風車翼内部を想定した長尺円筒空間内での侵入雷模擬直流アークによる圧力上昇の様相
風車翼内部を想定した長尺円筒空間内での侵入雷模擬直流アークによる圧力上昇の様相
カテゴリ: 論文誌(論文単位)
グループ名: 【B】電力・エネルギー部門
発行日: 2019/05/01
タイトル(英語): Characterization of Pressure Rise due to DC Arc Simulating Lightning with Puncture Breakdown in Long Cylindrical Space under Supposition of the Inside of a Wind Turbine Blade
著者名: 田中 慎一((一財)電力中央研究所 電力技術研究所),大髙 聡也((一財)電力中央研究所 電力技術研究所),合田 豊((一財)電力中央研究所 電力技術研究所)
著者名(英語): Shin-ichi Tanaka (Electric Power Engineering Research Lab., Central Research Institute of Electric Power Industry), Toshiya Ohtaka (Electric Power Engineering Research Lab., Central Research Institute of Electric Power Industry), Yutaka Goda (Electric Power Engineering Research Lab., Central Research Institute of Electric Power Industry)
キーワード: 雷,風車翼,シミュレーション,アーク,圧力上昇,試験パラメータ lightning,wind turbine blade,simulation,arc,pressure rise,test parameter
要約(英語): While wind turbine generators have widely spread as one of the renewable energy sources, lightning protection for the wind turbine generators has been becoming a very important issue because lightning damages of them may cause the economic losses and the public disaster. As one of the studies for such lightning protection, internal arc tests for wind turbine blade models, which simulates the lightning penetration into a wind turbine blade, were carried out using a short-circuit generator. On these tests, length of the wind turbine blade model and waveform of the arc current are dominant test parameters because they are thought to be influential factors related to the pressure rise in a wind turbine blade. In this paper, the CFD calculations of pressure rise due to a DC arc in a closed space are conducted, where the closed space is a long cylinder as simplifying the inside of a wind turbine blade. From a result of the CFD calculations, we clarified a dependence of the internal pressure rise not only on the length of cylindrical space, which varies from 2 to 40m, but also on the waveform of direct current, which varies from 2 to 8kA with a constant electric charge of 100C.
本誌: 電気学会論文誌B(電力・エネルギー部門誌) Vol.139 No.5 (2019) 特集:雷・熱プラズマ・アーク技術の最新動向
本誌掲載ページ: 280-286 p
原稿種別: 論文/日本語
電子版へのリンク: https://www.jstage.jst.go.jp/article/ieejpes/139/5/139_280/_article/-char/ja/
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