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首页> 外文期刊>Journal of Fusion Energy >Optimized Design of Sub-kilo Joule Dense Plasma Focus and Measurement of Neutron Yield
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Optimized Design of Sub-kilo Joule Dense Plasma Focus and Measurement of Neutron Yield

机译:亚千焦耳致密等离子体焦点和中子产量测量的优化设计

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Abstract This paper specifically talks about optimized design strategy of sub-kilo Joule Dense plasma focus (PF) fusion device in a full-fledged systematic manner. Recently, there are many pulsed power groups working in design and development of various PF devices in the range of sub-kilo joule energy. Few of them are publishing with the optimized operating parameters for the maximum neutron yield. Most of them, talks about the estimation of PF parameters based on traditional high voltage break down mechanisms in vacuum, plasma pinch behavior and neutron generation, which are optimized for higher energy level (few kJ to MJ) PF devices. It has been very tricky and iterative way to achieve maximum neutron yield for a sub kJ PF device. A conceptual design strategy is presented for estimation of four critical PF tube parameters. These four parameters are: Anode radius, cathode radius, effective anode length and insulator length. This is very important to know these parameters, in advance of actual fabrication and plasma pinch experiments. A 400 J PF device is designed and operated at 20 kV with the help of above design strategy in single go. Maximum neutron yield is measured 50% higher with wide range of deuterium gas pressure (6–12 mbar) among sub kJ PF devices. A detailed design strategy, experimental pulsed power system development, neutron measurement and results are discussed.
机译:摘要本文具体讨论了以全剥离的系统方式讨论了亚千焦耳致密等离子体聚焦(PF)融合装置的优化设计策略。最近,在亚克罗焦耳能量范围内的各种PF器件的设计和开发中有许多脉冲电力组。其中很少有用于最大中子产量的优化操作参数。它们中的大多数,基于传统的高压分解机构在真空,等离子体捏合行为和中子生成中的PF参数估计,这针对较高能级(几个KJ至MJ)PF器件进行了优化。实现子KJ PF器件的最大中子产量是非常棘手和迭代的方法。提出了一种概念设计策略,用于估计四个关键的PF管参数。这四个参数是:阳极半径,阴极半径,有效阳极长度和绝缘体长度。在实际的制造和等离子体捏实验之前,了解这些参数非常重要。 400 J PF器件在单人的设计策略的帮助下,在20 kV下设计和操作。测量最大中子产率在副KJ PF器件中具有宽范围的氘气压(6-12毫巴)测量50%。讨论了详细的设计策略,实验脉冲电力系统开发,中子测量和结果。

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