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縮小モデルを利用なメッシ接地電極の形態による大地表面の電位傾倒

縮小モデルを利用なメッシ接地電極の形態による大地表面の電位傾倒

通常価格 ¥440 JPY
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カテゴリ: 部門大会

論文No: 53

グループ名: 【B】平成17年電気学会電力・エネルギー部門大会講演論文集

発行日: 2005/08/10

タイトル(英語): The Potential Gradient of Ground Surface for Shapes of Mesh Grid Grounding Electrode Using Reduced Scale Model

著者名: Chung Seog Choi (韓国電気安全公祉),Hyang Kon Kim (韓国電気安全公祉),Hyoung Jun Gil (韓国電気安全公祉),Woon Ki Han (韓国電気安全公祉),Ki Yeon Lee (韓国電気安全公祉)

著者名(英語): Chung Seog Choi (Electrical Safety Research Institute attacted to Korea Electrical Safety Corporation),Hyang Kon Kim (Electrical Safety Research Institute attacted to Korea Electrical Safety Corporation),Hyoung Jun Gil (Electrical Safety Research Institute attacted to Korea Electrical Safety Corporation),Woon Ki Han (Electrical Safety Research Institute attacted to Korea Electrical Safety Corporation),Ki Yeon Lee (Electrical Safety Research Institute attacted to Korea Electrical Safety Corporation)

キーワード: grounf potential rise|grounding simulation system|auxiliary mesh electrode|reduced scale

要約(日本語): In order to analyze potential gradient of ground surface of grounding system installed in buildings, the hemispherical grounding simulation system has been designed and fabricated as substantial and economical measures. Ground potential rise(GPR) has been measured and analyzed for shapes of mesh grid grounding electrode by using the system. The system is apparatus to have a free reduced scale for conductor size and laying depth of a full scale grounding system and the system is constructed so that a shape of equipotential surface is nearly identified a free reduced scale with a real scale when a current flows through grounding electrode.
The system was composed of a hemispherical water tank, AC power supply, a movable potentiometer, and test grounding electrodes. The water tank was made of stainless steel and its diameter was 2m. AC power supply produced earth leakage current. GPR was measured by a moving probe of a potentiometer horizontally. The test grounding electrodes were fabricated through reducing grounding electrode installed in real buildings such as mesh grid type, combined type and so on. GPR has been measured in real time when a test current has flowed through grounding electrode. GPR was displayed in two-dimensional profile and was analyzed for shapes of grounding electrode. When a mesh grid type was associated with a rod type and auxiliary mesh electrodes were installed at the four sides of mesh grid grounding electrode, GPR was the lowest of all test grounding electrodes. The proposed results would be applicable to evaluate GPR in the grounding systems, and the analytical data can be used to stabilize the electrical installations and prevent the electrical disasters.

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