Modeling and measurement of the motion of the DIII-D vacuum vessel during vertical instabilities

E. Reis, R. Blevins, T. Jensen, J. Luxon, P. Petersen, E. Strait
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Abstract

The motions of the DIII-D vacuum vessel during vertical instabilities of elongated plasmas have been measured and studied over the past five years. The currents flowing in the vessel wall and the plasma scrapeoff layer were also measured and correlated to a physics model. These results provide a time history load distribution on the vessel which was input to a dynamic analysis for correlation to the measured motions. The structural model of the vessel using the loads developed from the measured vessel currents showed that the calculated displacement history correlated well with the measured values. The dynamic analysis provides a good estimate of the stresses and the maximum allowable deflection of the vessel. In addition, the vessel motions produce acoustic emissions at 21 Hz that are sufficiently loud to be felt as well as heard by the DIII-D operators. Time history measurements of the sounds were correlated to the vessel displacements. An analytical model of an oscillating sphere provided a reasonable correlation to the amplitude of the measured sounds.<>
DIII-D真空容器在垂直不稳定状态下的运动建模与测量
在过去的五年中,我们测量和研究了DIII-D真空容器在细长等离子体垂直不稳定期间的运动。还测量了血管壁和等离子体剥离层内的电流,并与物理模型相关联。这些结果提供了船舶上的时间历史载荷分布,并将其输入到与测量运动相关的动态分析中。利用实测船舶流荷载建立的船舶结构模型表明,计算位移历史与实测值吻合良好。动态分析提供了一个很好的估计应力和最大允许挠度的容器。此外,船舶运动产生21hz的声发射,足以让DIII-D操作员感受到和听到。声音的时间历史测量与血管位移相关。一个振动球体的解析模型提供了与测量声音振幅的合理关联
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