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Thermomechanical analysis of a user filter assembly for undulator/wiggler operations at the Advanced Photon Source

机译:用于高级光子源的波荡器/摇摆器操作的用户滤波器组件的热机械分析

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Abstract: This paper reports a thermo-mechanical study of a beamline filter for undulator/wiggler operations.It is deployed in conjunction with the current commissioning window assembly on the APS insertion device (ID) front ends. The beamline filter at the APS will eventually be used in windowless operations also. Hence survival and reasonable life expectancy of the filters under intense ID heat flux are crucial to the beamline operations. To accommodate various user requirements, the filter is configured to be a multi- choice type and 'smart' to a low only those filter combinations that will be safe to operate with a given ring current and beamline insertion device gap. However, this paper addresses only the thermo-mechanical analysis of individual filter integrity and safety in all combinations possible. The current filter design is configured to have four filter frames in a cascade with each frame holding five filters. This allows a potential 625 total filter combinations. Thermal analysis for all of these combinations becomes a mammoth task considering the desired choices for filter materials, filter thicknesses, undulator gaps, and the beam currents. The paper addresses how this difficult task has been reduced to a reasonable effort and computational level. Results from thermo-mechanical analyses of the filter combinations are presented both in tabular and graphical format. !12
机译:摘要:本文报告了用于波动器/摇摆器操作的束线滤波器的热机械研究,它与APS插入设备(ID)前端上的当前调试窗口组件一起部署。 APS的光束线滤波器最终也将用于无窗操作。因此,在强内径热通量下,滤光片的寿命和合理的预期寿命对光束线的运行至关重要。为了适应各种用户需求,滤波器被配置为多选型,并且“智能”地降低了那些滤波器的组合,这些滤波器在给定的环形电流和束线插入设备间隙下可以安全运行。但是,本文仅以所有可能的组合方式对单个过滤器的完整性和安全性进行热机械分析。当前的滤波器设计被配置为具有级联的四个滤波器框架,每个框架包含五个滤波器。这样可以实现总共625个过滤器组合。考虑到滤波器材料,滤波器厚度,波状起伏器间隙和电子束电流的理想选择,所有这些组合的热分析成为一项艰巨的任务。本文介绍了如何将这项艰巨的任务减少到合理的工作量和计算水平。过滤器组合的热机械分析结果以表格和图形形式显示。 !12

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