All Issue

2024 Vol.34, Issue 2 Preview Page

Original Article

30 April 2024. pp. 154-168
Abstract
References
1

Barzegari, G., Khodayari, J., and Rostami, J., 2021, Evaluation of TBM cutter wear in Naghadeh water conveyance tunnel and developing a new prediction model, Rock Mechanics and Rock Engineering, 54, 6281-6297.

10.1007/s00603-021-02640-7
2

Bruland, A., 1998, Hard rock tunnel boring. Ph.D. Dissertation, Norwegian University of Science and Technology.

3

Choi, Y.S., Jeong, H., and Kim, J.J., 2023, Examining the Influence of TBM Chamber Condition and Transmission Distance on the Received Strength of Bluetooth Low Energy Signals: A Laboratory Simulation Experiment, Tunnel and Underground Space, 33(5), 425-434.

4

Edelmann, T. and Herrenknecht, A.G., 2013, Monitoring of cutting tools in TBM's, In: 2013 Tunneling research in Leoban (Schwanau and Bochum Workshop).

5

Gehring, K., 1995, Prognosis of advance rates and wear for underground mechanized excavations (in German), Felsbau, 13(6), 439-448.

6

Gong, Q., Wu, F., Wang, D., Qiu, H., and Yin, L., 2021, Development and Application of Cutterhead Working Status Monitoring System for Shield TBM Tunnelling, Rock Mechanics and Rock Engineering, 54, 1731-1753.

10.1007/s00603-021-02380-8
7

Guo, J., Wang, Y., Liu, J., and Niu, J., 2013, The Research and Design of A New Shield Cutter Wear Detection System, Advanced Materials Research, 711, 381-384.

10.4028/www.scientific.net/AMR.711.381
8

Jeong, H.Y., Lee, S.D., and Jeon, S.W., 2014, Estimation of design parameters of TBM using punch penetration and Cerchar abrasiveness test, Journal of Korean Tunnelling and Underground Space Association, 16(2), 237-248.

10.9711/KTAJ.2014.16.2.237
9

Kang, T.H., Choi, S.W., Lee, C., and Chang, S.H., 2022, A study on the prediction of disc cutter wear using TBM data and machine learning algorithm, Tunnel and Underground Space, 32(6), 502-517.

10

Kim, D.Y., Shin, Y.J., Jung, J.H., and Kang, H.B., 2018, Case study: application of NAT(New Abration Tester) for predicting TBM disc cutter wear and comparison with conventional methods, Journal of Korean Tunnelling and Underground Space Association, 20(6), 1091-1104.

11

Kim, J.J., Ryu, H.H., Song, S.S., Do, S.C., Lee, J.Y., and Jeong, H.Y., 2024, Development of disc cutter wear sensor prototype and its verification for ensuring construction safety of utility cable tunnels, Journal of Korean Tunnelling and Underground Space Association, 26(2), 91-111.

12

Kim, Y., Hong, J., and Kim, B., 2020, Performance comparison of machine learning classification methods for decision of disc cutter replacement of shield TBM, Journal of Korean Tunnelling and Underground Space Association, 22(5), 575-589.

13

Ko, T.Y., Yoon, H.J, and Son, Y.J., 2014, A comparative study on the TBM disc cutter wear prediction model, Journal of Korean Tunnelling and Underground Space Association, 16(6), 533-542.

10.9711/KTAJ.2014.16.6.533
14

Lan, H., Xia, Y., Ji, Z., Fu, J., and Miao, B., 2019, Online monitoring device of disc cutter wear - Design and field test, Tunnelling and Underground Space Technology, 89, 284-294.

10.1016/j.tust.2019.04.010
15

Lee, J.W., Kang S.W., Jung, J.H., Kang, H.B., Shin, Y.J., 2022, Case study of design and construction for cutter change in EPB TBM tunneling, Journal of Korean Tunnelling and Underground Space Association, 24(6), 553-581.

16

Li, D., Sun, Z., Ren, D., and Sun, W., 2016, Study of application of Eddy-current Sensor to Disc-cutter Wear Monitoring System of Shield Machines, Tunnel Construction, 36(6), 766-770. (In Chinese)

17

Park, M.S., Ju, M.S., Cho, M.S., Lee, J., Kim, J.J., and Jeong, H., 2022, Introduction to Research Trend of Real-Time Measurement for Wear of TBM Disc Cutter, Tunnel and Underground Space, 32(6), 478-490.

18

Park, M.S., Ju, M.S., Kim, J.J., and Jeong, H., 2023, Application of Eddy Current Sensor for Measurement of TBM Disc Cutter Wear, Tunnel and Underground Space, 33(6), 534-546.

19

Rostami, J., Ozdemir, L., Bruland, A., and Dahl, F., 2005, Review of issues related to Cerchar abrasivity testing and their implications on investigations and cutter cost estimates, Proceedings of the Rapid Excavation and Tunneling Conference (RETC), Seattle, U.S.A., 738-751.

20

Sun, Z., Li, D., and Zhang, J., 2016, Wireless real-time disc cutter wear monitoring system for composite shield machine, Tunnel Construction, 36(4), 485-489. (In Chinese)

21

Wang, F., Men, C.H., Kong, X.W., and Meng, L.X., 2019, Optimum design and application research of eddy current sensor for measurement of TBM disc cutter wear, Sensors, 19(19), 4230.

10.3390/s1919423031569462PMC6806206
22

Zhang, X.B., Liu, Q.S., and Zhang, J.M., 2017, Real-time monitoring technology for wear of cutters and monitoring analysis of cutterhead vibration of TBM, Tunnel Construction, 37(3), 380-385. (In Chinese)

Information
  • Publisher :Korean Society for Rock Mechanics and Rock Engineering
  • Publisher(Ko) :한국암반공학회
  • Journal Title :Tunnel and Underground Space
  • Journal Title(Ko) :터널과 지하공간
  • Volume : 34
  • No :2
  • Pages :154-168
  • Received Date : 2024-04-16
  • Revised Date : 2024-04-23
  • Accepted Date : 2024-04-24