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Investigation of the dynamic behavior of the ITER tokamak assembly using a 1/5.8-scale model

机译:使用1 / 5.8级模型对迭代托卡马克组件的动态行为研究

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The dynamic behavior of the ITER tokamak assembly has been investigated, using a 1/5.8-scale model In the static load test, the observed deformations and stresses were confirmed to be linearly proportional to the applied loads. In the vibration test, the first and third eigen-modes corresponded to horizontal vibration modes, with natural frequencies of about 29 and 81 Hz, respectively. The global-twisting and oval modes were found to be in the second and forth modes, with frequencies of about 60 and 86 Hz, respectively. A comparison of experimental and analytical results showed that the deflections and the induced stresses in the analysis were approximately half of those found in the experiment. Natural frequencies have also been compared. The frequency in the first mode was almost the same for both the experiment and the analysis. However, in higher vibration modes, the natural frequencies in the experiment were found to be smaller than those in the analysis. To further examine the dynamic behavior of the coil structure, a vibration test of the entire sub-scale model is planned using the vibration stage rather than the shaker.
机译:的ITER托卡马克的动态行为组件已被研究,使用1 / 5.8尺度模型在静态负荷试验,观察到的变形和应力被证实为线性正比于所施加的载荷。在振动试验中,第一和第三本征模式分别对应于水平方向的振动模式,具有约29和81赫兹的固有频率。全球捻和椭圆形模式被认为是在第二和第四模式下,用约60和86赫兹的频率,分别。的实验和分析的结果的比较表明,在分析的偏转和诱导应力约为一半那些在实验中发现的。固有频率也进行了比较。在第一模式的频率几乎是用于实验和分析都相同。然而,在较高的振动模式,在实验的固有频率被认为是比在分析小。为了进一步检查所述线圈结构的动态行为,整个子尺度模型的振动试验使用的振动级,而不是所述摇床计划。

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