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Space Charge Measurement System for High Hydrostatic Pressure Based on PIPWP Method

机译:基于PIPWP方法的高静压压力空间电荷测量系统

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Submarine DC power cable engineering is considered as the most difficult and technical transmission project. Polyethylene (PE) is widely used as insulation in submarine DC cables due to its excellent dielectric property and mechanical performance. However, the problems caused by space charge have kept focusing much attention, which threaten the fatigue life of the insulators, and will further affect the insulation performance and service life of the DC cables. For decades, with increasingly mature space charge measurement technology, studies on varies of space charge problems have been done, but space charge behavior in DC cables has rarely been reported under some extreme operating conditions. Thus, in this paper, taking into account the very harsh submarine environment such as extreme pressure, the study of space charge behavior, a special designed setup comprising a Piezoelectric Induced Pressure Wave Propagation (PIPWP) measurement system enclosed with the sample between two steel mold and subjected to high hydrostatic pressure has been developed, which could detect the space charge distribution in the dielectric materials. With this setup, linear low-density polyethylene (LLDPE) planar samples are subjected to a high hydrostatic pressure which is up to 100 MPa. To examine the reliability and validity of this measurement system, the linearity of the peak value in space charge distribution curve applied different voltages with and without pressure are showed and discussed.
机译:海底直流电源电缆工程被认为是最困难和技术输电工程。聚乙烯(PE)被广泛地用作在海底直流电缆绝缘,由于其优异的介电性能和机械性能。然而,由空间电荷的问题一直保持集中的关注,这威胁到绝缘体的疲劳寿命,并会进一步影响直流电缆的绝缘性能和使用寿命。几十年来,随着日益成熟的空间电荷测量技术,对空间电荷问题因人而异的研究已经完成,但在直流电缆的空间电荷行为很少被一些极端的操作条件下的报道。因此,在本文中,考虑到非常苛刻的海底环境,诸如极压,空间电荷行为的研究,一个特殊设计的设置,其包括包围两个钢模具之间的样品压电引起的压力波的传播(PIPWP)测量系统并进行高静压已经开发,这可能检测在介电材料的空间电荷分布。采用这种设置,线性低密度聚乙烯(LLDPE)平面样品经受高静压是高达100兆帕。为了检验该测量系统的可靠性和有效性,在空间电荷分布曲线中的峰值的线性施加有和没有压力显示并讨论了不同的电压。

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