西CEPEL,2004年,大规模变压器,配备该预防技术。这些测试包括在填充填充变压器罐中产生低阻抗故障。 62检验证实,电弧首先产生大量的气体,这些气体迅速加压,产生一个高压峰值,在油中传播,在静压增加之前在毫秒内激活变压器保护,从而防止罐爆炸。

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