SKIF SYNCHROTRON 的现场振动评估

P. Dergach, G. N. Baranov, K. Karyukina, A. N. Drobchik, A. Yablokov
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摘要

西伯利亚环光子源(SKIF)是目前正在俄罗斯科尔索沃市建设的第四代新型同步辐射光源。现代同步辐射光源的光束稳定性以低发射率为特征,对微小的地面振动非常敏感。我们评估了在 SKIF 施工现场记录到的来自外部的地震噪声变化。在 1-20 赫兹的频率范围内,垂直和水平记录分量的传输系数分别为 0.38 和 0.725。在 20-100 赫兹的频率范围内,分别为 0.12 和 0.06。实验数据分析表明,在 2-100 Hz 频率范围内,从地面向 SKIF 储存环地下室传输振动时,能有效抑制高振幅外部噪声。为地下室确定的系数与设计模型十分吻合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Site-vibration assessment for the SKIF SYNCHROTRON
The Siberian ring source of photons (SKIF) is a new fourth-generation synchrotron light source currently under construction in Koltsovo city, Russia. The beam stability of modern synchrotron sources, characterized by low emittance, is sensitive to insignificant levels of ground vibrations. We assessed the seismic noise variation from external sources recorded at the construction site of the SKIF. For the frequency range 1–20 Hz, the transmission coefficients for the vertical and horizontal recording components were 0.38 and 0.725, respectively. In the frequency range 20–100 Hz – 0.12 and 0.06, respectively. Analysis of experimental data shows the effectiveness of suppressing high-amplitude external noise in the frequency range of 2-100 Hz when transmitting vibrations from the ground to the SKIF storage ring basement. The coefficients determined for the basement match well with the design model.
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