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International Journal of Architectural Heritage
Conservation, Analysis, and Restoration
Volume 13, 2019 - Issue 8
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Articles

Diagnostics of pillars in St. Mary’s Church (Gdańsk, Poland) using the GPR method

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Pages 1223-1233 | Received 01 Mar 2018, Accepted 12 Jul 2018, Published online: 13 Aug 2018

References

  • Binda, L., A. Saisi, C. Tiraboschi, S. Valle, C. Colla, and M. Forde. 2003. Application of sonic and radar tests on the piers and walls of the cathedral of Noto. Construction and Building Materials 17 (8):613–27. doi:10.1016/S0950-0618(03)00056-4.
  • Binda, L., A. Saisi, and L. Zanzi. 2003. Sonic tomography and flat-jack tests as complementary investigation procedures for the stone pillars of the temple of S. Nicolo 1’Arena (Italy). NDT and E International 36 (4):215–27. doi:10.1016/S0963-8695(02)00066-X.
  • Binda, L., L. Zanzi, M. Lualdi, and P. Condoleo. 2005. The Use of Georadar to Assess Damage to a masonry bell tower in Cremona, Italy. NDT and E International 38 (3):171–79. doi:10.1016/j.ndteint.2004.03.010.
  • Bogdanowicz, S. 1990. Sacred Art of the Basilica of St. Mary’s Church in Gdańsk. in Polish. Gdańsk: Stella Maris.
  • Cetrangolo, G. P., L. D. Domenech, G. Moltini, and A. A. Morquio. 2017. Determination of moisture content in ceramic brick walls using ground penetration radar. Journal of Nondestructive Evaluation 36:1–12. doi:10.1007/s10921-016-0390-4.
  • Hamrouche, R., G. Klysz, J.-P. Balayssac, J. Rhazi, and G. Ballivy. 2012. Numerical simulations and laboratory tests to explore the potential of Ground-Penetrating Radar (GPR) in detecting unfilled joints in brick masonry structures. International Journal of Architectural Heritage 6 (6):648–64. doi:10.1080/15583058.2011.597484.
  • Hayakawa, H., and A. Kawanaka. 1998. Radar imaging of underground pipes by automated estimation of velocity distribution versus depth. Journal of Applied Geophysics 40:37–48. doi:10.1016/S0926-9851(98)00028-7.
  • Imposa, S., and G. Mele. 2011. Ground penetrating radar survey inside the S. Agata Cathedral of Catania (Eastern Sicily). International Journal of Architectural Heritage 5 (2):188–97. doi:10.1080/15583050903487625.
  • Júlio, E. S., F. Branco, and V. D. Silva. 2003. Structural rehabilitation of columns with reinforced concrete jacketing. Progress in Structural Engineering and Materials 5 (1):29–37. doi:10.1002/pse.140.
  • Lachowicz, J., and M. Rucka. 2018. 3-D finite-difference time-domain modelling of ground penetrating radar for identification of rebars in complex reinforced concrete structures. Archives of Civil and Mechanical Engineering 18 (4):1228–40. Politechnika Wrocławska:. doi:10.1016/j.acme.2018.01.010.
  • Lai, W. L., T. Kind, S. Kruschwitz, J. Wöstmann, and H. Wiggenhauser. 2014. Spectral absorption of spatial and temporal ground penetrating radar signals by water in construction materials. NDT and E International 67:55–63. Elsevier. doi:10.1016/j.ndteint.2014.06.009.
  • Leucci, G. 2012. Ground penetrating radar: An application to estimate volumetric water content and reinforced bar diameter in concrete structures. Journal of Advanced Concrete Technology 10 (12):411–22. doi:10.3151/jact.10.411.
  • Leucci, G., R. Cataldo, and G. De Nunzio. 2007. Assessment of fractures in some columns inside the crypt of the cattedrale Di Otranto using integrated geophysical methods. Journal of Archaeological Science 34 (2):222–32. doi:10.1016/j.jas.2006.04.012.
  • Leucci, G., N. Masini, R. Persico, and F. Soldovieri. 2011. GPR and sonic tomography for structural restoration: The case of the cathedral of Tricarico. Journal of Geophysics and Engineering 8:3. doi:10.1088/1742-2132/8/3/S08.
  • Maierhofer, C., and S. Leipold. 2001. Radar investigation of masonry structures. NDT and E International 34 (2):139–47. doi:10.1016/S0963-8695(00)00038-4.
  • Marquardt, D. W. 1963. An algorithm for least-squares estimation of nonlinear parameters. Journal of the Society for Industral and Applied Mathematics 11 (2):431–41. doi:10.1137/0111030.
  • Özdemir, C., Ş. Demirci, and E. Yiǧit. 2008. Practical algorithms to focus B-Scan gpr images: Theory and application to real data. Progress In Electromagnetics Research B 6:109–22. doi:10.2528/PIERB08031207.
  • Özdemir, C., Ş. Demirci, E. Yiǧit, and B. Yilmaz. 2014. A review on migration methods in B-scan ground penetrating radar imaging. Mathematical Problems in Engineering 2014 (1):789–93. doi:10.1155/2014/280738.
  • Pérez-Gracia, V., J. O. Caselles, J. Clapés, G. Martinez, and R. Osorio. 2013. Non-destructive analysis in cultural heritage buildings: evaluating the mallorca cathedral supporting structures. NDT and E International 59:40–47. Elsevier. doi:10.1016/j.ndteint.2013.04.014.
  • Pérez-Gracia, V., D. Di Capua, O. Caselles, F. Rial, H. Lorenzo, R. González-Drigo, and J. Armesto. 2011. Characterization of a Romanesque Bridge in Galicia (Spain). International Journal of Architectural Heritage 5 (3):251–63. doi:10.1080/15583050903560249.
  • Persico, R., G. Leucci, L. Matera, L. De Giorgi, F. Soldovieri, A. Cataldo, G. Cannazza, and E. De Benedetto. 2015. Effect of the height of the observation line on the the diffraction curve in GPR prospecting. Near Surface Geophysics 13 (3):243–52. doi:10.3997/1873-0604.2014042.
  • Ristic, A. V., D. Petrovacki, and M. Govedarica. 2009. A new method to simultaneously estimate the radius of a cylindrical object and the wave propagation velocity from GPR data. Computers and Geosciences 35 (8):1620–30. doi:10.1016/j.cageo.2009.01.003.
  • Rucka, M., J. Lachowicz, and M. Zielińska. 2016. GPR investigation of the strengthening system of a historic masonry tower. Journal of Applied Geophysics 131:94–102. doi:10.1016/j.jappgeo.2016.05.014.
  • Sagnard, F., and J.-P. Tarel. 2016. Template-matching based detection of hyperbolas in ground-penetrating radargrams for buried utilities. Journal of Geophysics and Engineering 13 (4):491–504. IOP Publishing:. doi:10.1088/1742-2132/13/4/491.
  • Santos-Assunçao, S., V. Perez-Gracia, O. Caselles, J. Clapes, and V. Salinas. 2014. Assessment of complex masonry structures with GPR compared to other non-destructive testing studies. Remote Sensing 6 (9):8220–37. doi:10.3390/rs6098220.
  • Sfarra, S., A. Bendada, C. Ibarra-Castanedo, D. Ambrosini, D. Paoletti, and X. Maldague. 2015. Santa Maria Di Collemaggio Church (L’Aquila, Italy): Historical reconstruction by non-destructive testing techniques. International Journal of Architectural Heritage 9 (4):367–90. doi:10.1080/15583058.2013.794376.
  • Sham, J. F. C., and W. W.-L. Lai. 2016. Development of a new algorithm for accurate estimation of GPR’s wave propagation velocity by common-offset survey method. NDT and E International 83:104–13. doi:10.1016/j.ndteint.2016.05.002.
  • Stryk, J., A. M. Alani, R. Matula, and K. Pospisil. 2015. Innovative inspection procedures for effective GPR surveying of critical transport infrastructures (Pavements, Bridges and Tunnels). In Civil engineering applications of ground penetrating radar, edited by A. Benedetto, and L. Pajewski, 71–95. London, UK: Springer.
  • Trojanowska, I., ed. 1997. Memories of the reconstruction of the main city. in Polish: Marpress.
  • Warren, C., A. Giannopoulos, and I. Giannakis. 2016. GprMax: Open source software to simulate electromagnetic wave propagation for ground penetrating radar. Computer Physics Communications 209:163–70. doi:10.1016/j.cpc.2016.08.020.
  • Zendri, E., L. Falchi, F. C. Izzo, Z. M. Morabito, and G. Driussi. 2017. A review of common NDTs in the monitoring and preservation of historical architectural surfaces. International Journal of Architectural Heritage 11 (7):987–1004. doi:10.1080/15583058.2017.1331477.

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