combine@alvar.ug

Modeling Selection Criteria for Reinforcement Steel Bars with Stochastic Carbon Equivalent distribution

Modeling Selection Criteria for Reinforcement Steel Bars with Stochastic Carbon Equivalent distribution

Show simple record

dc.contributor.author Christopher Senfuka
dc.contributor.author Paul Kizito
dc.date.accessioned 2021-01-10T11:55:46Z
dc.date.available 2021-01-10T11:55:46Z
dc.date.issued 2015
dc.identifier.issn 23518014
dc.identifier.uri https://combine.alvar.ug/handle/1/49175
dc.description.abstract Deciding the functional suitability of recycled steel using carbon equivalent (CE) and strength can be misleading since the formulae used to determine CE do not capture many of the elements that play a decisive role in establishing steel values. In this study, a mathematical model is developed to optimize the selection decision from a steel manufacturer considering a stochastic CE distribution. In the given model, a building/fabrication contractor intends to select one of two manufacturers of recycled steel bars basing on CE as determined by the IIW formula and strength values selected in equal monthly intervals. A Markov decision process approach is adopted where three states of a Markov chain represent possible states of CE of steel bars. The ultimate strength, σ u, of steel is maximized for minimum CE where the decision to select the best steel is made using dynamic programming over a finite period planning horizon. A numerical example demonstrates the existence of an optimal state-dependent selection decision and strength of steel over the planning horizon.
dc.relation.ispartof International journal of innovation and scientific research
dc.title Modeling Selection Criteria for Reinforcement Steel Bars with Stochastic Carbon Equivalent distribution
dc.type journal article
dc.identifier.mag 2096826897
dc.identifier.lens 061-317-806-644-306
dc.identifier.volume 17
dc.identifier.issue 2
dc.identifier.spage 370
dc.identifier.epage 380
dc.subject.lens-fields Markov decision process
dc.subject.lens-fields Ultimate tensile strength
dc.subject.lens-fields Mathematical optimization
dc.subject.lens-fields Engineering
dc.subject.lens-fields Time horizon
dc.subject.lens-fields Dynamic programming
dc.subject.lens-fields Carbon
dc.subject.lens-fields Reinforcement
dc.subject.lens-fields Forensic engineering
dc.subject.lens-fields Markov chain


This record appears in the collections of the following institution(s)

Show simple record

Search Entire Database


Browse

My Account