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Vol 225
Pages:
298-306
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RUS ENG
Article

Angles of total shifts and angles of maxumum crop during development of faces diagonal to seam strike directions

Authors:
N. A. Kolesnik1
G. I. Kozlovskii2
A. A. Kanavets3
About authors
  • 1 — Ph.D. associate professor Donetsk National Technical University
  • 2 — Ph.D. associate professor Donetsk National Technical University
  • 3 — assistant lecture Donetsk National Technical University
Date submitted:
2017-01-09
Date accepted:
2017-03-10
Date published:
2017-06-23

Abstract

When predicting deformations and determining measures to protect underworked objects, angular parameters are used: the boundary angles, the angles of total shift, the angle of maximum crop. The values of these angular parameters are given in the normative documents, but only for sections across and along the strike of the formation. However, at present, longwall face mining is mainly being carried out along a diagonal direction to the strike of the formation. In connection with this, the determination of the values of the angular parameters for such conditions is a topical task. The method of determination and the analytical dependences of the angles of total shifts and angles of maximum crop in sections of the longitudinal and transverse axes of coal-mining faces developed along diagonal directions to the strike of the formation are proposed. These angular parameters are used for prognosis of deformations of the earth's surface and for determining the characteristic zones of influence of mine workings on the local places.

Область исследования:
Mining
Keywords:
angles of total shifts angles of maximum crop diagonal directions of contour of working deformation of earth surface
10.18454/pmi.2017.3.298
Go to volume 225

References

  1. GSTU 101.00159226.001. Working rules for buildings, structures and natural sites in coal mining constructed by underground methods. Kiev: Mіnpalivenergo, 2004, р. 128 (in Ukraine).
  2. Zorya N.M., Muzafarov F.I. Scheme of the rock mass shear mechanism of during development of flat coal seams with single face. Ugol' Ukrainy. 1966. N 12, p. 9-12 (in Russian).
  3. Kolesnik N.A., Kozlovskii G.I., Mukhina A.S. Trough shifts and boundary angles in bedrock during longwall face mining along diagonal to strike directions. Geotekhnicheskaya mekhanika. Dnepropetrovsk. 2014. Iss. 118, р. 191-200 (in Russian).
  4. Kratch G. Rock mass shear and protection of underworked structures: Per. s nem. Pod red. R.A.Mullera. Moscow: Nedra, 1978, р. 496 (in Russian).
  5. Larchenko V.G. Shears and deformations of underworked rock mass. Stalii rozvitok gіrnicho-metalurgіinoї promislovostі. Vіsnik Krivorіz'kogo tekhnіchnogo unіversitetu. Krivii Rіg. 2004. N 6, р. 93-96 (in Ukraine).
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  9. Rules for the protection of structures and natural objects from the harmful effects of underground mining in coal sites. M.: Nedra, 1981, р.288 (in Russian).
  10. Rules for the protection of structures and natural objects from the harmful effects of underground mining in coal sites. St. Petersburg: Nedra, 1998, р. 270 (in Russian).
  11. Borshch-Komponeets V.I., Batugina I.M., Varlashkin V.M. et al. Movement of rock mass and earth surface during underground mining. Ed. by V.A.Bukrinskogo, G.V.Orlova. Moscow: Nedra, 1984, p. 247 (in Russian).
  12. Chetverik M.S., Determining parameters of tensile deformation zone in shear trough. Geotekhnicheskaya mekhanika. IGTM NANU. Dnepropetrovsk, 2011. Iss. 95, p. 162-168 (in Russian).
  13. Kratzsch H. Mining subsidence engineering. Berlin: Springer-Verlag, 1983. 543 p.
  14. Peng S.S. Surface subsidence engineering. Littleton: SMME, 1992. 160 p.
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