Open Access

Experimental Research on Energy Release Characteristics of Water-Bearing Sandstone Alongshore Wharf

Polish Maritime Research's Cover Image
Polish Maritime Research
Special Issue: Computing Science and Mechanical Engineering in Marine

Cite

1. Xie, H.P., Ju, Y., Peng, L.Y.: Criteria for strength and structural failure of rocks based on energy dissipation and energy release principles, Chinese Journal of Rock Mechanics & Engineering, Vol. 24, no 17, pp. 3003-3010, 2005.Search in Google Scholar

2. Chen, X.G., Zhang, Q.Y.: Research on the energy dissipation and release in the process of rock shear failure, Journal of Mining & Safety Engineering, Vol. 27, no 2, pp. 179-184, 2013.Search in Google Scholar

3. Xue, D.J., Zhou, H.W., Zhong, J.C., Huang, Y.M.: Mininginduced release of energy from rock and mechanism on catastrophic failure, Chinese Journal of Rock Mechanics & Engineering, Vol. 33, no S2, pp. 3865-3872, 2014.Search in Google Scholar

4. Zhang, Z.Z., Gao, F.: Research on nonlinear characteristics of rock energy evolution under uniaxial compression, Chinese Journal of Rock Mechanics & Engineering, Vol. 31, no 6, pp. 1198-1207, 2012.Search in Google Scholar

5. Xiao, F.K., Liu, G., Shen, Z.L.: Research on effective elastic energy release rate of taoshan #90 coal seam, Chinese Journal of Rock Mechanics & Engineering, Vol. 34, No S2, pp. 4216-4225, 2015.Search in Google Scholar

6. Huang, D., Li, Y.R.: Conversion of strain energy in triaxial unloading tests on marble, International Journal of Rock Mechanics & Mining Sciences, Vol. 66, No 1, pp. 160-168, 2014.10.1016/j.ijrmms.2013.12.001Search in Google Scholar

7. Bagde, M.N., Petroš, V.: Fatigue and dynamic energy behaviour of rock subjected to cyclical loading, International Journal of Rock Mechanics & Mining Sciences, Vol. 46, No 1, pp. 200-209, 2009.10.1016/j.ijrmms.2008.05.002Search in Google Scholar

8. Liu, X.S., Ning, J.G., Tian, Y.L., Guo, Q.H.: Damage constitutive model based on energy dissipation for intact rock subjected to cyclic loading, International Journal of Rock Mechanics & Mining Sciences, Vol. 85, pp. 27-32, 2016.10.1016/j.ijrmms.2016.03.003Search in Google Scholar

9. Song, D.Z., Wang ,E.Y., Liu, J.: Relationship between EMR and dissipated energy of coal rock mass during cyclic loading process, Safety Science, Vol. 50, no 4, pp. 751-760, 2012.10.1016/j.ssci.2011.08.039Search in Google Scholar

10. Vasarhelyi, B., Van, P.: Influence of water content on the strength of rock, Engineering Geology, Vol. 84, No 1-2, pp. 70-74, 2006. 10.1016/j.enggeo.2005.11.011Search in Google Scholar

11. Yilmaz, I.: Influence of water content on the strength and deformability of gypsum, International Journal of Rock Mechanics & Mining Sciences, Vol. 47, no 2, pp. 342-347, 2010.10.1016/j.ijrmms.2009.09.002Search in Google Scholar

12. Duda, M., Renner, J.: The weakening effect of water on the brittle failure strength of sandstone, Geophysical Journal International, Vol. 192, no 3, pp. 1091-1108, 2013.Search in Google Scholar

13. Zuo, J.P., Huang, Y.M., Xiong, G.J., Liu, J., Li, M.M.: Study of energy-drop coefficient of brittle rock failure, Rock & Soil Mechanics, Vol. 35, no 2, pp. 321-327, 2014.Search in Google Scholar

14. Tarasov, B., Potvin, Y.: Universal criteria for rock brittleness estimation under triaxial compression, International Journal of Rock Mechanics & Mining Sciences, Vol. 59, no 4, pp. 57-69, 2013.10.1016/j.ijrmms.2012.12.011Search in Google Scholar

15. Sukplum, W., Wannakao, L.: Influence of confining pressure on the mechanical behavior of Phu Kradung sandstone, International Journal of Rock Mechanics & Mining Sciences, Vol. 86, pp. 48-54, 201610.1016/j.ijrmms.2016.04.001Search in Google Scholar

eISSN:
2083-7429
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Engineering, Introductions and Overviews, other, Geosciences, Atmospheric Science and Climatology, Life Sciences