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Methodology of dynamic monitoring of structures in the vicinity of hydrotechnical works – selected case studies

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Języki publikacji
EN
Abstrakty
EN
The constant development of geotechnical technologies imposes the necessity of monitoring techniques to provide a proper quality and the safe execution of geotechnical works. Several monitoring methods enable the preliminary design of work process and current control of hydrotechnical works (pile driving, sheet piling, ground improvement methods). Wave parameter measurements and/or continuous histogram recording of shocks and vibrations and its dynamic impact on engineering structures in the close vicinity of the building site enable the modification of the technology parameters, such as vibrator frequency or hammer drop height. Many examples of practical applications have already been published and provide a basis for the formulation of guidelines, for work on the following sites. In the current work the author’s experience gained during sheet piling works for the reconstruction of City Channel in Wrocław (Poland) was presented. The examples chosen describe ways of proceedings in the case of new and old residential buildings where the concrete or masonry walls were exposed to vibrations and in the case of the hydrotechnical structures (sluices, bridges).
Wydawca
Rocznik
Strony
121--129
Opis fizyczny
Bibliogr. 24 poz., rys., tab.
Twórcy
  • Wrocław University of Science and Technology, Faculty of Civil Engineering, Wybrzeże Wyspiańskiego 27, 50-370 Wrocław, Poland
Bibliografia
  • [1] BOLLER CH., Structural Health Management of Ageing Aircraft and Other Infrastructure, Monograph on Structural Health Monitoring, Inst. of Smart Structures and Systems, Bangalore, India, 2002.
  • [2] BRZĄKAŁA W., HERBUT A., RYBAK J., Recommendations for ground vibrations survey in course of geotechnical works, 14th International Multidisciplinary Scientific GeoConference SGEM 2014, GeoConference on science and technologies in geology, exploration and mining: conference proceedings, Albena, Bulgaria, 17-26 June, 2014. Vol. 2, Hydrogeology, engineering geology and geotechnics, Sofia: STEF92 Technology, 2014, 747-754.
  • [3] BRZĄKAŁA W., BACA M., The measurement and control of building vibrations in course of sheet pile wall and Franki pile driving, 17th Int. Multidisciplinary Scientific GeoConference, SGEM 2017, 29 June-5 July, Albena, Bulgaria, Vol. 17, Hydrogeology, engineering geology and geotechnics, Issue 12, Science and technologies in geology, exploration and mining, Sofia: STEF92 Technology, 2017, 929-936.
  • [4] DIN 4150-3 Erschutterungen im Bauwesen, Einwirkungen auf bauliche Anlagen, 1999.
  • [5] EN 1993-5. Eurocode 3. Design of steel structures. Part 5. Piling.
  • [6] FRISWELL M.I., PENNY J.E.T., WILSON D.A.L., Using Vibration Data and Statistical Measures to Locate Damage in Structures, Modal Analysis, the International Journal of Analytical and Experimental Modal Analysis, 1994, 9(4), 239-254.
  • [7] GUANG H., KARBHARI V.M., SIKORSKY C.S., Long-term SHMSystem for a FRP Composite Highway Bridge Structure, Journal of Intelligent Material Systems and Structures, 2007.
  • [8] HERBUT A., A study of the reduction of ground vibrations by an active generator, Soil Dynamics and Earthquake Engineering, 2016, 88, 328-344.
  • [9] International Standard ISO 2394 General principles on reliability for structures, 2015.
  • [10] LIU Y., MAHADEVAN S., Stochastic fatigue damage modeling under variable amplitude loading, International Journal of Fatigue, 2007, 29(6), 1149-1161.
  • [11] MARCINKOWSKA E., GAWRON K., REJMENT M., Technical and economic aspects of revitalization of down-town tenement-houses in Wrocław, Journal of Civil Engineering and Management, 2015, 21(8), 1036-1045.
  • [12] MINER M., Cumulative damage in fatigue, Journal of Applied Mechanics – Transactions of the ASME 12, 1954, A159-A164.
  • [13] OLIVEIRA F., FERNANDES I., Influence of geotechnical works on neighboring structures, 17th Int. Multidisciplinary Scientific GeoConference, SGEM 2017, 29 June-5 July, Albena, Bulgaria, Vol. 17, Hydrogeology, engineering geology and geotechnics, Iss. 12, Science and technologies in geology, exploration and mining, Sofia: STEF92 Technology, 2017, 993-1001.
  • [14] PALMGREN A., Lebensdauer von Kugellagern, Zeitschrift des Vereins Deutscher Ingenieure, 1924, 68, 339-341.
  • [15] PN-85/B02170 Ocena szkodliwości drgań przekazywanych przez podłoże na budynki, (The Assessment of Harmful Impact Transmitted from the Subsoil to Buildings), in Polish, 1985.
  • [16] RATHOD V., PRAKASH YADAV O., RATHORE A., JAIN R., Probabilistic Modelling of Fatigue Damage Accumulation for Reliability Prediction, International Journal of Quality, Statistics, and Reliability, 2011, Vol. 2011, dx.doi.org/10.1155/2011/718901.
  • [17] RYBAK J., SCHABOWICZ K., Survey of vibrations generated in course of geotechnical works, NDE for Safety: 40th International Conference and NDT Exhibition, November 10-12, 2010, Pilsen, Czech Republic, 2010, 237-246.
  • [18] RYTTER A., Vibration Based Inspection of Civil Engineering Structures, Ph. D. Dissertation, Department of Building Technology and Structural Engineering, Aalborg University, Denmark, 1993
  • [19] SIEŃKO R., BEDNARSKI Ł., HOWIACKI T., Continuous structural health monitoring of selected geotechnical quantities within Kościuszko Mound in Cracow, In MATEC Web of Conferences. EDP Sciences, 2017, Vol. 117, 00157.
  • [20] SOHN H., FARRAR C.R., HEMEZ F.M., SHUNK D.D., STINEMATES D.W., NADLER B.R., A Review of Structural Health Monitoring Literature: 1996-2001, Los Alamos National Laboratory, USA, 2003.
  • [21] UROŠ P., SLAVIČ J., BOLTEŽAR M., Vibration-fatigue damage accumulation for structural dynamics with non-linearities, International Journal of Mechanical Sciences, 2016, 106, 72-77, DOI: 10.1016/j.ijmecsci.2015.12.005.
  • [22] WÓJCICKI Z., KOSTECKI S., GROSEL J., Operational Modal Analysis of weir on Odra River in Poland, Procedia Engineering, 2016, 153, 874-881, https://doi.org/10.1016/j.proeng.2016.08.205.
  • [23] Ustawa o ochronie przyrody (Environmental Control Act), in Polish, 2004.
  • [24] Ustawa Prawo budowalne (Construction Law), in Polish, 1994.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-b9e34f28-1881-44b3-86b0-c477a1f4e204
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