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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >DC field distribution in HVDC transformer considering the effects of space charge and temperature due to presence of oil immersed pressboard
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DC field distribution in HVDC transformer considering the effects of space charge and temperature due to presence of oil immersed pressboard

机译:考虑到油浸压板的存在对空间电荷和温度的影响,HVDC变压器中的直流场分布

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摘要

HVDC transformers are one of the main components for long distance transmission, for which many investigations have been done all over the world in order to increase their efficiency and reliability. Regarding their insulation, oil immersed pressboards are widely used, representing one of the most important elements playing a role in transformer behaviors. Under DC operation, space charges accumulating between the oil and pressboard have been reported as the influential cause possibly giving rise to unexpected service failures under the transient voltage from the grid. However, it might be possible to presume that the accumulation of space charge could be facilitated inside the multilayered pressboard causing insulation breakdown in a different way. In addition, other parameters could be potential issues to investigate: non homogeneous temperature distribution along the oil circulation path and the DC field intensity. The former could explain the conductivity variation causing the non-uniform DC field distribution, while the latter plays a role in the variation of conductivity. With these in mind, three parameters have mainly been put under experimental investigation. For this purpose, a DC voltage is applied to the oil immersed pressboard, and then the polarization and leakage current are measured and analyzed. The mobility of the space charge is calculated from the former as a function of the number of layers, while the conductivity is obtained from the latter.
机译:高压直流输电变压器是长距离输电的主要部件之一,为了提高其效率和可靠性,全世界已对其进行了许多研究。关于绝缘,油浸式纸板被广泛使用,代表着在变压器性能中起作用的最重要的元素之一。在直流电运行下,据报道,在油和纸板之间积聚的空间电荷是有影响的原因,可能在电网的瞬态电压下导致意外的服务故障。然而,可能有可能假定可以促进多层压纸板内部空间电荷的积累,从而以不同的方式引起绝缘击穿。此外,其他参数可能是潜在的研究问题:沿着油循环路径的温度分布不均匀以及直流磁场强度。前者可以解释导致直流电场分布不均匀的电导率变化,而后者在电导率变化中起作用。考虑到这些,主要对三个参数进行了实验研究。为此,将直流电压施加到浸油的压板上,然后测量和分析极化和泄漏电流。根据层的数量从前者计算空间电荷的迁移率,而从后者获得电导率。

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