来自ITER XRCS-Core诊断器合成模型的结果,该模型基于高准确度的X射线射线跟踪
N A Pablant1, Z Cheng2, M O'Mullane3
1Princeton Plasma Physics Laboratory, 100 Stellarator Road, Princeton, New Jersey 08543, USA.
The Review of scientific instruments
|August 6, 2024
概括
为ITER创建了一个高保真度合成诊断器.
科学领域:
- 核聚变能源的研究.
- 血物理学的等离子体物理学
- 在X射线光谱学中,
背景情况:
- ITER核心X射线晶体光谱仪 (CXRS) 诊断需要精确的性能建模.
- X射线射线追踪是模拟诊断行为的关键技术.
研究的目的:
- 为ITER CXRS.开发一个高保真度的合成诊断器.
- 在CXRS诊断的设计和工程中提供帮助.
- 为了预测CXRS诊断的性能.
主要方法:
- 使用X射线光线跟踪与"xicsrt"的代码.
- 使用CAD数据开发了诊断的3D模型.
- 基于ITER运行场景的特定离子 (Xe44+,Xe47+,Xe51+) 的模拟等离子排放配置文件.
- 嵌入式组件:等离子体几何,烧解石墨预反射器,曲晶体和X射线探测器.
主要成果:
- 产生了一个合成探测器图像,与预期的现实世界输出密切匹配.
- 在整个光线追踪过程中保存了光子统计数据.
- 启用了用于诊断的定量性能估计.
结论:
- 开发的合成诊断器为ITER CXRS设计和性能评估提供了可靠的工具.
- 高准确度建模确保了对诊断输出的准确预测.
- 这种方法有助于优化工程公差和诊断设计.
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