DOI QR코드

DOI QR Code

불연속체 동해석 기법을 이용한 발파진동 영향평가

Assessment of Blast-induced Vibration Using Dynamic Distinct Element Analysis

  • 발행 : 2005.12.01

초록

Since blast-induced vibration may cause serious problem to the rock mass as well as the nearby structures, the prediction of blast-induced nitration and the stability evaluation must be performed before blasting activities. Dynamic analysis has been increased recently in order to analyze the effect of the blast-Induced vibration. Most of the previous studies, however, were based on the continuum analysis unable to consider rock joints which significantly affect the wave propagation and attenuation characteristics. They also adopted pressure corves estimated tv theoretical or empirical equations as input detonation load, thus there were very difficult to reflect the characteristics of propagating media. In this study, therefore, we suggested a dynamic distinct element analysis technique which uses velocity waveform obtained from a test blast as an input detonation load. A distinct element program, UDEC was used to consider the effect of rock joints. In order to verify the validity of proposed method, the test blast was simulated. The predicted results from the proposed method showed a good agreement with the measured vibration data from the test blast. Through the dynamic numerical modelling on the planned road tunnel and slope, we evaluated the effect of blast-induced nitration and the stability of rock slope.

키워드

참고문헌

  1. 이연수, 장서일, 2004, '도심지 발파공사장의 발파진동 특성', 한국소음진동공학회논문집, 제14권, 제7호, pp. 632-638
  2. 김남수, 양형식, 2001, '발파진동의 예측기법과 환경규제 기준으로의 변환 연구', 한국암반공학회지, 터널과 지하공간, 제11권, 제1호, pp. 14-19
  3. Liu, Q. and Tidman, J. P., 1995, 'Estimation of the Dynamic Pressure Around a Fully Loaded Blasthole', MRL 95-014 Technical Report, CANMET/ MRL Experimental Mine
  4. Jiang, J. J., Blair, D. P. and Baird, G. R., 1993, 'Surface Vibrations due to a Buried Explosive Source', Proc. 4th Int. Symp. on Rock Fragmentation by Blasting, pp. 89-96
  5. 전석원, 박의섭, 김현우, 박병기, 2001, '발파진동에 의한 구조물 동적영향 평가, 연구보고서,' 서울대학교 암반공학연구실
  6. 최성웅, 박의섭, 선우춘, 정소걸, 2004, '실측진동파형을 이용한 발파 동해석 기법에 관한 연구', 한국암반공학회지, 터널과 지하공간, 제14권, 제2호, pp. 108-120
  7. Park, B. K., Jeon, S., Kim, H. W., Park, E. S., Lee, D. H., Lee, H. W. and Cho, T. C, 2005, 'A Numerical Method for Estimating Blast-induced Vibration Using Particle Velocity Measurement', Proceedings of EUROCK 2005, pp. 433-439
  8. Pyrak-Nolte, L. J., 1998, 'Seismic Visibility of Fractures', Ph. D. Dissertation, University of California, Berkeley
  9. Myer, L. R., Pyrak-Nolte, L. J. and Cook, N. G. W., 1990, 'Effects of Single Fractures on Seismic Wave Propagation', Proceedings of the International Symposium on Rock Joints, Rotterdam, pp. 413-422
  10. 전석원, 박의섭, 김현우, 박병기, 2001, '제어발파기법을 이용한 구조물 발파해체기술 개발 - 제어발파 설계모델 개발. 위탁연구보고서', 한국지질자원연구원
  11. Chen, S. G. and Zhao, J., 1998, 'Technical Note-a Study of UDEC Modelling for Blast Wave Propagation in Jointed Rock Masses', Int. J. Rock Mech. Sci., Vol.35, No.1, pp.93-99 https://doi.org/10.1016/S0148-9062(97)00322-7
  12. Golder Associates, 1998, 'Fracman-user Documentation', Program Manual
  13. Kuhlemeyer, R. L. and Lysmer, J., 1973. 'Finite Element Method Accuracy for Wave Propagation Problems', J. Soil Mech. & Foundation Div., ASCE, 99(SM5), pp. 421-427