Preview

Russian Journal of Geophysical Technologies

Advanced search

Site-vibration assessment for the SKIF SYNCHROTRON

https://doi.org/10.18303/2619-1563-2023-4-64

Abstract

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.

About the Authors

P. A. Dergach
Trofimuk Institute of Petroleum Geology and Geophysics SB RAS; Novosibirsk State University
Russian Federation

Koptyug Ave., 3, Novosibirsk, 630090, Russia; 
Pirogova Str., 1, Novosibirsk, 630090, Russia



G. N. Baranov
Trofimuk Institute of Petroleum Geology and Geophysics SB RAS; Budker Institute of Nuclear Physics SB RAS; Synchrotron Radiation Facility SKIF, Boreskov Institute of Catalysis SB RAS
Russian Federation

Koptyug Ave., 3, Novosibirsk, 630090, Russia; 
Lavrentiev Ave., 11, Novosibirsk, 630090, Russia: 
Nikolskiy Ave., 1, Koltsovo, Novosibirsk Region, 630559, Russia



K. Yu. Karyukina
Trofimuk Institute of Petroleum Geology and Geophysics SB RAS; Budker Institute of Nuclear Physics SB RAS; Synchrotron Radiation Facility SKIF, Boreskov Institute of Catalysis SB RAS
Russian Federation

Koptyug Ave., 3, Novosibirsk, 630090, Russia; 
Lavrentiev Ave., 11, Novosibirsk, 630090, Russia: 
Nikolskiy Ave., 1, Koltsovo, Novosibirsk Region, 630559, Russia

 



A. N. Drobchik
Trofimuk Institute of Petroleum Geology and Geophysics SB RAS
Russian Federation

Koptyug Ave., 3, Novosibirsk, 630090, Russia



A. V. Yablokov
Trofimuk Institute of Petroleum Geology and Geophysics SB RAS; Novosibirsk State University
Russian Federation

Koptyug Ave., 3, Novosibirsk, 630090, Russia; 
Pirogova Str., 1, Novosibirsk, 630090, Russia



References

1. Aki K., Richards P.G. Quantitative seismology. Second edition. – University Science Books, 2002.

2. Balmer J.A., Holder D.J., Owen H.L. Measurement of ground vibrations and calculation of their effect on the DIAMOND light source // Proceeding of EPAC. – Vienna, Austria, 2000. – P. 2328–2330.

3. Baranov G., Bogomyagkov A., Morozov I., Sinyatkin S., Levichev E. Lattice optimization of a fourth-generation synchrotron radiation light source in Novosibirsk // Physical Review Accelerators and Beams. – 2021. – Vol. 24 (12). – Article 120704, doi: 10.1103/PhysRevAccelBeams.24.120704.

4. Baranov G.N., Dergach P.A., Karyukina K.Yu., Pavlyuchenko V.A., Levichev E.B. Analysis of the stability of the beam orbit of the synchrotron radiation source of the SKIF Center for Collective Use // Journal of Technical Physics. – 2023. – Vol. 93 (11). – P. 1653–1662.

5. Bormann P., Wielandt E. Seismic signals and noise // New manual of seismological observatory practice 2 (NMSOP2). – Deutsches GeoForschungsZentrum GFZ, 2013. – P. 1–62.

6. Dergach P.A., Tubanov T.A., Yushin V.I., Duchkov A.A. Features of software implementation of low-frequency deconvolution algorithms // Seismic Instruments. – 2019. – Vol. 55 (3). – P. 345–352, doi:

7. Emanov A.A., Emanov A.F., Levichev E.B., Solovyev V.M., Churkin I.N., Korabelshchikov D.T., Sinyatkin S.V., Yankaitis V.V., Piminov P.A., Bakh A.A., Baranov G.N., Fateev A.V., Karyukina K.Yu., Polyansky P.O., Durachenko A.V., Serezhnikov N.A., Gladyshev E.A., Arapov V.V., Shevkunova E.V., Antonov I.A., Ershov

8. R.A. A study of seismic impacts on the construction site of the SRF SKIF // Seismic Instruments. – 2022. – Vol. 58 (6). – P. 635–662, doi: 10.3103/S0747923922060044.

9. Huang H., Kay J. Vibration measurement at diamond and the storage ring // Proceeding of EPAC. – Edinburg, Scotland, 2006. – P. 3338–3340.

10. Ravindranath V., Sharma S., Doom L., Chaning C., Lincoln F., Jain A., Joshi P. Stability of NSLS-II girder– magnet assembly // Diamond Light Source Proceedings. – 2010. – Vol. 1 (MEDSI-6). – P. e47, doi: 1. Aki K., Richards P.G. Quantitative seismology. Second edition. – University Science Books, 2002.

11. Balmer J.A., Holder D.J., Owen H.L. Measurement of ground vibrations and calculation of their effect on the DIAMOND light source // Proceeding of EPAC. – Vienna, Austria, 2000. – P. 2328–2330.

12. Baranov G., Bogomyagkov A., Morozov I., Sinyatkin S., Levichev E. Lattice optimization of a fourth-generation synchrotron radiation light source in Novosibirsk // Physical Review Accelerators and Beams. – 2021. – Vol. 24 (12). – Article 120704, doi: 10.1103/PhysRevAccelBeams.24.120704.

13. Baranov G.N., Dergach P.A., Karyukina K.Yu., Pavlyuchenko V.A., Levichev E.B. Analysis of the stability of the beam orbit of the synchrotron radiation source of the SKIF Center for Collective Use // Journal of Technical Physics. – 2023. – Vol. 93 (11). – P. 1653–1662.

14. Bormann P., Wielandt E. Seismic signals and noise // New manual of seismological observatory practice 2 (NMSOP2). – Deutsches GeoForschungsZentrum GFZ, 2013. – P. 1–62.

15. Dergach P.A., Tubanov T.A., Yushin V.I., Duchkov A.A. Features of software implementation of low-frequency deconvolution algorithms // Seismic Instruments. – 2019. – Vol. 55 (3). – P. 345–352, doi:

16. Emanov A.A., Emanov A.F., Levichev E.B., Solovyev V.M., Churkin I.N., Korabelshchikov D.T., Sinyatkin S.V., Yankaitis V.V., Piminov P.A., Bakh A.A., Baranov G.N., Fateev A.V., Karyukina K.Yu., Polyansky P.O., Durachenko A.V., Serezhnikov N.A., Gladyshev E.A., Arapov V.V., Shevkunova E.V., Antonov I.A., Ershov

17. R.A. A study of seismic impacts on the construction site of the SRF SKIF // Seismic Instruments. – 2022. – Vol. 58 (6). – P. 635–662, doi: 10.3103/S0747923922060044.

18. Huang H., Kay J. Vibration measurement at diamond and the storage ring // Proceeding of EPAC. – Edinburg, Scotland, 2006. – P. 3338–3340.

19. Ravindranath V., Sharma S., Doom L., Chaning C., Lincoln F., Jain A., Joshi P. Stability of NSLS-II girder– magnet assembly // Diamond Light Source Proceedings. – 2010. – Vol. 1 (MEDSI-6). – P. e47, doi: 10.1017/S2044820110000675

20. Simos N., Amick H., Soueid A., Fallier M. NSLS-II ground vibration stability studies and design implementation // Synchrotron Radiation News. – 2019. – Vol. 32 (5). – P. 4–12, doi: 10.1080/08940886.2019.1654826.

21. Simos N., Amick H., Soueid A., Fallier M. NSLS-II ground vibration stability studies and design implementation // Synchrotron Radiation News. – 2019. – Vol. 32 (5). – P. 4–12, doi: 10.1080/08940886.2019.1654826.


Review

For citations:


Dergach P.A., Baranov G.N., Karyukina K.Yu., Drobchik A.N., Yablokov A.V. Site-vibration assessment for the SKIF SYNCHROTRON. Russian Journal of Geophysical Technologies. 2023;(4):64-74. (In Russ.) https://doi.org/10.18303/2619-1563-2023-4-64

Views: 367


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 2619-1563 (Online)