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Two-dimensional dynamics of solid fiber Z-pinches: Hot spots, photon emission, and other diagnostics from a computational viewpoint

机译:固体纤维Z夹的二维动力学:热点,光子发射和其他从计算角度出发的诊断

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Summary form only given. It has been demonstrated that interesting, long-lived fusion plasmas can be created by discharging modern high-voltage pulsed power generators through frozen deuterium fibers or solid fibers of other materials. One- and two-dimensional magnetohydrodynamic computations of the formation and evolution of fiber-formed plasmas have been performed. The computations use cold-start initial conditions in all attempt to compute the behavior of the pinches from t=0. The one-dimensional computations show that, prior to complete fiber ablation, current is carried by low-density, hot plasma which has been ablated from the fiber; the computations predict that the fiber persisted longer than expected in early experiments. The two-dimensional computations predict m=0 behavior of the fiber-formed pinches. The m=0 behavior begins in the hot, exterior plasma prior to complete ablation of the fiber and enhances the fiber ablation rate. It is found that diagnostics based on the computed two-dimensional density/temperature profiles agree qualitatively and quantitatively with experimental observations.
机译:仅提供摘要表格。已经证明,通过使现代高压脉冲发电机通过冷冻的氘纤维或其他材料的固体纤维放电,可以产生有趣的,长寿命的聚变等离子体。已对纤维状等离子体的形成和演化进行了一维和二维磁流体力学计算。在所有尝试中,计算都使用冷启动初始条件来计算从t = 0开始的收缩行为。一维计算表明,在完全烧蚀光纤之前,电流是由已从光纤烧蚀的低密度热等离子体承载的。计算表明,光纤的持久性比早期实验中预期的要长。二维计算可预测纤维状夹点的m = 0行为。 m = 0的行为在纤维完全烧蚀之前在热的外部等离子体中开始,并提高了纤维烧蚀速率。发现基于计算的二维密度/温度分布图的诊断在质量和数量上与实验观察一致。

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