响应谱表示的NSTXU诊断破坏动态载荷

IF 1.6 4区 物理与天体物理 Q3 PHYSICS, FLUIDS & PLASMAS IEEE Transactions on Plasma Science Pub Date : 2024-11-01 DOI:10.1109/TPS.2024.3399467
Peter H. Titus;Han Zhang;J. Fang;A. Brooks;A. Khodak
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引用次数: 0

摘要

本文介绍了NSTXU真空容器上涡流破坏载荷的瞬态动态模拟结果。诊断安装位置的动态载荷表示为响应谱,该响应谱来源于各种破坏情景的动态结构模拟的时程结果。中断模拟利用了特定组件的最坏情况中断的项目评估历史。评估破坏载荷的主要工作包括真空容器,这是该机器的主要结构支撑,以及被动板(PPs)、高谐波快波(HHFW)天线和中央堆套管。这些工作中的每一项都包括瞬变电磁模拟,产生时变涡流洛伦兹载荷(在某些情况下是晕载荷),然后将其应用于时变结构动力学分析,以获得适当的动态放大因子。在某些情况下,电磁模型和结构模型是相同的,允许电磁力直接传递到结构模型。在其他情况下,EM和结构模型不相同,使用向量势(VP)传递法。这些分析的结果文件可在ANSYS Classic时间历史后处理程序中进行后处理(或重新运行)。ANSYS命令用于根据船舶上所需点的时间历史数据创建响应谱。
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NSTXU Diagnostic Disruption Dynamic Loading Represented by Response Spectra
This article presents the results of transient dynamic simulations of loads due to disruption eddy currents on the NSTXU vacuum vessel. Dynamic loading at diagnostic mounting locations is expressed as response spectra derived from the time history results of the dynamic structural simulations of a variety of disruption scenarios. The disruption simulations draw on a history of the project assessments of worst case disruptions for specific components. Major efforts to assess disruption loading have included the vacuum vessel which is the major structural support for the machine, as well as the passive plates (PPs), high harmonic fast wave (HHFW) antenna, and centerstack casing. Each one of these efforts included transient electromagnetic simulations producing time-dependent eddy current Lorentz loads (and in some cases halo loads) which then were applied to time-dependent structural dynamic analyses intended to obtain the proper dynamic amplification factors. In some instances, the EM model and structural model were identical allowing direct transfer of EM forces to the structural model. In other cases, the EM and structural model were not identical and the vector potential (VP) transfer method was used. The results files from these analyses were available (or re-run) to post process in ANSYS Classic time history postprocessor. The ANSYS command is used to create response spectra from time history data at desired points on the vessel.
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来源期刊
IEEE Transactions on Plasma Science
IEEE Transactions on Plasma Science 物理-物理:流体与等离子体
CiteScore
3.00
自引率
20.00%
发文量
538
审稿时长
3.8 months
期刊介绍: The scope covers all aspects of the theory and application of plasma science. It includes the following areas: magnetohydrodynamics; thermionics and plasma diodes; basic plasma phenomena; gaseous electronics; microwave/plasma interaction; electron, ion, and plasma sources; space plasmas; intense electron and ion beams; laser-plasma interactions; plasma diagnostics; plasma chemistry and processing; solid-state plasmas; plasma heating; plasma for controlled fusion research; high energy density plasmas; industrial/commercial applications of plasma physics; plasma waves and instabilities; and high power microwave and submillimeter wave generation.
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