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THE COMPARISON OF STANDARD METHODS FOR PAVEMENT TEXTURE EVALUATION WITH UNCONVENTIONAL APPROACH USING 3D SCANNING

Kotek, Peter, Kovac, Matus, Decky, Martin

First published: 2015https://doi.org/10.5593/sgem2015/b21/s10.149View metrics

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Publication details

Title
THE COMPARISON OF STANDARD METHODS FOR PAVEMENT TEXTURE EVALUATION WITH UNCONVENTIONAL APPROACH USING 3D SCANNING
Authors
Kotek, Peter, Kovac, Matus, Decky, Martin
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; 15th International Multidisciplinary Scientific GeoConference SGEM2015, INFORMATICS, GEOINFORMATICS AND REMOTE SENSING
Publisher
Stef92 Technology
Year
2015
Pages
1167-1174
ISSN
1314-2704
ISBN
978-619-7105-34-6
Language
en
Publication type
Conference Paper
References16
  1. World Road Association (PIARC). Report of the Committee on Surface Characteristics. Proceedings of the XVIII World Road Congress. Paris, France: s.n.,

  2. KOKKALIS, G. A., PANAGOULI, K.O.: Fractal Evaluation of Pavement Skid Resistance Variations I: Surface Wetting. Chaos, Solitons & Fractals Vol.9 No.11, pp. 1875-1890, 1998, 0960-0779/98, 1998 Elsevier Science Ltd. S0960-0779(97)00138-0

  3. SLABEJ, M. – KOTEK, P. 2014. Using of 3D Road Surface Model for Monitoring of Transverse Unevenness and Skid Resistance In: Procedia Engineering: XXIII R-S- P seminar: Theoretical foundation of civil engineering [online]. 2014. vol. 91. ISSN 1877-

  4. STN EN 13036-1 Road and airfield surface characteristics. Test methods. Part 1: Measurement of pavement surface macrotexture depth using a volumetric patch technique

  5. STN EN 13036-4 Road and airfield surface characteristics. Test methods. Part 4: Method for measurement of slip/skid resistance of a surface: The pendulum test

  6. STN EN 13473-1 Characterization of pavement texture by use of surface profiles - Part 1: Determination of Mean Profile Depth

  7. STN EN ISO 4287. Geometrical Product Specifications (GPS). Surface texture: Profile method - Terms, definitions and surface texture parameters (ISO 4287:1998)

  8. ABE, H., HENRY, J.J., WAMBOLD, J., and TAMAI, A .: Measurement of Pavement Macrotexture with Circular Texture Meter, Transportation Research Record 1764, Transportation Research Board, National Research Council, Washington. This contribution is the result of the project implementation: "Promotion & Enhancement of Center for Research on Transportation" (ITMS: 26220220160) supported by the Rese arch & Development Operational Programme funded by the ERDF. International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org

  9. World Road Association (PIARC). Report of the Committee on Surface Characteristics. Proceedings of the XVIII World Road Congress. Paris, France: s.n.,

  10. KOKKALIS, G. A., PANAGOULI, K.O.: Fractal Evaluation of Pavement Skid Resistance Variations I: Surface Wetting. Chaos, Solitons & Fractals Vol.9 No.11, pp. 1875-1890, 1998, 0960-0779/98, 1998 Elsevier Science Ltd. S0960-0779(97)00138-0

  11. SLABEJ, M. – KOTEK, P. 2014. Using of 3D Road Surface Model for Monitoring of Transverse Unevenness and Skid Resistance In: Procedia Engineering: XXIII R-S- P seminar: Theoretical foundation of civil engineering [online]. 2014. vol. 91. ISSN 1877-

  12. STN EN 13036-1 Road and airfield surface characteristics. Test methods. Part 1: Measurement of pavement surface macrotexture depth using a volumetric patch technique

  13. STN EN 13036-4 Road and airfield surface characteristics. Test methods. Part 4: Method for measurement of slip/skid resistance of a surface: The pendulum test

  14. STN EN 13473-1 Characterization of pavement texture by use of surface profiles - Part 1: Determination of Mean Profile Depth

  15. STN EN ISO 4287. Geometrical Product Specifications (GPS). Surface texture: Profile method - Terms, definitions and surface texture parameters (ISO 4287:1998)

  16. ABE, H., HENRY, J.J., WAMBOLD, J., and TAMAI, A .: Measurement of Pavement Macrotexture with Circular Texture Meter, Transportation Research Record 1764, Transportation Research Board, National Research Council, Washington. This contribution is the result of the project implementation: "Promotion & Enhancement of Center for Research on Transportation" (ITMS: 26220220160) supported by the Rese arch & Development Operational Programme funded by the ERDF. International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org

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Number of times cited according to Crossref: 2

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