模拟NIF点火实验的三维结构

R. Nora, J. Field, B. Spears, D. Casey, M. Kruse, D. Mariscal, P. Patel
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引用次数: 4

摘要

本文详细介绍了一个用于推断国家点火装置惯性约束聚变内爆实验中停滞热点和壳层三维结构的模型。该模型假设三维低模驱动扰动可以解释实验观察到的大多数停滞不对称。它使用自适应采样算法来导航24-D输入参数空间,以找到三维x射线通量不对称,将其应用于其他对称的内爆,结果在合成和实验诊断观测结果之间一致匹配。该模型应用于一系列实验,能够实现超过41种不同观测值的一致匹配,提供了停滞热点和壳剖面的高保真度重建。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling the 3-D structure of ignition experiments at the NIF
This work details a model used to infer the 3-D structure of the stagnated hot-spot and shell of inertial confinement fusion implosion experiments at the National Ignition Facility. The model assumes that 3-D low-mode drive perturbations can account for the majority of stagnation asymmetries experimentally observed. It uses an adaptive sampling algorithm to navigate the 24-D input parameter space to find a 3-D x-ray flux asymmetry whose application to an otherwise symmetric implosion results in a consistent match between synthetic and experimental diagnostic observables. The model is applied to a series of experiments and is able to achieve a consistent match for over 41 different observables, providing a high-fidelity reconstruction of the stagnation hot-spot and shell profile.
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