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USING EXPERTS SYSTEM TO MONITOR LARGES HYDROTECHNICAL CONSTRUCTIONS
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References22
Bobocu, D. - The safety evaluation of dams for water accumulation based on statistical processing of data from surveillance equipment, Bucharest, 2008;
Chrzanowski A., Y.Q. Chen P. Romero and J.M. Secord (1985), Integration of geodetic and geotechnical deformation surveys in the geosciences, Proceedings, International Symposium on Recent Crustal Movements, Maracaibo, Venezuela (in press).
Heunecke O., Welsch W. (2000), Terminology and classification of deformation models în engineering surveys, Journal of Geospatial Engineering, Vol. 2, No.1, 35-44.
Lepădatu A., Ianoschi R., Neagu A. (2011d), GNSS technology for structural health monitoring, Scientific Journal of the Technical University of Civil Engineering: Mathematical Modelling în Civil Engineering,Vol.7, No.1-2, pp. 175-184, 2011.
Lutes James A. , Automated dam displacement monitoring using a robotic total station, Canada, 2002.
Meng X., Roberts G.W., Coser E., Dodson A.H. (2003), Real-time bridge deflection and vibration monitoring using an integrated GPS/accelerometer/pseudolite system, Proceedings of the 11th FIG Symposium on Deformation Measurements, Santorini, Greece, 2003.
Nickitopoulou A., Protopsalti K., Stiros S. Monitoring dynamic and quasi-static deformations of large flexible engineering structures with GPS: Accuracy, limitations and promises, Engineering Structures 28, Elsevier Ltd., 1471–1482, 2006.
Nistor Gh., Geodesy applied to construction study, Gh. Asachi Publishing House, Iaşi, Romania, 1993.
Szostak-Chrzanowskii, A., Chrzanowskii, A., Massiera, M. - Behavior of Large Earth Dam Combining Monitoring and Finite Element Results, 2006;
www. leica.com
www.sigeo.si.edu
Bobocu, D. - The safety evaluation of dams for water accumulation based on statistical processing of data from surveillance equipment, Bucharest, 2008;
Chrzanowski A., Y.Q. Chen P. Romero and J.M. Secord (1985), Integration of geodetic and geotechnical deformation surveys in the geosciences, Proceedings, International Symposium on Recent Crustal Movements, Maracaibo, Venezuela (in press).
Heunecke O., Welsch W. (2000), Terminology and classification of deformation models în engineering surveys, Journal of Geospatial Engineering, Vol. 2, No.1, 35-44.
Lepădatu A., Ianoschi R., Neagu A. (2011d), GNSS technology for structural health monitoring, Scientific Journal of the Technical University of Civil Engineering: Mathematical Modelling în Civil Engineering,Vol.7, No.1-2, pp. 175-184, 2011.
Lutes James A. , Automated dam displacement monitoring using a robotic total station, Canada, 2002.
Meng X., Roberts G.W., Coser E., Dodson A.H. (2003), Real-time bridge deflection and vibration monitoring using an integrated GPS/accelerometer/pseudolite system, Proceedings of the 11th FIG Symposium on Deformation Measurements, Santorini, Greece, 2003.
Nickitopoulou A., Protopsalti K., Stiros S. Monitoring dynamic and quasi-static deformations of large flexible engineering structures with GPS: Accuracy, limitations and promises, Engineering Structures 28, Elsevier Ltd., 1471–1482, 2006.
Nistor Gh., Geodesy applied to construction study, Gh. Asachi Publishing House, Iaşi, Romania, 1993.
Szostak-Chrzanowskii, A., Chrzanowskii, A., Massiera, M. - Behavior of Large Earth Dam Combining Monitoring and Finite Element Results, 2006;
www. leica.com
www.sigeo.si.edu
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