首页> 外文期刊>Mathematical research letters: MRL >2D modeling of fusion ignition conditions for a multilayer plasma liner magneto-inertial fusion target in a cylindrical configuration
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2D modeling of fusion ignition conditions for a multilayer plasma liner magneto-inertial fusion target in a cylindrical configuration

机译:圆柱形构造中多层等离子体衬里磁惯性融合目标的融合点火条件的2D建模

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摘要

A set of 2D time dependent simulations of an imploding cylindrical target and liner is presented. These simulations were performed using an ideal magnetohydrodynamic methodology that augmented the energy equation to account for fusion alpha particle deposition, thermal conduction, and Bremsstrahlung radiation. A reference case of a deuterium and tritium (DT) target compressed by a multilayer liner consisting of an inner layer of DT and an outer layer of argon was evaluated. The reference case was chosen to be within the region of positive fusion heating predicted by the Lindl-Widner power balance model. Analysis of the reference case determined fusion gains of three or greater can be achieved. A sensitivity analysis of four parameters was performed. These parameters were the target: radius, density, temperature, and inner/outer liner thickness ratio. It was found that the Lindl-Widner parameter space accurately predicts regions of positive fusion heating, but over-predicts the effects of mechanical work done by a plasma liner. It was determined that a plasma liner could be used as a confinement mechanism to contain a thermally conditioned target and allow it to ignite and burn. Thermal conduction from the hot fusing target was capable of heating the inner liner layer to fusion ignition conditions and increasing the fusion yield. Published under license by AIP Publishing.
机译:呈现了一组20D时间依赖性模拟的夸大圆柱形目标和衬里。使用理想的磁流动力学方法进行这些模拟,该方法增强了能量方程以考虑融合α粒子沉积,热传导和Bremsstrahlung辐射。评估由由DT内层和氩气的内层组成的多层衬垫压缩的氘和氚(DT)靶的参考情况。选择参考案例在Lindl-Widner电力平衡模型预测的正融合加热区域内。可以实现参考案例的分析,可以实现三个或更大的熔化增益。进行了四个参数的灵敏度分析。这些参数是目标:半径,密度,温度和内衬厚度比。发现Lindl-Widner参数空间准确地预测正熔化加热的区域,但过度预测了通过等离子体衬里完成的机械工作的影响。确定等离子体衬里可以用作遏制机制以含有热调节靶标并允许其点燃和燃烧。从热熔熔丝靶的热传导能够将内衬层加热到融合点火条件并增加融合产率。通过AIP发布根据许可发布。

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