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Proposition of an integrated geodetic monitoring system in the areas at risk of landslides

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EN
Abstrakty
EN
The sense of security is being mentioned as one of the most essential human needs. By talking about safety, we understand a lot of factors and aspects that considered together prove its multidimensionality. E.g., you can refer safety to issues such as globalization, demographic changes or functioning of state services. These are examples of issues which, by virtue of the changing conditions of people’s living in contemporary world, never lose their topicality. One from crucial „dimensions” of safety aspect is the spatial information, which is functioning in the world of ICT and modern technologies and is often called geoinformation. Almost all aspects of life of the contemporary man depend on it. This is because almost every object or phenomenon has its location in space and time. Without adequate spatial information it is difficult to imagine a state security, industry or citizens. For example, appropriately presented road networks, power transmission lines, or actually conducted analyses of the transport efficiency or range of phenomena, have a substantial impact on the effectiveness of the public services and the economy. They constitute also a main component of strategic and crisis management. Very important is e.g. a proper coordination of services ensuring public and property safety, in emergency situations of natural phenomena danger (such as floods, landslides) or coordination of the units responsible for country’s infrastructure.
Rocznik
Strony
33--40
Opis fizyczny
Bibliogr. 12 poz., rys.
Twórcy
autor
  • Warsaw University of Life Sciences, Faculty of Civil and environmental Engineering, Department of Civil Engineering, Warsaw, Poland
autor
  • Warsaw University of Technology, Faculty of Geodesy and Cartography, Warsaw, Poland
Bibliografia
  • 1] Karsznia K. (2011): Monitoring of engineering facilities and quality management in geomatics, a system of comprehensive quality management in the construction industry, wireless management of the construction process, Publishing AGH Cracow, p. 82-95
  • [2] Karsznia K., Czarnecki L., Skalski Z. (2010): The continuous monitoring of opencast mines deformations and the safety of mining, Mining Overview 10/2010, No 10 (1055), Tom 66(CVI), October 2010, p. 167-171
  • [3] Karsznia K.(2010): Applications of integrated surveying in the structural monitoring and quality management, Contemporary achievements of surveying science and production, Collection of Geodetic Society scientific works, Issue II (20). Publisher University of Lviv, Lviv, 2010. p. 95-101
  • [4] Karsznia K.(2007): Nothing is static, the system of structural monitoring of displacements and deformations Leica GeoMoS, Surveyor – Geoinformation Magazine No 9 (148), September 2007, p. 54-58
  • [5] Kaczmarek T.T. (2010): Risk Management – Interdisciplinary recognition, Publisher Difin SA, Warsaw
  • [6] Grabowski D., Marciniec P., Mrozek T., Niescieruk P., Rączkowski W., Wójcik A., Zimnal Z. (2008): Instruction to develop maps of landslides and areas at risk of mass movements on a scale of 1:10000, Polish Geological Institute, Warsaw
  • [7] National Geological Institute internet materials: http://www. pgi.gov.pl/pl/osuwiska-uslugi-geologiczne/2005-sopoosuwiska-pod-kontrolp.html (Against Landslides Cover System SOPO)
  • [8] Norm PN-EN ISO 19101:2005, geographic information - Standards development model, ISBN 83-251-1711-7
  • [9] Przewłocki S. (2010): Geomatics, PWN, Warsaw
  • [10] Regulation of the Minister of Environment of 20 June 2007 on information on the mass movements, Dz.U.07.121.840
  • [11] Witakowski P. (2007): Remote monitoring of buildings during construction and operation, Technical Journal, Published by University of Cracow
  • [12] Wolski B. (2006): Metrological monitoring of geotechnical objects, Published by Cracow University of Technology, Cracow
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-76f4040f-eadb-4a3b-a0db-dc6cc236fc76
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