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Comparison of Performance with Backfill Inclination Slope and Shape in Railway Abutment and Transitional Zone Using Centrifuge Model Tester

원심모형실험기를 이용한 철도 교대접속부 배면 기울기 및 형상에 따른 성능비교

  • Choi, Chan-Yong (High Speed Research Division, Korea Railroad Resarch Institute) ;
  • Kim, Hun-Ki (High Speed Research Division, Korea Railroad Resarch Institute) ;
  • Park, Jung-Hyun (Department of Civil Engineering, Inha University)
  • Received : 2017.12.14
  • Accepted : 2018.03.12
  • Published : 2018.03.30

Abstract

A existing standard design section of transitional zone between bridge and earthwork section in high speed railway should be designed to gradually change support stiffness from bridge abutment to backfill side that were placed on cemented stabilized gravel, general gravel, soil materials. The larger the backfill slope of the general gravel and soil was more structurally stable, but there is no clear reason about them. In this study, it was compared with settlement and bearing capacity of backfill area in currently design and alternating backfill slope section using large centrifuge tester. As the experimental results, it was showed that the 1:2 slope and 1:1.5 slope have almost similar bearing capacity behavior under the load stage as railway loading level.

현행 고속철도 교대 접속부 표준단면은 교대배면에서부터 시멘트안정처리골재, 일반골재, 토공부로 하부 지지강성이 점진적으로 변화하도록 설계하고 있다. 일반골재와 토공부의 배면기울기는 기울기가 클수록 구조적으로 안정적이지만 이에 대한 명확한 기준이 없다. 따라서 본 논문에서는 대형 원심모형실험기를 이용하여 교대 뒤채움 배면구간의 토공과 일반골재의 기울기를 변화하여 현행 표준단면과 침하 및 지지력 특성을 비교하였다. 실험결과 철도하중이 경험하는 하중단계에서는 1:2단면과 1:1.5 기울기 단면이 거의 유사한 성능을 가지고 있는 것으로 평가되었다.

Keywords

References

  1. Bowe, C. (2009), Dynamic Interaction of Trains and Railway Bridges Using Wheel Rail Contact Method, Ph.D. thesis, National University of Ireland Galway.
  2. Bolton, M.D. and Lau, C.K. (1988), "Scale effects arising from particle size", Proceedings of the International Conference on Geotechnical Centrifuge Modelling (Centrifuge88), 127-132.
  3. Choi, C.Y., Kim, H.K., Chung, K. Y. and Yang, S. B. (2015). "Train-Structure Dynamic Interaction Analysis of The Bridge Transition Considering Track Irregularity". Journal of the Korean Geotechnical Society, 31(9): 29-38. https://doi.org/10.7843/kgs.2015.31.9.29
  4. Choi, I.Y., Um, J.H., and Kim, M.C. (2013), "Analysis of the Influence of Track Alignment on Ride Comfort and Safety of KTX", Journal of The Korean Society for Railway, 16(2): 110-116. https://doi.org/10.7782/JKSR.2013.16.2.110
  5. Eum, K.Y., Kim, Y.H., and Kim, J.W. (2013), "Study on Dynamic Characteristics of Structure Approaches by Train Moving Loads", Journal of The Korean Society for Railway, 15(4): 298-304.
  6. Hou, Y. J., Xu, Z. P. and Liang, J. H. (2004) Centrifuge modeling of cutoff wall for CFRD built in deep overburden. Proc. of Int. Conf. of Hydropower, Yichan, China, pp.86-92.
  7. Kim. D.S, Ha. J.G, Lee. S. H, Choo. Y.W, Kim. S. H. (2012), "Simulation of Dynamic in-situ Soil Properties for the Centrifuge Test (Hualien Site in Taiwan)", Journal of the Earthquake Engineering Society of Korea, Vol.16 No.4 pp.27-36 https://doi.org/10.5000/EESK.2012.16.4.027
  8. Kim, D.S., Kim, N.R., Choo, Y.W., and Cho G.C. (2013), "Newly Developed State-of-the-Art Geotechnical Centrifuge in Korea", KSCE Journal of Civil Engineering, 17(1): 77-84. https://doi.org/10.1007/s12205-013-1350-5
  9. Paixao. A., Fortunato, E. and Calcada, R. (2014), "Transition Zones to Railway Bridges: Track Measurements and Numerical Modelling", Engineering Structures, 80(1): 435-443. https://doi.org/10.1016/j.engstruct.2014.09.024
  10. Shan, Y., Albers, B., and Savidi, S.A. (2013), "Influence of Different Transitions Zones on the Dynamic Response", Computers and Geotechnics, 48: 21-28. https://doi.org/10.1016/j.compgeo.2012.09.006
  11. UIC 719R (Ed. 3) (2008), Earthworks And Track Bed Construction For Railway Lines Describes earthworks and track beds for ballasted track, UIC code.
  12. Yoo, C.H, Choi, C.Y, Yang, S.H (2016), "Comparison of Construction Cost and External Stability of Railway Abutment wall with Friction Angle of Backfill Materials", Journal of the Korean Geosynthetics Society, Vol.5, No.3, 67-76.