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Electrothermal Instability Mitigation by Using Thick Dielectric Coatings on Magnetically Imploded Conductors

机译:通过在磁爆导体上使用厚介电涂层来减轻电热不稳定性

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Recent experiments on Sandia's Z facility have confirmed simulation predictions of dramatically reduced instability growth in solid metallic rods when thick dielectric coatings are used to mitigate density perturbations arising from an electrothermal instability. These results provide further evidence that the inherent surface roughness as a result of target fabrication is not the dominant seed for the growth of magneto-Rayleigh-Taylor instabilities in liners with carefully machined smooth surfaces, but rather electrothermal instabilities that form early in the electrical current pulse as Joule heating melts and vaporizes the liner surface. These results suggest a new technique for substantially reducing the integral magneto-Rayleigh-Taylor instability growth in magnetically driven implosions, such as cylindrical dynamic material experiments and inertial confinement fusion concepts.
机译:桑迪亚(Sandia)Z设施的最新实验已经证实了模拟预测,当使用厚的介电涂层来减轻由电热不稳定性引起的密度扰动时,固体金属棒中不稳定性的增长将大大降低。这些结果提供了进一步的证据,表明靶制造所产生的固有表面粗糙度不是在经过精心加工的光滑表面的衬里中磁瑞利泰勒不稳定性增长的主要种子,而是电流早期形成的电热不稳定性当焦耳加热熔化并汽化衬套表面时产生脉冲。这些结果表明了一种新的技术,该技术可大大减少磁驱动内爆中的整体磁瑞利-泰勒不稳定性增长,例如圆柱动力材料实验和惯性约束融合概念。

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