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Editorial

Selected Papers from the 12th International Conference on Structural Analysis of Historical Constructions (SAHC 2021)

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References

  • Aguilar, R., S. Huaranga, P. Pórcel, and G. Zavala. 2022. Seismic vulnerability assessment of Andean constructions: Structural typification of historical churches using digital technologies. International Journal of Architectural Heritage 1–14. doi:10.1080/15583058.2022.2114863.
  • Coz-Díaz, J. J., A. Lozano Martínez-Luegas, M. Alonso-Martínez, and F. P. Álvarez-Rabanal. 2022. Non-linear hygrothermal structural analysis of the elliptical dome of the church in the Universidad Laboral, Gijon, Spain. International Journal of Architectural Heritage 1–10. doi:10.1080/15583058.2022.2089070.
  • Damiani, N., Miglietta, M. Guerrini, G. and Graziotti, F. 2022. Numerical assessment of the seismic performance of a modular timber retrofit solution for unreinforced masonry buildings. International Journal of Architectural Heritage 1–20. doi:10.1080/15583058.2022.2106461.
  • Ferrero, C., R. Berardi, C. Calderini, L. Cambiaggi, and R. Vecchiatini. 2022. A geotechnical analysis to assess the effect of slow-moving landslides on historic masonry churches. International Journal of Architectural Heritage 1–20. doi:10.1080/15583058.2022.2125354.
  • Formisano, A., and N. Chieffo. 2022. Seismic damage scenarios induced by site effects on masonry clustered buildings: A case study in South Italy. International Journal of Architectural Heritage 1–22. doi:10.1080/15583058.2022.2104143.
  • Fusco, D., D. Addessi, F. Messali, J. G. Rots, and S. Pampanin. 2022. An analytical and numerical approach for shear failure of pier-wall connections in typical Dutch URM buildings. International Journal of Architectural Heritage 1–20. doi:10.1080/15583058.2022.2122762.
  • Masciotta, M. G., L. J. Sanchez-Aparicio, D. V. Oliveira, and D. Gonzalez-Aguilera. 2022. Integration of laser scanning technologies and 360° photography for the digital documentation and management of cultural heritage buildings. International Journal of Architectural Heritage 1–20. doi:10.1080/15583058.2022.2069062.
  • Mehrotra, A., A. Liew, P. Block, and M. J. DeJong. 2022. An integrated modelling approach for the seismic collapse assessment of masonry towers. International Journal of Architectural Heritage 1–24. doi:10.1080/15583058.2022.2139207.
  • Moreno Regan, O., E. Bourgeois, and J. F. Douroux. 2022. On the stability of underground masonry vaults: The case of the Mairie d’Ivry station of the Paris metro. International Journal of Architectural Heritage 1–22. doi:10.1080/15583058.2022.2108354.
  • Mousavian, E., K. Bagi, and C. Casapulla. 2022. Torsion-shear behaviour at interlocking joints: Calibration of discrete element-deformable models using experimental and numerical analyses. International Journal of Architectural Heritage 1–18. doi:10.1080/15583058.2022.2101034.
  • Petracca, M., G. Camata, E. Spacone, and L. Pelà. 2022. Efficient constitutive model for continuous micro-modeling of masonry structures. International Journal of Architectural Heritage 1–13. doi:10.1080/15583058.2022.2124133.
  • Rozsas, A., A. Slobbe, W. Huizinga, M. Kruithof, K. A. Pillai, K. Kleijn, and G. Giardina. 2022. Siamese convolutional neural networks to quantify crack pattern similarity in masonry facades. International Journal of Architectural Heritage 1–23. doi:10.1080/15583058.2022.2134062.
  • Spinelli, P., L. Salvatori, R. Lancellotta, and M. Betti. 2022. Preliminary assessment of the seismic risk of Giotto’s bell tower in florence. International Journal of Architectural Heritage 1–22. doi:10.1080/15583058.2022.2145527.
  • Valluzzi, M. R., M. Drdacky, M. Kloiber, and F. Casarin. 2022. Comparative evaluation of investigation testing methods in timber elements considering moisture content. International Journal of Architectural Heritage 1–19. doi:10.1080/15583058.2022.2142698.
  • Zielińska, M., and M. Rucka. 2022. Assessment of wooden beams from historical buildings using ultrasonic transmission tomography. International Journal of Architectural Heritage 1–13. doi:10.1080/15583058.2022.2086505.

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