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pp. 12771-12778 | Article Number: ijese.2017.002
Published Online: January 19, 2017
Abstract
The paper covers the possibility of receiving of more complete information on the deformed condition of protective containment with the use of modern electronic geodetic measuring instruments in comparison with a method of the deformations’ determination by the control instrumentation recommended by the relevant normative documents. There are given the results of geodetic determinations of the domical (top) and cylindrical parts of the Rostov NPP’s second reactor building’s protective containment’s deformations during its tests on durability at increase and reduction of pressure inside the cover. Requirements for creation of mobile geodetic measuring system are developed.
Keywords: Protective cover; measuring system; deformed condition; target points.
References
Bouziani, A., Benouar, N. (1996). Problem mixte avec conditions integrals pour une classe d’equations hyperboliques. Bull. Belg. Math. Soc, 3, 137-145.
Сostachel, A. (1967). Einigeneue Aspektebei Prazisionsnivellementszur Bestimmung der Senking von Bauten. Vermessungstechnik, 7, 250-257.
Dimitrov, D. A., Tonkov, D. (1989). Engineering geodetic works at mounting on crane. Geodesy, cartography, organization of the land’s use, 4, 24-27.
Dyakov, B.N. (2009). Comparative analysis of methods of Сostachel and Marchak. Surveying Bulletin: Scientific and Industrial Technical Journal, 6, 43-46.
Fedoseyev, Y.E. (1977). Analysis of the methods for studying stability of reference points in an altitudinal base. Research in Geodesy, Aerial Photography and Cartography. Applied Geodesy, 2(2), 39-49.
Fedoseyev, Y.E. (2010). Use of digital levels for precision work: theory, practice, problems. Moscow: Moscow Institute of Engineers in Geodesy, Aerophotography and Cartography.
Gairabekov, I.G., Ibragimova, E.I., Murtazaev, S-A.Y., Pimshin, I.Y., Kagirov, Sh.Sh. (2015a). Determination of periodicity and optimal terms of geodesic observations for deformations of land surface caused by subterranean water production. Ecology, environment and conservation, 21(Suppl. Issue), 35-38.
Gairabekov, I.G., Murtazaev, S.A.Yu., Pimshin, I.Yu., Ibragimova, E.I. (2015b). Certain peculiarities of geodetic networks for observing earth surface subsidence in the area of liquid mineral extraction. Ecology, Environment and Conservation, 21(Suppl. Issue), 29-34.
Gairabekov, B.G., Taymaskhanov, H.E., Zaurbekov, Sh.Sh.,Saydumov, M.S., Khasaev, B.M., Mintsaev, M.SH. (2015c). Development of the mathematical model for analysis of leveling points stability of reference leveling grid. Journal of Theoretical and Applied Information Technology, 81(1), 18-25.
Gairabekov, I.G., Zabaznov, Yu.S. (2010). Geodetic technology of the containment’s deformations’ definition. Don’s engineering messenger, 4, 17-22.
Gairabegov, I.G., Zabaznov, Yu.S., Naumenko, G.А. (2009). Geodetic ensuring of reactor space’s protective cover’s tests. News of the institutes of higher education. Severo-Kavkazsky region. Technical sciences, Appendix to the special issue: 107-122.
Golygin, N.H., Shaimkulov, D.A. (2003). Studying intra-step short-period periodic error of DiNi10 digital level. News from Universities. Geodesy and Aerial Photography, 5, 106-111.
Kalinchenko, I.S., Uvarov, A.I. (2009). Stability analysis of deep reference points used for monitoring deformations of engineering structured of development site using the geodetic methods on the permafrost.In the Proceedings of the International Scientific Production Conference: Land Property Complex: Management, Evaluation, Organization and Use. Omsk.
Lobov, М.I., Аndolenko, V.I. (1985). About accuracy of the planned marking net on mounting horizons’ transmission in conditions of the APP’s reactor space: Collection. Interuniversity collection: Methods and instruments of engineering geodetic works in construction, 10(7), 104-110.
Nersesyan, S.P. (1990). Calculation of the deformation characteristics of the elliptic shape’s objects’ foundations. In: Perfection of the geodetic and photogrammetric works, 23-28. Мoskow: VAGO.
Nevolin, А.G., Tyshyuk, О.L. (1987). Analysis of the results of the guiding shooting of the reactor's circular crane as VVER-1000: Collection. Investigations on perfection of the engineering geodetic measurements’ mathematical treatment. Novosibirsk: NIIGАiК.
Pimshin, Yu.I., Gubeladze, А.R., Gluhov, V.P. (1999). About problems and approaches to their solution concerning Rostov atomic power plant. In: Std. Applied geodesy, 3-4. Rostov-on-Don: RGSU.
Ruskov, А.М., Boglov, I.F. (1984). Device for crane tracks’ planned high-altitude position's shooting. Collection. In: Inspection’s geodetic methods in construction, 55-58. Kuibyshev: Kuibyshevsky state university.
Slipenko, L.N., Ruskov, А.М. (1983). Planned geodetic foundation of reactor space’s mounting at construction of atomic power plant. Collection. In: Control accuracy’s geodetic methods in construction (pp.66-68). Kuibyshev: Kuibyshevsky state university.
Storozhenko, A.F. (2004). Theoretical substantiation of the method for defining adjustments in the reference points elevations. Bulletin of the Volgograd State University of Architecture and Civil Engineering. Series: Construction and architecture, 4, 87- 90.
Ustavich, G.A. (2005). About improving the technology of leveling. Geodesy and Cartography, 3, 11-13.
Ustavich, G.А., Kostina, G.D. (1983). Geodetic works at construction and operation of the big energetic objects. Мoskow: Nedra.
Xu, G. (2010). Sciences of geodesy. Heidelberg: Springer
Zharnikov, V.B., Fedorov, А.I. (1980). High-precision geodetic works at unique objects. The materials of all-union scientific technical conference: Geodetic works at mounting and technological equipment’s operation. Moskow.
Zhilkin, V.A. (1981). Geodetic inspection of high-altitude constructions at energetic objects. Energetic construction, 1, 39-41.