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Experimental Study of Fill-Tube Hydrodynamical Effects on Implosions

机译:填充管水动力对内爆影响的实验研究

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Summary form only given. Planned cryogenic ignition experiments at the National Ignition Facility (NIF) are expected to use a fill tube to introduce liquid DT into the capsule prior to solid layer formation. During the implosion, this fill tube is expected to form a hydrodynamic jet at deceleration that could quench ignition if this jet is sufficiently large and penetrates the core early enough. We have begun the first indirect-drive experiments to explore the hydrodynamic effects of fill tubes on implosion performance. In these experiments, we have concentrated on developing diagnostic techniques by replacing the fill tube with a bump on the outer shell surface. This bump is hydrodynamically similar to a fill tube but much easier to fabricate and simulate. We present experimental data and calculations for various bump diameters and heights obtained from two techniques: emission imaging of Ti-doped shell material that has been swept into the core at times near peak compression, and backlit imaging of the bump at early times
机译:仅提供摘要表格。国家点火装置(NIF)计划进行的低温点火实验预计将使用填充管在形成固体层之前将液体DT引入胶囊。在内爆期间,预计该填充管会在减速时形成流体动力射流,如果该射流足够大并足够早地穿透堆芯,则该射流会熄灭点火。我们已经开始了第一个间接驱动实验,以探索填充管对内爆性能的流体动力学影响。在这些实验中,我们专注于开发诊断技术,方法是用外壳表面上的凸块替换填充管。该凸块在流体动力学上类似于填充管,但更易于制造和模拟。我们提供了通过两种技术获得的各种凸块直径和高度的实验数据和计算结果:掺杂Ti的壳材料的发射成像(在接近峰值压缩时扫入了核中),以及在早期对凸块进行了背光成像

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