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首页> 外文期刊>Physical Review. Accelerators and Beams >Design of a 5-MA 100-ns linear-transformer-driver accelerator for wire array Z-pinch experiments
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Design of a 5-MA 100-ns linear-transformer-driver accelerator for wire array Z-pinch experiments

机译:用于线阵列Z捏实验的5 MA 100 ns线性变压器驱动器加速器的设计

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The linear-transformer-driver (LTD) is a recently developed pulsed-power technology that shows great promise for a number of applications. These include a $Z$-pinch-driven fission-fusion-hybrid reactor that is being developed by the Chinese Academy of Engineering Physics. In support of the reactor development effort, we are planning to build an LTD-based accelerator that is optimized for driving wire-array $Z$-pinch loads. The accelerator comprises six modules in parallel, each of which has eight series 0.8-MA LTD cavities in a voltage-adder configuration. Vacuum transmission lines are used from the interior of the adder to the central vacuum chamber where the load is placed. Thus the traditional stack-flashover problem is eliminated. The machine is 3.2 m tall and 12 m in outer diameter including supports. A prototype cavity was built and tested for more than 6000 shots intermittently at a repetition rate of 0.1 Hz. A novel trigger, in which only one input trigger pulse is needed by utilizing an internal trigger brick, was developed and successfully verified in these shots. A full circuit modeling was conducted for the accelerator. The simulation result shows that a current pulse rising to 5.2 MA in 91 ns (10%--90%) can be delivered to the wire-array load, which is 1.5 cm in height, 1.2 cm in initial radius, and 1 mg in mass. The maximum implosion velocity of the load is $32ext{ }ext{ }mathrm{cm}/ensuremath{mu}mathrm{s}$ when compressed to 0.1 of the initial radius. The maximum kinetic energy is 78 kJ, which is 11.7% of the electric energy stored in the capacitors. This accelerator is supposed to enable a radiation energy efficiency of 20%--30%, providing a high efficient facility for research on the fast $Z$ pinch and technologies for repetition-rate-operated accelerators.
机译:线性变压器驱动器(LTD)是最近开发的脉冲功率技术,在许多应用中显示出巨大的希望。其中包括由中国工程物理研究院开发的Z $捏合驱动的裂变融合混合反应堆。为了支持反应堆的开发工作,我们计划构建一个基于LTD的加速器,该加速器针对驱动线阵列$ Z $捏负载进行了优化。加速器包括六个并联的模块,每个模块在加法器配置中具有八个串联的0.8-MA LTD腔。从加法器内部到放置负载的中央真空室使用真空传输线。因此,消除了传统的堆栈闪络问题。机器高3.2 m,外径12 m(包括支撑)。制作了一个原型腔,并以0.1 Hz的重复频率间歇地测试了6000多个镜头。开发了一种新颖的触发器,通过使用内部触发器模块只需一个输入触发脉冲,并在这些镜头中成功进行了验证。对加速器进行了全电路建模。仿真结果表明,可以在91 ns(10%-90%)的时间内将上升到5.2 MA的电流脉冲传递到线阵负载,该负载的高度为1.5厘米,初始半径为1.2厘米,线宽为1毫克质量当压缩到初始半径的0.1时,负载的最大内爆速度为$ 32 text {} text {} mathrm {cm} / ensuremath { mu} mathrm {s} $。最大动能为78 kJ,占电容器中存储的电能的11.7%。该加速器应该能够实现20%-30%的辐射能效,为研究快速$ Z $收缩和重复速率操作加速器的技术提供了一种高效的设备。

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