ログイン
Language:

WEKO3

  • トップ
  • ランキング
To
lat lon distance
To

Field does not validate



インデックスリンク

インデックスツリー

メールアドレスを入力してください。

WEKO

One fine body…

WEKO

One fine body…

アイテム

  1. 学位論文
  2. 学位論文

ナノコンポジットコーティングを効果を考慮した油/プレスボード界面における沿面放電挙動及び数値モデル解析

https://doi.org/10.18997/00006311
https://doi.org/10.18997/00006311
127fba1f-6ce7-474e-8620-a6daae9a4bf2
名前 / ファイル ライセンス アクション
kou_k_435.pdf kou_k_435.pdf (11.9 MB)
アイテムタイプ 学位論文 = Thesis or Dissertation(1)
公開日 2017-08-24
資源タイプ
資源タイプ識別子 http://purl.org/coar/resource_type/c_db06
資源タイプ doctoral thesis
タイトル
タイトル Creepage Discharge Behaviour and Numerical Model Analysis at the Oil/Pressboard Interface with the Effect of Nano Composite Coating
言語 en
タイトル
タイトル ナノコンポジットコーティングを効果を考慮した油/プレスボード界面における沿面放電挙動及び数値モデル解析
言語 ja
言語
言語 eng
著者 Jang, Kyunghoon

× Jang, Kyunghoon

en Jang, Kyunghoon

Search repository
抄録
内容記述タイプ Abstract
内容記述 Electrical insulation has been described as the most important component of electrical equipment such as transformer, circuit breakers, vacuum interrupters and power cables. Above all, oil filled transformers are one of the basic elements of a power system. They are connected to a large number of customers via power transmission and distribution system. However, partial discharge and breakdown phenomenon by lightning surge has proved to be one of the major factors and weak point at the oil/pressboard (PB) interface. Besides, aged oil filled transformers are increasing trend, there is need for replacement of aged transformer. Especially, the life time of a transformer is mainly dependent on the life of solid insulation. To enhance competitiveness and cost reduction of transformer system, there is need for alternative conventional pressboard in terms of miniaturization and simplification of insulation structure in oil filled transformer. Besides, to improve of design electric field, dielectric strength as well as suppression of creepage discharge occurrence, there is necessary to improve the insulation performance to prevent discharge phenomena. In this reason, a lot of work has been recently devoted to improve the dielectric properties of insulation by adding specific functional additives in to the solid polymer, GIS spacer as well as liquid oil. However, recently few studies have been focused on modifications of the insulating paper using various specific functional additives to improve dielectric and mechanical properties; it is because streamer propagation in oil is greatly affected by the presence of pressboard. Above viewpoints, this research work suggest the new coating method on pressboard surface by thin solid layer coating such as epoxy resin, Teflon coating and silica/epoxy nanocomposite to study discharge phenomena and behavior in transformer composite insulation system. In experiment, five kinds of specimens are used with different coating materials using rod-plane and needle-bar electrode configuration. The creepage discharge properties of conventional pressboard in oil/pressboard composite insulation are compared with that of the solid layer coated pressboard newly in terms of discharge propagation length, discharge occurrence probability and dielectric properties. Besides, to clarify the effect of epoxy/silica nanocomposite, we investigated the creepage discharge behavior using epoxy/silica nanocomposite plate with different silica filler loading and different nano silica size. Additionally, we investigated the creepage discharge behavior using COMSOL Multiphysics 2D model for simulation. In simulation, to understand the creepage discharge phenomena in composite insulation system depending on solid insulation parameters such as work function and permittivity, creepage discharge modelling and simulation have been investigated. The simulation is based on a system of coupled general expression of governing equations that contain the physics to model streamer development based on the hydrodynamic diffusiondrift including ionization, dissociation, charge recombination and electron attachment, combined with Poisson’s equation in dielectric liquids. The governing equations for solid pressboard insulation are composed of Gauss’s Law. All the results are reported and discussed.
備考
内容記述タイプ Other
内容記述 九州工業大学博士学位論文 学位記番号:工博甲第435号 学位授与年月日:平成29年3月24日
キーワード
主題Scheme Other
主題 Creepage discharge
キーワード
主題Scheme Other
主題 Oil filled transformer
キーワード
主題Scheme Other
主題 Nanocomposite
キーワード
主題Scheme Other
主題 Numerical analysis
キーワード
主題Scheme Other
主題 Discharge behaviour
アドバイザー
匹田, 政幸
学位授与番号
学位授与番号 甲第435号
学位名
学位名 博士(工学)
学位授与年月日
学位授与年月日 2017-03-24
学位授与機関
学位授与機関識別子Scheme kakenhi
学位授与機関識別子 17104
学位授与機関名 九州工業大学
学位授与年度
内容記述タイプ Other
内容記述 平成28年度
出版タイプ
出版タイプ VoR
出版タイプResource http://purl.org/coar/version/c_970fb48d4fbd8a85
アクセス権
アクセス権 open access
アクセス権URI http://purl.org/coar/access_right/c_abf2
ID登録
ID登録 10.18997/00006311
ID登録タイプ JaLC
戻る
0
views
See details
Views

Versions

Ver.1 2023-05-15 12:48:42.065390
Show All versions

Share

Share
tweet

Cite as

Other

print

エクスポート

OAI-PMH
  • OAI-PMH JPCOAR 2.0
  • OAI-PMH JPCOAR 1.0
  • OAI-PMH DublinCore
  • OAI-PMH DDI
Other Formats
  • JSON
  • BIBTEX
  • ZIP

コミュニティ

確認

確認

確認


Powered by WEKO3


Powered by WEKO3