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首页> 外文期刊>Physical Review. Accelerators and Beams >Three-dimensional electromagnetic model of the pulsed-power span class="aps-inline-formula"math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"miZ/mi/math/span-pinch accelerator
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Three-dimensional electromagnetic model of the pulsed-power span class="aps-inline-formula"math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"miZ/mi/math/span-pinch accelerator

机译:脉冲功率的三维电磁模型 class =“ aps-inline-formula”> <数学xmlns =“ http://www.w3.org/1998/Math/MathML” display =“ inline”> < mi> Z -捏加速器

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摘要

A three-dimensional, fully electromagnetic model of the principal pulsed-power components of the 26-MA ZR accelerator [D. H. McDaniel et al., in Proceedings of the 5th International Conference on Dense $Z$-Pinches (AIP, New York, 2002), p. 23] has been developed. This large-scale simulation model tracks the evolution of electromagnetic waves through the accelerator's intermediate-storage capacitors, laser-triggered gas switches, pulse-forming lines, water switches, triplate transmission lines, and water convolute to the vacuum insulator stack. The insulator-stack electrodes are coupled to a transmission-line circuit model of the four-level magnetically insulated vacuum-transmission-line section and double-post-hole convolute. The vacuum-section circuit model is terminated by a one-dimensional self-consistent dynamic model of an imploding $z$-pinch load. The simulation results are compared with electrical measurements made throughout the ZR accelerator, and are in good agreement with the data, especially for times until peak load power. This modeling effort demonstrates that 3D electromagnetic models of large-scale, multiple-module, pulsed-power accelerators are now computationally tractable. This, in turn, presents new opportunities for simulating the operation of existing pulsed-power systems used in a variety of high-energy-density-physics and radiographic applications, as well as even higher-power next-generation accelerators before they are constructed.
机译:一个26-MA ZR加速器的主要脉冲功率组件的三维完全电磁模型[D. H. McDaniel等人在“第五届密集Z $-捏合国际会议论文集”(AIP,纽约,2002年)中,第1页。 23]已经开发。这个大规模的仿真模型通过加速器的中间存储电容器,激光触发的气体开关,脉冲形成线,水开关,三重传输线以及水向真空绝缘体堆层的卷积来跟踪电磁波的演变。绝缘体堆叠电极耦合到四级磁绝缘真空传输线部分和双柱孔回旋的传输线电路模型。真空部分的电路模型由一个内爆的$ z $ -pinch负载的一维自洽动态模型终止。仿真结果与整个ZR加速器中进行的电气测量结果进行了比较,并且与数据非常吻合,尤其是直到达到峰值负载功率为止。这项建模工作证明,大型,多模块,脉冲功率加速器的3D电磁模型现在在计算上很容易处理。反过来,这为在各种高能量密度物理和射线照相应用中使用的现有脉冲功率系统,以及更高功率的下一代加速器在构建之前提供了新的模拟机会。

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