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首页> 外文期刊>Physics of plasmas >The effects of convergence ratio on the implosion behavior of DT layered inertial confinement fusion capsules
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The effects of convergence ratio on the implosion behavior of DT layered inertial confinement fusion capsules

机译:收敛比对DT分层惯性监禁融合胶囊爆炸行为的影响

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The wetted foam capsule design for inertial confinement fusion capsules, which includes a foam layer wetted with deuterium-tritium liquid, enables layered capsule implosions with a wide range of hot-spot convergence ratios (CR) on the National Ignition Facility. We present a full-scale wetted foam capsule design that demonstrates high gain in one-dimensional simulations. In these simulations, increasing the convergence ratio leads to an improved capsule yield due to higher hot-spot temperatures and increased fuel areal density. High-resolution two-dimensional simulations of this design are presented with detailed and well resolved models for the capsule fill tube, support tent, surface roughness, and predicted asymmetries in the x-ray drive. Our modeling of these asymmetries is validated by comparisons with available experimental data. In 2D simulations of the full-scale wetted foam capsule design, jetting caused by the fill tube is prevented by the expansion of the tungsten-doped shell layer due to preheat. While the impacts of surface roughness and predicted asymmetries in the x-ray drive are enhanced by convergence effects, likely underpredicted in 2D at high CR, simulations predict that the capsule is robust to these features. Nevertheless, the design is highly susceptible to the effects of the capsule support tent, which negates all of the one-dimensional benefits of increasing the convergence ratio. Indeed, when the support tent is included in simulations, the yield decreases as the convergence ratio is increased for CR > 20. Nevertheless, the results suggest that the full-scale wetted foam design has the potential to outperform ice layer capsules given currently achievable levels of asymmetries when fielded at low convergence ratios (CR < 20). Published by AIP Publishing.
机译:用于惯性限制融合胶囊的润湿泡沫胶囊设计,其包括用氘氚润湿的泡沫层,使分层胶囊内部内部内部内部涂层可在国家点火设施上具有广泛的热点收敛比(CR)。我们提出了一种全规模的湿润泡沫胶囊设计,证明了一维模拟中的高增益。在这些模拟中,由于较高的热点温度和增加的燃料面密度,增加收敛比率导致改善的胶囊产率。这种设计的高分辨率二维模拟具有详细且良好的解决模型,用于胶囊填充管,支撑帐篷,表面粗糙度和X射线驱动中的预测不对称。我们对这些不对称的建模通过可用实验数据的比较验证。在2D模拟全尺寸湿润的泡沫胶囊设计中,通过预热引起的钨掺杂壳层的膨胀,防止由填充管引起的喷射。虽然表面粗糙度和预测的不对称的影响通过收敛效应增强,但是在高CR的2D中可能被估计,而模拟预测胶囊对这些特征具有鲁棒性。然而,设计高度易受胶囊支撑帐篷的影响,这否定了增加收敛比的所有一维益处。实际上,当支持帐篷包括在模拟中时,随着CR> 20增加的收敛比增加,结果表明,全尺寸湿润的泡沫设计具有当前可实现的冰层胶囊的潜力。在低收敛比(CR <20)处呈现的不对称。通过AIP发布发布。

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