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The ZR Final Design Pulsed Power Performance Expectations

机译:ZR最终设计脉冲电源性能期望

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The largest X-ray generating facility in the world (~1.8 MJ), the Z machine at Sandia National Laboratories (SNL), is presently undergoing a major upgrade. Upon completion of its refurbishment, ZR is expected to deliver an output current of 26 MA to a standard 20 mm by 40 mm diameter Z-pinch load with a 100-ns implosion time. In addition to nearly doubling the output energy and providing a useful increase in current capability to the research community, the Project criteria include providing an enhanced precision, improved timing jitter, and advanced pulse shaping flexibility needed for full parameter space assessment for the material science community. Another criteria is to increase the shot capacity by enabling the facility and diagnostics infrastructure to routinely support 400 shots per year while minimizing the impact of implementing improvements on existing experimental programs. The Project''s objective of extending the life of Z in a balanced way also served to exercise SNL''s pulsed power research and engineering capabilities and resources and retain the expertise that will be required for future endeavors. This paper summarizes the predicted pulsed power performance of the 36-module ZR from the 577-kJ (at 85-kV charge) Marx generators in the oil energy storage section through the water pulse forming section components and the vacuum section to the Z-pinch load. Comparisons show good agreement between the most recent models and experimental results from full-scale, single module systems which are very similar to the final design. Discussions will emphasize the laser triggered gas switches and the self-break water switches which are continuing to be optimized
机译:桑迪亚国家实验室(SNL)的Z机是世界上最大的X射线生成设备(约1.8 MJ),目前正在进行重大升级。翻新完成后,ZR有望以100 ns的内爆时间向标准的20 mm x 40 mm直径Z捏合负载提供26 MA的输出电流。除了将输出能量几乎增加一倍,并为研究团体提供当前能力的有用增加外,该项目的标准还包括提供更高的精度,改善的时序抖动以及材料科学界进行全参数空间评估所需的先进的脉冲成形灵活性。 。另一个标准是通过使设施和诊断基础结构每年例行支持400张照片,同时最大程度地减少实施改进对现有实验程序的影响,来增加照片数量。该项目以平衡方式延长Z寿命的目标还有助于行使SNL的脉冲功率研究和工程能力以及资源,并保留未来工作所需的专业知识。本文总结了从油能量存储区中的577-kJ(在85 kV充电时)的马克思发电机,通过水脉冲形成区组件和真空区到Z捏合器的36模块ZR的预测脉冲功率性能。加载。比较表明,最新模型与全尺寸,单模块系统的实验结果(与最终设计非常相似)之间具有良好的一致性。讨论将着重于激光触发的气体开关和自断水开关,它们将继续进行优化。

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