Mechanical Behavior and Cracking Characteristics of Tunnel Lining by Model Experiment

모형 실험에 의한 터널 복공의 역학적 거동 및 균열 특성에 관한 연구

  • 이대혁 (서울대학교 대학원 자원공학과 박사학위) ;
  • 김영근 ((주)대우 건설기술연구소 토목연구실) ;
  • 이희근 (서울대학교 자원공학과)
  • Published : 1998.03.01

Abstract

Considering the mechanical cracking in the concrete lining of tunnels occurring in relatively short period of time after the construction, there is a need for the study on the mechanical behavior and the cracking characteristics of double lining support system(shotcrete and concrete lining). For the proposed study, downscaled lining models of Kyung-Bu High Speed Railway tunnels were tested. Most longitudinal cracks at about 93 percentage developed within 30 arch degree from the vault. Cracking load was about 30 percentage of the failure load and the deflection under the cracking load was 10 percentage of the deflection under the failure load. The overbreak around the vault contributed to the reduction of the capacity for cracking and failure by the percentage greater than the reduced effective depth. Of several rock block types considered in this research, the triangular block was the most critical, and the right triangular block under eccentric load was secondly critical for the stability of the tunnel lining system. The dimensionless support reaction curves were derived from the experimental results for single and double lining. The general equation to compute the designed flexural moment was modified.

Keywords

References

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