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2025 Vol.35, Issue 3 Preview Page

Original Article

30 June 2025. pp. 304-323
Abstract
References
1

Bespal'ko, A.A., Yavorovich, L.V., and Fedotov, P.I., 2006, Mechanoelectrical transformations in quartz and quartz-bearing rocks under acoustic action, J. Min, Sci, 43, 472-476.

10.1007/s10913-007-0049-8
2

Chengwu, L., Qifei, W., and Pingyang, L., 2016, Study on electromagnetic radiation and mechanical characteristics of coal during an SHPB test. Journal of Geophysics and Engineering, 13(3), 391-398.

10.1088/1742-2132/13/3/391
3

Dazhao, S., Zhenlei, L., Xueqiu, H., Enyuan, W., and Ming, C., 2018, Electromagnetic radiation from coal rock failure in underground coalmines, Physics Canada, 74, 104-108.

4

Doptman, 1985, The Physical Property of Rock and Mineral [M] (Interpretion by Jiang Hongyao). Science Press, Beijing, pp. 1-362.

5

Frid, V., and Vozoff, K., 2005, Electromagnetic radiation induced by mining rock failure, International Journal of Coal Geology, 64(1-2), 57-65.

10.1016/j.coal.2005.03.005
6

Frid, V., Rabinovitch, A., and Bahat, D., 2003, Fracture induced electromagnetic radiation, Journal of Physics D: Applied Physics, 36, 13, 1620.

10.1088/0022-3727/36/13/330
7

He, L., Li, Q., and An, B., 2023, A study of the characteristics of micro-seismic (ME) and electromagnetic radiation (EMR) signals under the static load conditions of rocks, Applied Sciences, 13(23), 12910.

10.3390/app132312910
8

Hwang, J., Choi, J.B., Jeong, G.Y., Oh, J., Choi, Y., and Lee, J., 2013, Occurrence and mineralogical characteristics of dolomite ores from South Korea, Journal of the Mineralogical Society of Korea, 26(2), 87-99.

10.9727/jmsk.2013.26.2.87
9

Kobayashi, H., Horikawa, K., Ogawa, K., and Watanabe, K, 2014, Impact compressive and bending behaviour of rocks accompanied by electromagnetic phenomena, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, 372(2023), 20130292.

10.1098/rsta.2013.029225071241
10

Lee, D.L., Lee, C.H., and Kim, J.Y., 2006a, Weathering Impact for Rock Properties and Material Characteristics of Concretes Used Stone Pagoda of the Mireuksaji Temple Site, Iksan, Korea, Econmic Environmetal Geology, 39(3), 285-299.

11

Lee, S.Y., Baik, M.H., Cho, W.J., and Hahn, P.S., 2006b, Rock weathering and geochemical characteristics in the KURT, Journal of Nuclear Fuel Cycle and Waste Technology (JNFCWT), 4(4), 321-328.

12

Li, C.W., Wei, S.Y., Wang, X.Y., Liu, J.K., and Lei, D.J., 2012, Experiment of dynamic property and transient magnetic effects of coal during deformation and fracture, Journal of Coal Science and Engineering, 18, 258-261.

10.1007/s12404-012-0306-6
13

Li, H., Qiao, Y., Shen, R., and He, M., 2022, Electromagnetic radiation signal monitoring and multi-fractal analysis during uniaxial compression of water-bearing sandstone.Measurement, 196, 111245.

10.1016/j.measurement.2022.111245
14

Li, J., Zhang, Q., Liu, Z., Long, R., Zhong, X., Liu, W., and Liang, H., 2024, Electromagnetic radiation of granite under dynamic compression. International Journal of Mining Science and Technology, 34(10), 1427-1441.

10.1016/j.ijmst.2024.09.006
15

Li, X., Chen, S., Wang, E., and Li, Z., 2021, Rockburst mechanism in coal rock with structural surface and the microseismic (MS) and electromagnetic radiation (EMR) response, Engineering Failure Analysis, 124, 105396.

10.1016/j.engfailanal.2021.105396
16

Lin, P., Wei, P., Wang, C., Kang, S., and Wang, X., 2021, Effect of rock mechanical properties on electromagnetic radiation mechanism of rock fracturing, Journal of Rock Mechanics and Geotechnical Engineering, 13(4), 798-810.

10.1016/j.jrmge.2021.01.001
17

Lou, Q., Wan, X., Jia, B., Song, D., Qiu, L., and Yin, S., 2022, Application study of empirical wavelet transform in time-frequency analysis of electromagnetic radiation induced by rock fracture, Minerals, 12(10), 1307.

10.3390/min12101307
18

Nardi, A. and Caputo, M., 2009, Monitoring the mechanical stress of rocks through the electromagnetic emission produced by fracturing. International Journal of Rock Mechanics and Mining Sciences, 46(5), 940-945.

10.1016/j.ijrmms.2009.01.005
19

Oh, S.W., Choi, B.H., Min, G.J., Jung, Y.B., and Cho, S.H., 2021, An experimental study on the dynamic increase factor and strain rate dependency of the tensile strength of rock materials, Explosives and Blasting, 39(1), 10-21.

20

Prałat, A., Maniak, K., and Pompura, I., 2005, Electromagnetic phenomena in landslides, Acta Geodynamica et Geomaterialia, 2(3), 131-138.

21

Qian, S.Q., Lu, Z., and Ren, K.X., 1998, Experimental study on the mechanism of nonsynchronism of seismo-electromagnetic radiation precursor. Acta Seismol. Sinica 11, 623-629.

10.1007/s11589-998-0078-7
22

Rabinovitch, A., Frid, V., and Bahat, D., 2001, Gutenberg-Richter-type relation for laboratory fracture-induced electromagnetic radiation, Physical Review E, 65(1), 011401.

10.1103/PhysRevE.65.01140111800694
23

Rabinovitch, A., Frid, V., and Bahat, D., 2018, Use of electromagnetic radiation for potential forecast of earthquakes, Geological Magazine, 155, 4, 992-996.

10.1017/S0016756817000954
24

Song, X., Li, X., Li, Z., Zhang, Z., Cheng, F., Chen, P., and Liu, Y., 2018, Study on the characteristics of coal rock electromagnetic radiation (EMR) and the main influencing factors, Journal of Applied Geophysics, 148, 216-225.

10.1016/j.jappgeo.2017.11.018
25

Tian, X., Song, D., He, X., Khan, M., Li, Z., Qiu, L., and Liu, X., 2022, On the characterization and correlation of the rock failure-induced electromagnetic radiation and micro-vibration, Engineering Geology, 311, 106879.

10.1016/j.enggeo.2022.106879
26

Tomizawa, I., and Yamada I., 1995, Generation mechanism of electric impulses observed in explosion seismic experiments, J. Geomagn. Geoelectr, 47, 313-324.

10.5636/jgg.47.313
27

Urusovskaya, A.A., 1969, Electric effects associated with plastic deformation of ionic crystals, Soviet Physics Uspekhi, 11(5), 631.

10.1070/PU1969v011n05ABEH003738
28

Wan, G., and Li, X., 2009, Intensity variation of electromagnetic emission (EME) of the rock masses with joints under stress wave action. Acta Seismol, Sinica 31, 411-423.

29

Wan, G.X, Li, X.B., and Hong, L., 2008, Piezoelectric responses of brittle rock mass containing quartz to static stress and exploding stress

10.1007/s11771-008-0065-0
30

Wang, E.Y., He, X.Q., Dou, L.M., Zhou, S.N., Nie, B.S., and Liu, Z.T., 2005, Characteristics of electromagnetic radiation from coal or rock during excavation and their applications, Chinese Journal of Geophysics, 48, 1, 237-242.

10.1002/cjg2.645
31

Wang, J.G., Zhang, S., Ai, L.H. and Sun, Y.F., 2014, Research on the Characteristics of Electromagnetic Radiation in the Impact Damage Process of Coal. Advanced Materials Research, 1006, 121-127.

10.4028/www.scientific.net/AMR.1006-1007.121
32

Wei, M., Song, D., He, X., Li, Z., Qiu, L., and Lou, Q., 2020, Effect of rock properties on electromagnetic radiation characteristics generated by rock fracture during uniaxial compression, Rock Mechanics and Rock Engineering, 1-16.

10.1007/s00603-020-02216-x
33

Yang, W., Li, X., Xu, R., Li, C., Wang, Y., and Liu, Y., 2022, Experimental investigation on time‐frequency evolution characteristics of electromagnetic radiation below ULF reflecting the damage performance of coal or rock materials, Structural Control and Health Monitoring, 29, 2, e2874.

10.1002/stc.2874
34

Yin, S., Song, D., He, X., Qiu, L., Wei, M., Wang, C., and Li, J., 2021, Time-frequency evolution law and generation mechanism of electromagnetic radiation in coal friction process, Engineering Geology, 294, 106377.

10.1016/j.enggeo.2021.106377
35

Zhu, T., Zhou, J., and Wang, H., 2013, Electromagnetic emissions during dilating fracture of a rock, Journal of Asian Earth Sciences, 73, 252-262.

10.1016/j.jseaes.2013.05.004
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 : 35
  • No :3
  • Pages :304-323
  • Received Date : 2025-06-10
  • Revised Date : 2025-06-20
  • Accepted Date : 2025-06-20