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GEOMECHANICAL INVESTIGATIONS
Название The spatial and temporal geodynamic monitoring at sites subsoil
Автор Panzhin А. А.
Информация об авторе

Institute of Mining of the Ural Branch of the Russian Academy of Sciences:

А. А. Panzhin, Scientific Secretary, Candidate of Engineering Sciences, e-mail: panzhin@igduran.ru

Реферат

The article deals with methods of organization of the deformation monitoring of modern geodynamic processes in mining enterprises and urban areas. In this geodynamic processes that accompany the use of mineral resources, have both manmade and natural environment.

The study of modern movements and deformations that occur in the rock massifs requires a monitoring mode precision geodetic measurements of displacement of frames specially equipped monitoring stations — geodynamic polygons. Determining the values of displacements and deformations of the earth’s surface produced by multiple overrides coordinate frames and geometric elements of geodetic networks — especially the lengths and elevations be equipped with monitoring stations.

As a result of periodic measurements made in the monitoring mode, determined by the total spatial displacement of a frame of observation stations, the spatial fluctuations of the field strain and stress tensors, causing these changes. This information, combined with information obtained in the study of process parameters on the displacement of specific fields, allows a high degree of reliability to make geodynamic zonation of the investigated area of the rock mass. The main components of the plane and three-dimensional tensors of earth surface deformation are determined by the difference of the coordinates frame of observation stations, teaching in a different series of monitoring measurements. As a result of instrumental measurements using satellite geodesy systems in a number of deposits in the Urals and Siberia were determined magnitude of displacement vectors of frames. It was found that bias frames observation station in the horizontal plane occur in concert with the direction of the strike of tectonic disturbances.

The use of modern methods of traditional and satellite geodesy to monitor the process of displacement on the earth’s surface mining enterprises and urban areas has allowed research on a qualitatively higher level. Measurements made using modern surveying systems have shown to be highly effective for solving problems of geomechanics, making it possible not only discontinuous measurements, but regular monitoring of strains and stresses occurring in the upper crust - as the underlying rock mass in urban areas, and array, disrupted the influence of largescale mining operations.

The article gives examples of the use of satellite geodesy and complex three-dimensional laser scanning for monitoring the development process of displacement, to obtain the full strain tensor and the three-dimensional models earn the earth’s surface.

Ключевые слова Rock mass displacement, geomechanics, the field of deformation, geodynamic monitoring, satellite geodesy, three-dimensional laser scanning, geomechanic models
Библиографический список

1. Oparin V. N., Sashourin A. D., Panzhin A. A. Sovremennaya geodinamika massivov gornyh porod verhney chasti litosfery: istoki, parametry, vozdejstvie na ob’ekty nedropol’zovaniya (Modern geodynamics of massifs of rocks of the top part of a lithosphere: sources, parameters, influence on objects of subsurface resources management). Novosibirsk, 2008. 450 p.

2. Instrukciya po nablyudeniyam za sdvizheniem zemnoyi poverhnosti i podrabatyvaemymi sooruzheniyami na ugol’nyh i slancevyh mestorozhdeniyah (The instruction on supervision for displacement a terrestrial surface and earned additionally constructions on coal and slate deposits). Moscow, 1989.

3. Instrukciya po nablyudeniyam za sdvizheniem gornyh porod i zemnoyi poverhnosti pri pozemnoyi razrabotke rudnyh mestorozhdeniy (The instruction on supervision for displacement rocks and a terrestrial surface at поземной to working out of ore deposits). Moscow, 1988.

4. Panzhin A. A. Issledovanie sdvizhenij zemnoyi poverhnosti pri razrabotke mestorozhdeniy s primeneniem plowadnyh instrumental’nyh metodov (Research of displacement a terrestrial surface by working out of deposits with application of the vulgar tool methods). Izvestiya vuzov. Gornyi zhurnal — News of Higher Schools. Mining Journal, 2009, No. 2.

5. Panzhin A. A. Rekonstrukciya opornogo marksheyderskogo obosnovaniya na gornyh predpriyatiyah s primeneniem kompleksov sputnikovoyi geodezii (Reconstruction basic surveying substantiations at the mountain enterprises with application of a satellite geodesy). GIAB — Mining the Informational-Analytical Bulletin, 2005, No. 4.

6. Panzhin A. A. Rol’ tektonicheskih narusheniy v processe sdvizheniya na rudnikah Vysokogorskogo GOKa (Role of tectonic infringements in process of shifting on mines of Vysokogorsky MSP). GIAB — Mining Informational-Analytic Bulletin, 2005, No. 4.

Language of full-text русский
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