Development of a blockchain-enabled smart contract framework for linear construction projects.

dc.contributor.authorAnil, NA
dc.contributor.authorPrabhu, P
dc.contributor.editorWaidyasekara, KGAS
dc.contributor.editorJayasena, HS
dc.contributor.editorChandanie, H
dc.contributor.editorTennakoon, GA
dc.date.accessioned2026-09-30T09:50:45Z
dc.date.issued2026
dc.description.abstractLarge-scale linear infrastructure projects such as high-speed rail corridors, metro systems, highways, and pipelines face major challenges in coordination, communication, material tracking, approval processes, and payment management due to their geographically distributed nature and involvement of multiple stakeholders. Conventional digital tools improve planning and monitoring but often fail to provide secure, transparent, and automated coordination across distributed project work fronts. Blockchain technology and smart contracts offer a decentralized and transparent solution for improving workflow synchronization, payment automation, material traceability, and progress verification in such projects. This paper introduces a blockchain-based smart contract implementation framework specifically designed for linear construction projects. The proposed framework deliberately avoids reliance on Building Information Modelling (BIM) and instead utilises chainage-based scheduling, integrated digital quantity and test records, and IoT/RFID-enabled logistics tracking. It adopts a seven-layer framework that segregates functions such as physical data capture, scheduling, quantity management, smart contract logic, blockchain infrastructure, user interfaces, and governance. The framework defines a segment-oriented workflow covering progress certification, material traceability, interface coordination across civil sub-zones and functional areas, and automated retention release. A schematic flowchart illustrates the end-to-end data and control sequence for a typical corridor segment. The paper further examines expected benefits—enhanced transparency, faster payment cycles, improved traceability, and better interface control—alongside key challenges in implementation, interoperability, scalability, and integration with existing construction management practises.
dc.identifier.citationAnil, N.A. and Prabhu, P. (2026). Development of a blockchain-enabled smart contract framework for linear construction projects. In K.G.A.S. Waidyasekara, H.S. Jayasena, P.L.I. Wimalaratne, & G.A. Tennakoon (Eds.), World Construction Symposium – 2026 : 14th World Construction Symposium (pp. 539-551). Department of Building Economics, University of Moratuwa. https://doi.org/10.31705/WCS.2026.40
dc.identifier.conferenceWorld Construction Symposium - 2026
dc.identifier.departmentDepartment of Building Economics
dc.identifier.doihttps://doi.org/10.31705/WCS.2026.40
dc.identifier.emailaswathy.kure@gmail.com
dc.identifier.emailprabu@nitt.edu
dc.identifier.facultyArchitecture
dc.identifier.issn2362-0919
dc.identifier.pgnospp. 539-551
dc.identifier.placeColombo
dc.identifier.proceeding14th World Construction Symposium - 2026
dc.identifier.urihttps://dl.lib.uom.lk/handle/123/25644
dc.language.isoen
dc.publisherDepartment of Building Economics
dc.subjectBLOCKCHAIN
dc.subjectLINEAR INFRASTRUCTURE
dc.subjectPRODUCTIVITY IMPROVEMENT
dc.subjectSMART CONTRACTS
dc.subjectSUPPLY CHAIN.
dc.titleDevelopment of a blockchain-enabled smart contract framework for linear construction projects.
dc.typeConference-Full-text

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