Fuzzy uncertainty and its applications in reinforced concrete structures

dc.contributor.authorWorabo Woju, U.W.
dc.contributor.authorBalu, A.S.
dc.date.accessioned2026-02-05T09:28:17Z
dc.date.issued2020
dc.description.abstractPurpose: The aim of this paper is mainly to handle the fuzzy uncertainties present in structures appropriately. In general, uncertainties of variables are classified as aleatory and epistemic. The different sources of uncertainties in reinforced concrete structures include the randomness, mathematical models, physical models, environmental factors and gross errors. The effects of imprecise data in reinforced concrete structures are studied here by using fuzzy concepts. The aim of this paper is mainly to handle the uncertainties of variables with unclear boundaries. Design/methodology/approach: To achieve the intended objective, the reinforced concrete beam subjected to flexure and shear was designed as per Euro Code (EC2). Then, different design parameters such as corrosion parameters, material properties and empirical expressions of time-dependent material properties were identified through a thorough literature review. Findings: The fuzziness of variables was identified, and their membership functions were generated by using the heuristic method and drawn by MATLAB R2018a software. In addition to the identification of fuzziness of variables, the study further extended to design optimization of reinforced concrete structure by using fuzzy relation and fuzzy composition. Originality/value: In the design codes of the concrete structure, the concrete grades such as C16/20, C20/25, C25/30, C30/37 and so on are provided and being adopted for design in which the intermediate grades are not considered, but using fuzzy concepts the intermediate grades of concrete can be recognized by their respective degree of membership. In the design of reinforced concrete structure using fuzzy relation and composition methods, the optimum design is considered when the degree of membership tends to unity. In addition to design optimization, the level of structural performance evaluation can also be carried out by using fuzzy concepts. © 2020, Emerald Publishing Limited.
dc.identifier.citationJournal of Engineering, Design and Technology, 2020, 18, 5, pp. 1175-1191
dc.identifier.issn17260531
dc.identifier.urihttps://doi.org/10.1108/JEDT-10-2019-0281
dc.identifier.urihttps://idr.nitk.ac.in/handle/123456789/23772
dc.publisherEmerald Group Holdings Ltd.
dc.subjectCodes (symbols)
dc.subjectConcrete beams and girders
dc.subjectConcrete buildings
dc.subjectConcrete construction
dc.subjectCorrosion
dc.subjectFuzzy set theory
dc.subjectFuzzy sets
dc.subjectHeuristic methods
dc.subjectMATLAB
dc.subjectMembership functions
dc.subjectOptimization
dc.subjectStructural analysis
dc.subjectDesign optimization
dc.subjectDesign/methodology/approach
dc.subjectFuzzy relations
dc.subjectReinforced concrete beams
dc.subjectSet operation
dc.subjectSources of uncertainty
dc.subjectStructural performance evaluations
dc.subjectTime-dependent material properties
dc.subjectReinforced concrete
dc.titleFuzzy uncertainty and its applications in reinforced concrete structures

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