Analysis of Arc Behavior in Air Circuit Breaker with Applying Transverse Magnetic Field
POSTER
Abstract
Recently, digital transformation is being promoted toward the establishment of next-generation power networks, and in order to this achieve, it is necessary to collect analysis data under a wide variety of conditions. Circuit breakers are also required to be developed for the overall optimal solution of the power system using monitoring and control technology, and it is expected that the efficiency of operations will be improved with the introduction of DX. The objective is to realize an air circuit breaker that suppresses switching surge voltage when shutting off, determines the opening speed according to the situation, and reduces the size and cost. Focusing on air circuit breakers, it is important to understand the basic characteristics of the arc generated between the electrode contacts in order to achieve miniaturization and high performance. However, few simulation analyzes of arc behavior in air circuit breaker with applying transverse magnetic field have been reported. In this research, the arc temperature distribution affected by the applying transverse magnetic field of the air circuit breaker was calculated using the 3-D electromagnetic thermal fluid simulation.
Presenters
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Shinichiro Kashiwagi
Tokyo City University
Authors
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Shinichiro Kashiwagi
Tokyo City University
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Zhenwei Ren
Tokyo City University
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Yusuke Nemoto
Tokyo City University, Tokyo city university
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Yuki Suzuki
Tokyo City University
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Yoshifumi Maeda
Tokyo City University
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Toru Iwao
Tokyo City University, Tokyo city university