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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Two-way multi-physics coupling for modeling high power RbCl isotope production targets
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Two-way multi-physics coupling for modeling high power RbCl isotope production targets

机译:用于高功率RbCl同位素生产目标建模的双向多物理场耦合

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摘要

This work shows successful first application of two-way multi-physics coupling to model RbCl targets in a three-stacked target configuration used at Los Alamos National Laboratory's (LANL) Isotope Production Facility (IPF). Targets are known to melt at production level beam currents and as in-beam monitoring of the targets in this configuration is not possible, high-fidelity simulation has been utilized to gain insight into target thermal behavior. Thermal hydraulic modeling was performed with ANSYS CFX and particle transport with the Monte Carlo N-Particle (MCNP) code. Multi-physics coupling of these two codes was employed to fully capture the highly coupled nature of the problem physics. Both transient and equilibrium thermal hydraulic results were obtained using this process. The equilibrium thermal hydraulic results were then employed to predict measured Sr-82 yields in molten RbCl targets. This technique demonstrates promise as a tool to investigating, understanding, and enhancing high power targetry behavior and limitations.
机译:这项工作表明,双向多物理场耦合成功地首次应用在洛斯阿拉莫斯国家实验室(LANL)同位素生产设施(IPF)所使用的三层靶结构中,对RbCl目标进行建模。已知目标会在生产水平的电子束电流下熔化,并且由于无法在此配置下对目标进行光束内监视,因此已使用高保真度仿真来深入了解目标的热行为。使用ANSYS CFX进行热力水力建模,并使用Monte Carlo N-Particle(MCNP)代码进行粒子传输。这两个代码的多物理场耦合被用来完全捕获问题物理场的高度耦合本质。使用此过程可获得瞬态和平衡热工水力结果。然后将平衡热力水力结果用于预测熔融RbCl目标中测得的Sr-82产率。该技术证明了有望作为研究,理解和增强大功率目标制导弹药行为和局限性的工具。

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