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柔性石墨复合接地材料非完全相似接地模拟试验研究

高晓东 胡元潮 安韵竹 咸日常 庄燕飞 刘兴华

高压电器2017,Vol.53Issue(11):132-140,9.
高压电器2017,Vol.53Issue(11):132-140,9.DOI:10.13296/j.1001-1609.hva.2017.11.022

柔性石墨复合接地材料非完全相似接地模拟试验研究

Study on Non-complete Similarity Grounding Simulation Test of Flexible Graphite Composite Grounding Material

高晓东 1胡元潮 2安韵竹 2咸日常 2庄燕飞 1刘兴华3

作者信息

  • 1. 国网山东省电力公司检修公司,济南250118
  • 2. 山东理工大学电气与电子工程学院,山东淄博255000
  • 3. 国网山东省电力公司淄博供电公司,山东淄博255000
  • 折叠

摘要

Abstract

Grounding simulation test is the basic method to realize the grounding parameters prediction and characteristic analysis.In the experiments of several grounding materials such as flexible graphite composite material,sustained-release ion grounding module and grounding module,some similarity items can't be strictly followed which lead a big prediction error value.In order to solve this problem,firstly,this article expounds the distortion similarity model of the grounding simulation test,analyzes the source of distortion similarity terms.Secondly,puts forward the concept of the distortion coefficient and the sensitivity of distortion similarity terms.At last,an experimental emulation is given to illustrate the sensitivity of distortion similarity terms which include the grounding conductor diameter distortion,grounding conductor electrical resistivity distortion and the multi-distortion similarity terms.The research contents of this paper can provide a reference for the grounding simulation test and other scaling tests in the high voltage fields.

关键词

柔性石墨复合接地材料/相似理论/畸变相似项/畸变系数/敏感度

Key words

flexible graphite composite grounding material(FGCGM)/similarity theory/distortion similarity terms/distortion coefficient/sensitivity

引用本文复制引用

高晓东,胡元潮,安韵竹,咸日常,庄燕飞,刘兴华..柔性石墨复合接地材料非完全相似接地模拟试验研究[J].高压电器,2017,53(11):132-140,9.

基金项目

山东省自然科学基金(ZR2016EEQ20) (ZR2016EEQ20)

山东省高等学校科技计划项目基金(J16LN32).Project Supported by Shandong Provincial Natural Science Foundation of China(ZR2016EEQ20),Shandong Province Higher Educational Science and Technology Program(J16LN32). (J16LN32)

高压电器

OA北大核心CSCDCSTPCD

1001-1609

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