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AuthorJiménez Rios, Alejandro
AuthorRuiz-Capel, Samuel
AuthorPlevris, Vagelis
AuthorNogal, Maria
Available date2024-10-02T05:59:49Z
Publication Date2023
Publication NameFrontiers in Built Environment
ResourceScopus
ISSN22973362
URIhttp://dx.doi.org/10.3389/fbuil.2023.1219108
URIhttp://hdl.handle.net/10576/59651
AbstractEarthen structures have an important representation among the UNESCO World Heritage List sites as well as among the built environment in general. Unfortunately, earthen heritage structures are also numerous within the UNESCO List of World Heritage in Danger whereas other existing common earthen structures are extremely vulnerable to seismic and climate change events. Within the field of heritage conservation, structural analysis contributes to the safety evaluation of the structure, the diagnosis of the causes of damage and decay, and to the validation of interventions. Thus, the need to develop effective and accurate computational methods suitable for the study of both monumental and vernacular earthen structures becomes evident. This paper compiles, summarizes, and highlights the latest developments and implementations of computational methods for the study of such structure typologies. The literature has been explored following the PRISMA-S checklist methodology and a narrative synthesis was used for the presentation of results. Finally, future trends, opportunities, and challenges are discussed.
SponsorThis project has received funding from the European Union's Horizon 2020 research and innovation programme under the Marie Sklodowska-Curie grant agreement No. 101066739. The APC was funded by Oslo Metropolitan University (OsloMet).
Languageen
PublisherFrontiers Media SA
Subjectadobe
cob
discrete element method
finite element method
limit analysis
rammed earth
TitleComputational methods applied to earthen historical structures
TypeOther
Volume Number9
dc.accessType Open Access


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