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A New Numerical Treatment of Hohlraum Boundaries for ALE Rad/Hydro Codes

机译:ALE Rad / Hydro Codes Hohlraum界限的新数值治疗

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Numerical treatment of the Laser Entrance Hole (LEH) region in hohlraums and halfraums with Arbitrary Lagrangian Eulerian (ALE) or pure Lagrangian codes is difficult near the Lagrangian boundary interface. For example, recent studies have focused on ALE methods for boundaries with rezoning to simulate the LEH window motion and the sliding contact between the window and the LEH edge. We propose a technique for handling such boundary complications based on the inclusion of a wrap-around very-low density mesh structure. Additional ALE rezoning features such as material zone weighting are included to preserve numerical accuracy. We demonstrate the ability of ALE simulations using our technique to run to late time with very little user intervention. We benchmark our simulation results with experimental data from both two and three-dimensional halfraum experiments on the Helen and Omega Lasers.
机译:在拉格朗日边界界面附近,Hohlraums和Hohlraums和Fralraums中的激光入口孔(LEH)区域的数值处理难以困难。 例如,最近的研究专注于与重新划分的边界的ALE方法,以模拟LEH窗口运动和窗口和LEH边缘之间的滑动接触。 我们提出了一种基于包含包装围绕的非常低密度网结构来处理这些边界并发症的技术。 包括额外的ALE重新划分功能,例如材料区域加权以保持数值精度。 我们展示了使用我们技术运行到延迟时间的ALE仿真的能力,具有很少的用户干预。 我们将模拟结果与来自海伦和Omega激光器的两个和三维半实验的实验数据进行基准测试。

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