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ACOMS+ 및 학술지 리포지터리 설명회

  • 한국과학기술정보연구원(KISTI) 서울분원 대회의실(별관 3층)
  • 2024년 07월 03일(수) 13:30
 

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수치해석을 통한 급곡선 구간 Shield TBM의 중절잭 및 스킨플레이트 구조에 관한 연구

Study on the structure of the articulation jack and skin plate of the sharp curve section shield TBM in numerical analysis

(사)한국터널지하공간학회 / (사)한국터널지하공간학회, (P)2233-8292; (E)2287-4747
2017, v.19 no.3, pp.421-435
https://doi.org/10.9711/KTAJ.2017.19.3.421
강신현 ((주)이엠코리아)
김동호 (이엠코리아㈜ TBM사업본부 본부장)
김훈태 (이엠코리아㈜ TBM사업본부 과장)
송승우 (이엠코리아㈜ TBM사업본부 대리)

Abstract

Recently, due to the saturation of ground structures and the overpopulation of pipeline facilities requires to development of underground structures as an alternative to ground structures. Thus, mechanized tunnel construction of the shield TBM method has been increasing in order to prevent vibration and noise problems in construction of the NATM tunnel for the urban infrastructure construction. Tunnel construction plan for the tunnel line should be formed in a sharp curve to avoid building foundation and underground structures and it is inevitable to develop a shield TBM technology that suits the sharp curve tunnel construction. Therefore, this study is about the structural stability technology of the articulation jack, shield jack and skin plate for the shield TBM thrust in case of the mechanized tunnel construction that is a straight and sharp curve line. The construction case study and shield TBM operation principle are examined and analyzed by the theoretical approach. The torque of the cutter head, the thrust of the articulation jack and the shield jack, the amount of over cutting for curve is important respectively in shield TBM construction of straight and sharp curve line. In addition, it is very important to secure the stability of the skin plate structure to ensure the safety of the inside worker. This study examines the general structure and construction of the equipment, experimental simulation was carried out through numerical analysis to examine the main factors and structural stability of the skin plate structure. The structural stability of the skin plate was evaluated and optimizes the shape by comparing the loads of the articulation jack by selecting the virtual soil to be applied in a straight and sharp curve line construction. Since the present structure and operation method of the shield TBM type in domestic constructions are very similar, this study will help to develop the localized shield TBM technology for the new equipment and the vulnerability and stability review.

keywords
TBM, Shield TBM, Sharp Curve, Articulation Type, Articulation Jack, Shield Jack, Thrust, Excavation, TBM, Shield TBM, 급곡선, 중절 타입, 중절 잭, 쉴드 잭, 추력, 굴진

참고문헌

1.

1. Kang, S.O., Kim, H., Kim,Y.M., Kim, S.H. (2017) “Application technique on thrust jacking pressure of shield TBM in the sharp curved tunnel alignment by model tests”, Journal of Korean Tunneling and Underground Space Association,Vol. 19, No. 2, pp. 335-353.

2.

2. Kim, H., Yoon, H.D., Jeon, S.I. (2002), “The case study on a sharp turn of large diameter shield tunnel”, Proceedings of Symposium on the Mechanized Tunneling Techniques, Seoul, pp. 79-90.

3.

3. Chang, S.H., Choi, S.W., Park, Y.T., Lee, G.P., Bae, G.J. (2013), “Experimental evaluation of the effects of cutting ring shape on cutter acting forces in a hard rock”, Journal of Korean Tunnelling and Underground Space Association, Vol. 15, No. 3, pp. 225-235.

4.

4. Japanese Geotechnical Society (2015), Shield TBM method, CIR, Seoul, pp. 177, 474.

5.

5. Bae, G.J., Choi, S.W., Chang, S.H., Lee, G.P., Song, B.C., Kim, K.B. (2015), “Analysis of inner parts in the disc cutters applied to the field tests”, Journal of Korean Tunnelling and Underground Space Association, Vol. 17, No. 4, pp. 473-485.

6.

6. Bae, G.J., Chang, S.H., Choi, S.W., Kang, T.H., Kwon, J.Y., Shin, M.S. (2015), “Refurbishment of a 3.6m earth-pressure balanced shield TBM with a domestic cutterhead and its field verification”, Journal of Korean Tunnelling and Underground Space Association, Vol. 17, No. 4, pp. 457-471.

7.

7. Cho, J.W., Yu, S.H., Jeon, S.W., Chang, S.H. (2008), “Numerical study on rock fragmentation by TBM disc cutter”, Journal of Korean Tunnelling and Underground Space Association, Vol. 10, No. 2, pp. 139-152.

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