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Engineering characteristics of dune sand-fine marble waste mixtures
  • Qureshi, Mohsin U. ;
  • Mahmood, Zafar ;
  • Farooq, Qazi U. ;
  • Qureshi, Qadir B.I.L. ;
  • Al-Handasi, Hajar ;
  • Chang, Ilhan
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dc.contributor.authorQureshi, Mohsin U.-
dc.contributor.authorMahmood, Zafar-
dc.contributor.authorFarooq, Qazi U.-
dc.contributor.authorQureshi, Qadir B.I.L.-
dc.contributor.authorAl-Handasi, Hajar-
dc.contributor.authorChang, Ilhan-
dc.date.issued2022-03-25-
dc.identifier.urihttps://dspace.ajou.ac.kr/dev/handle/2018.oak/32628-
dc.description.abstractDune sands are poorly graded collapsible soils lacking fines. This experimental study explored the technical feasibility of sustainable invigoration of fine waste materials to improve the geotechnical properties of dune sand. The fine waste considered in this study is fine marble waste. The fine waste powder was mixed with dune sand at different contents (5, 10,15, 20, 25, 50%), where the gradation, void ratio, compaction, and shear strength characteristics were assessed for each fine marble waste-dune sand blend. The geotechnical properties of the dune sand-fine marble waste mix delineated in this study reveal the enhancement in compaction and gradation characteristics of dune sand. According to the results, the binary mixture of dune sand with 20% of fine marble waste gives the highest maximum dry density and results in shear strength improvement. In addition, a numerical study is conducted for the practical application of the binary mix in the field and tested for an isolated shallow foundation. The elemental analysis of the fine marble waste confirms that the material is non-contaminated and can be employed for engineering applications. Furthermore, the numerical study elucidated that the shallow surface replacement of the site with the dune sand mixed with 20% fine marble waste gives optimal performance in terms of stress generation and settlement behavior of an isolated footing. For a sustainable mechanical performance of the fine marble waste mixed sand, an optimum dose of 20% fine marble waste is recommended, and some correlations are proposed. Thus, for improving dune sand’s geotechnical characteristics, the addition of fine marble waste to the dune sand is an environment-friendly solution.-
dc.description.sponsorshipThe research described in this paper was supported by the financial support provided by Sohar University, Oman. The authors are also indebted to their colleagues at the Sohar University for continuous support during the laboratory experimental programs.-
dc.language.isoeng-
dc.publisherTechno-Press-
dc.subject.meshCollapsible soil-
dc.subject.meshDunes sands-
dc.subject.meshEngineering characteristics-
dc.subject.meshFine marble wastes-
dc.subject.meshFine wastes-
dc.subject.meshGeotechnical properties-
dc.subject.meshShallow foundations-
dc.subject.meshShears strength-
dc.subject.meshVoids ratio-
dc.subject.meshWaste mixtures-
dc.titleEngineering characteristics of dune sand-fine marble waste mixtures-
dc.typeArticle-
dc.citation.endPage557-
dc.citation.startPage547-
dc.citation.titleGeomechanics and Engineering-
dc.citation.volume28-
dc.identifier.bibliographicCitationGeomechanics and Engineering, Vol.28, pp.547-557-
dc.identifier.doi10.12989/gae.2022.28.6.547-
dc.identifier.scopusid2-s2.0-85127455997-
dc.identifier.urlhttp://www.techno-press.org/download2.php?journal=gae&volume=28&num=6&ordernum=1-
dc.subject.keyworddune sand-
dc.subject.keywordfine marble waste-
dc.subject.keywordnumerical modelling-
dc.subject.keywordshallow foundation-
dc.subject.keywordshear strength-
dc.subject.subareaCivil and Structural Engineering-
dc.subject.subareaGeotechnical Engineering and Engineering Geology-
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Chang, Il Han장일한
Department of Civil Systems Engineering
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