首页> 外文会议>2017 IEEE 19th International Conference on Dielectric Liquids >Self-healing dielectric liquids to enable self-repair in fluid filled power cables
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Self-healing dielectric liquids to enable self-repair in fluid filled power cables

机译:具有自我修复功能的介电液体,可实现流体填充电力电缆中的自我修复

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摘要

Fluid filled cables (FFCs) are insulated with a layer consisting of tightly lapped insulation paper, impregnated with a low viscosity mineral oil. Although improvements in polymer insulation have led to many being replaced, roughly 8,500km of FFC circuits still remain as legacy circuits, typically in heavily urbanized areas where replacement is either prohibitively expensive or impossible. If the sheath of an FFC is breached, oil will leak from the insulation layer, representing a risk to both cable integrity and the surrounding environment. Within the UK 400,000L of insulation oil is lost annually[1], and the severity of the problem is expected to increase; many circuits are now operating substantially beyond their operational lifetime, and the increasing fragility of lead cable sheaths (through crystallization and embrittlement) is becoming a significant concern. Here, we present a potential solution through the replacement of the insulation oil with a self-healing fluid (SHF). In the event of a breach (be it on the sheath or within a plumb joint) the SHF will crosslink in the presence of oxygen present in the surrounding backfill, resulting in the formation of a solid mass that prevents further oil leakage. In cases where direct sheath healing cannot be achieved (with particularly large or rapid leaks) the SHF will subsequently cure within the backfill, resulting in the formation of an oil-proof barrier that can effectively contain the oil, thereby limiting further environmental pollution.
机译:充满流体的电缆(FFC)的绝缘层是由紧密叠放的绝缘纸组成,绝缘纸中浸渍有低粘度矿物油。尽管聚合物绝缘材料的改进已导致许多电路被替换,但仍保留了约8,500公里的FFC电路作为传统电路,通常在市区繁华的地区,其替换成本过高或无法实现。如果FFC的护套破裂,则油会从绝缘层泄漏,这对电缆完整性和周围环境都构成危险。在英国,每年损失40万升绝缘油[1],并且问题的严重性预计还会增加;现在,许多电路的使用寿命已大大超出其使用寿命,并且引线电缆护套(通过结晶和脆化)不断增加的脆弱性已成为一个重要问题。在这里,我们提出了一种潜在的解决方案,即用自修复液(SHF)代替绝缘油。如果发生破裂(无论是在护套上还是在铅垂接头内),SHF都会在周围回填中存在氧气的情况下发生交联,从而形成固体物质,防止进一步漏油。如果无法实现直接的护套愈合(特别是大量泄漏或迅速泄漏),SHF将随后在回填物中固化,从而形成可以有效容纳油的防油屏障,从而进一步限制了环境污染。

著录项

  • 来源
  • 会议地点 Manchester(GB)
  • 作者单位

    Gnosys Global Ltd 17-18 Frederick Sanger Road, Surrey Research Park, Guildford, United Kingdom;

    Gnosys Global Ltd 17-18 Frederick Sanger Road, Surrey Research Park, Guildford, United Kingdom;

    Gnosys Global Ltd 17-18 Frederick Sanger Road, Surrey Research Park, Guildford, United Kingdom;

    Gnosys Global Ltd 17-18 Frederick Sanger Road, Surrey Research Park, Guildford, United Kingdom;

    EDF RD, Laboratoire des Materiels Electriques, Avenue des Renardieres - D14 Ecuelles 77818, Moret sur, Loing, France;

    EDF RD, Laboratoire des Materiels Electriques, Avenue des Renardieres - D14 Ecuelles 77818, Moret sur, Loing, France;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Oils; Cable insulation; Cable shielding; Power cables; Viscosity;

    机译:油类;电缆绝缘层;电缆屏蔽层;电力电缆;粘度;;

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