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Research on the discharge characteristics of different types and micro-structures in the PEF treatment chamber

机译:PEF处理室内不同类型和微观结构的放电特性研究

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Pulsed Electric Field (PEF) processing is the application of the high-voltage technology in the biological science and food technology. The main limitations of the technology are the electrical breakdown of the treatment chamber under the repetitive pulsed high-voltage voltage. This paper focuses on the discharge process in the internal treatment chamber, mainly researching on the characteristics of the conductive liquid breakdown in different types and micro-structures of the treatment chamber. It was found that under the same processing conditions, the formation, convergence and rise of bubbles had a great influence on the discharge of the treatment chamber. The different streams of the co-field and cross-field treatment chamber lead to the diversity of the bubble formation process. Size, number and the location of the bubbles determines the initiation and development of the discharge. The discharge process consists of partial discharge, partial breakdown and comprehensive breakdown. The difference between the cross-field and the co-field treatment chamber is that when the discharge breakdown occurs, liquid in the cross-field treatment chamber is heated to higher temperatures while the co-field treatment chamber required more and bigger bubbles and higher conductivity. Therefore, it's necessary to optimize the design of the subtle features in the internal treatment chamber to lower the probability of partial dielectric breakdown.
机译:脉冲电场(PEF)处理是高压技术在生物科学和食品技术中的应用。该技术的主要局限性是在重复的脉冲高压电压下处理室的电击穿。本文主要研究内部处理室中的放电过程,主要研究不同类型和处理室中导电液体击穿的特性。发现在相同的处理条件下,气泡的形成,会聚和上升对处理室的排放有很大的影响。同场和交叉场处理室的不同流导致气泡形成过程的多样性。气泡的大小,数量和位置决定了放电的开始和发展。放电过程包括局部放电,局部击穿和全面击穿。交叉场和同场处理室之间的区别在于,当发生放电击穿时,交叉场处理室中的液体被加热到更高的温度,而同场处理室则需要越来越多的气泡和更高的电导率。因此,有必要优化内部处理室中微妙特征的设计,以降低部分电介质击穿的可能性。

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