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GEOLOGY, PHYSICS AND MECHANICS OF ROCKS
Название Lateral earth pressure and tectonic stresses in the mine rock massif
DOI 10.17580/gzh.2016.04.05
Автор Olovyanniy А. G.
Информация об авторе

VNII Galurgy Stock Co., St.-Petersburg, Russia:

A. G. Olovyannyi, Leading Researcher, Candidate of Engineering Sciences, agolov2009@hgepro.ru

Реферат

Stressed state in a rock massif is a most important factor affecting processes around mine workings. Methods used for calculating the stresses and based on the hypotheses of resilient earth pressure or hydrostatic state do not consider the time processes developing under formation of stress field. Within the depths of engineering in a heterogeneous massif of rocks with layers with different elastic and viscous properties the lateral earth pressure irregular changes from layer to layer. In the layers of rocks with similar properties lateral earth pressure does not depend on the depth. In the clay or salt layers stress state is close to hydrostatic, due to their viscous properties and, consequently, poor permeability. Outside the zones of tectonic fractures and folds are no conditions limiting stressed state, affecting the formation of lateral earth pressure stresses in the rock massif. In the separately-block and granular massifs lateral earth pressure is determined by the properties of dry-contact friction and viscosity. In this case it is formed according to the elastic and viscous properties with a restriction on the condition of dry friction. In general, the lateral earth pressure in a rock mass is formed of two parts — the gravitational and tectonic. The gravitational part of stresses of the lateral earth pressure depends on the elastic and viscous and elastic properties of rocks and grows with depth. Tectonic component of stresses in a horizontal plane occurs due to deformation of interacting tectonic plates and is not dependent on the depth. Tectonic stresses can be calculated according to the main deformation caused by tectonic movements. Upon reaching the lateral stresses certain values in the layers of rock can occur tectonic fractures and folds, in some cases — the conditions of activation of the existing fissures. Forming of stressed state is being affected by resilient, viscous and strength properties of rocks. Relationships between stressed state forming and effect of resilient, viscous and strength properties in solid, separately blocked and loose rocks have been considered. Also the problem of tectonic stresses acting in rock massifs under the influence of tectonic plates' mutual displacement is considered. The relationships for additional stresses in a rock massif depending on tectonic plates' deformations have been obtained. Methods for evaluation of stressed state in a rock massif have been shown which differ from those adopted at present.

Ключевые слова Rock massifs, stressed state, gravitation and tectonic stresses, side (lateral) thrust, elastic and visco-elastic deformations (strains), discontinuity in a massif, initial and boundary conditions
Библиографический список

1. Leontev A. V. Analiz estestvennykh napryazheniy po rezultatam izmereniy v rudnikakh na territorii Severnoy Evrazii (Analysis of natural stresses according to the results of measurements in Northern Europe mines). Fiziko-tekhnicheskie problemy razrabotki poleznykh iskopaemykh = Journal of Mining Science. 2001. No. 1. pp. 31–40.
2. Makarov A. B. Prakticheskaya geomekhanika (Practical geomechanics). Moscow : Gornaya Kniga, 2006. 391 p.
3. Kasparyan E., Fedotova I. Stress-strain state in the rock mass of the Khibiny deposits and tasks of geodynamical zoning. Proceedings 15th International Multidisciplinary Scientific GeoConference SGEM 2015 – Albena, Bulgaria. June 16–25, 2015. Book 1, Vol. 2. pp. 759–766.
4. Barnasch J., Beer W. Aerogeofizikalische Messungen im Werra – Kaligebeit. Kali und Steinsalz. 2012. Heft 1. ss. 12–23.
5. Nadai A. Plastichnost i razrushenie tverdykh tel (Plasticity and failure of ore bodies). Moscow, 1969. Vol. 2. 864 p.
6. Baryakh A. A. Konstantinova S. A., Asanov V. A. Deformirovanie solyanykh porod (Salt rock deformation). Ekaterinburg : Ural Branch of Russian Academy of Sciences, 1996. 204 p.
7. Sheorey P. R., Murali Mohan G., Sinha A. Influence of elastic constants on the horizontal in situ stress. International Journal of Rock Mechanics and Mining Sciences. 2001. Vol. 38. pp. 1211–1216.
8. Krupennikov G. A., Filatov N. A., Amusin B. Z., Barkovskiy V. M. Raspredelenie napryazheniy v porodnykh massivakh (Stress distribution in rock massifs). Moscow, 1972. 143 p.
9. Markov G. A. Tektonicheskie napryazheniya i gornoe davlenie v rudnikakh Khibinskogo massiva (Tectonic stresses and rock pressure in Khibiny massif mines). Leningrad, 1977. 213 p.
10. Petukhov I. M., Batugina I. M. Geodynamika nedr (Soil geodynamics). Saint Petersburg, 1999. 190 p.
11. Rebetskiy Yu. L. O vozmozhnom mekhanizme generatsiy v zemnoy kore gorizontalnykh szhimayushchikh napryazheniy (About the possible mechanism of generations of horizontal compression stress in Earth's crust). Doklady Akademii Nauk = Reports of Academy of Sciences. 2008. Vol. 423, No. 4. pp. 538–542.
12. Kozyrev A. A., Savchenko S. N. Distribution relations of tectonical stresses in the upper part of the Earth's crust. News of the solid Earth. 2009. Vol. 45, No. 11. pp. 964– 972.
13. Olovyannyy A. G. Mekhanika gornykh porod. Modelirovanie razrucheniy (Rock mechanics. Failure modeling). Saint Petersburg : Kosta, 2012. 280 p.
14. Kartashov Yu. M., Matveev B. V., Mikheev G. V., Fadeev A. B. Prochnost i deformiruemost gorbykh porod (Durability and deformability of rocks). Moscow, 1979. 269 p.
15. Glushko V. T., Vinogradov V. V. Razrushenie gornykh porod i prognozirovabnie proyavleniy gornogo davleniya (Rock failure and forecasting of rock pressure). Moscow : Nedra, 1982. 191 p.
16. Savchenko S. N. Otsenka napryazhennogo sostoyaniya gornykh porod v raione bureniya Kolskoy sverkhglubokoy skvazhiny (Assessment of stressed state of rocks in the region of drilling of Kola ultra-deep well). Fiziko-tekhnicheskie problemy razrabotki poleznykh iskopaemykh = Journal of Mining Science. 2004. No. 1. pp. 27–34.
17. Brady B., Brawn E. Rock Mechanics for Underground mining. Third edition. Kluwer Academic Publishers, 2004. 688 p.

Полный текст статьи Lateral earth pressure and tectonic stresses in the mine rock massif
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