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Πεδίο DCΤιμήΓλώσσα
dc.contributor.authorPantelidis, Lysandros-
dc.date.accessioned2015-06-08T08:10:27Z-
dc.date.accessioned2015-12-02T09:05:16Z-
dc.date.available2015-06-08T08:10:27Z-
dc.date.available2015-12-02T09:05:16Z-
dc.date.issued2009-02-
dc.identifier.citationInternational Journal of Rock Mechanics and Mining Sciences, 2009, vol. 46, no. 2, pp. 315–325en_US
dc.identifier.issn13651609-
dc.identifier.urihttps://hdl.handle.net/20.500.14279/1269-
dc.description.abstractOver the last several decades, rock mass classification systems have been proposed in order that cuttings at high risk for failure be identified, and preventive measures be effectively prioritized. The present paper attempts a review of the systems in question, illustrating the main differences and similarities among them, which are focused on the types of failures considered and the factors involved. The reliability of these systems is discussed as well. Relatively, these systems contain factors which raise queries about their suitability or the manner by which they are attributed into them. Moreover, although a rock cut failure event presupposes the action of a triggering factor (e.g., earthquake, precipitation), rock mass classification systems, by omitting it, do not classify cuttings according to their actual hazard (potentiality) for failure. Groundwater, when it is not erroneously ignored, is taken into account as instability factor with limited effect upon the systems (<15%) and not as a triggering factor for failure. Additionally, a number of suggestions regarding rock mass classification systems are given. Relatively, it is recommended rock cuttings to be classified according to their failure hazard taking into account both their condition and the influence of triggering factors upon stability. Moreover, each type of failure should be examined independently, as each one of them is governed by specific instability factors. Finally, some recommendations concerning amalgamation of factors, the possible ways that water may trigger a failure and the quantification of the most common triggering factors for failure (earthquake and precipitation) are provided.en_US
dc.formatpdfen_US
dc.language.isoenen_US
dc.relation.ispartofInternational Journal of Rock Mechanics and Mining Sciencesen_US
dc.rights© Elsevieren_US
dc.subjectRock mass rating (RMR)en_US
dc.subjectSMRen_US
dc.subjectGSIen_US
dc.subjectRock mass classification systemsen_US
dc.subjectRock slopesen_US
dc.titleRock slope stability assessment through rock mass classification systemsen_US
dc.typeArticleen_US
dc.collaborationAristotle University of Thessalonikien_US
dc.subject.categoryMaterials Engineeringen_US
dc.journalsSubscriptionen_US
dc.reviewPeer Revieweden
dc.countryGreeceen_US
dc.subject.fieldEngineering and Technologyen_US
dc.publicationPeer Revieweden_US
dc.identifier.doi10.1016/j.ijrmms.2008.06.003en_US
dc.dept.handle123456789/54en
dc.relation.issue2en_US
dc.relation.volume46en_US
cut.common.academicyear2008-2009en_US
dc.identifier.spage315en_US
dc.identifier.epage325en_US
item.fulltextNo Fulltext-
item.languageiso639-1en-
item.grantfulltextnone-
item.openairecristypehttp://purl.org/coar/resource_type/c_6501-
item.cerifentitytypePublications-
item.openairetypearticle-
crisitem.journal.journalissn1365-1609-
crisitem.journal.publisherElsevier-
crisitem.author.deptDepartment of Civil Engineering and Geomatics-
crisitem.author.facultyFaculty of Engineering and Technology-
crisitem.author.orcid0000-0001-5979-6937-
crisitem.author.parentorgFaculty of Engineering and Technology-
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