Resource

-Research Node - Manufacturing Innovation
Journal Article

DIGITAL INTEGRATION THROUGH PARAMETRIC GEOMETRY GOVERNANCE: A FRAMEWORK FOR DESIGN-TO-MANUFACTURING IN PREFABRICATED TIMBER CONSTRUCTION

Research Node:
Manufacturing Innovation

Project:

Digital and Physical Systems Design for Optimised Design-to-Delivery of Prefabricated Timber Housing

Sasindu Samarawickrama, Tharaka Gunawardena, Priyan Mendis and Ding Wen Bao

Digital Integration Through Parametric Geometry Governance: A Framework for Design-to-Manufacturing in Prefabricated Timber Construction

https://doi.org/10.3390/app16126091

ABSTRACT

Prefabricated timber construction relies on coordinated digital processes that integrate architectural design, structural engineering, and manufacturing requirements. However, current industry practices are highly fragmented, with models often reconstructed across different software platforms, and collaboration is mainly focused on exchanging files and document-based approvals. These issues lead to geometric misalignments, delayed coordination of manufacturing limitations, and inefficient design-to-manufacturing workflows. This study introduces a parametric geometry-based integration framework aimed at enhancing digital continuity throughout the design, engineering, and manufacturing stages of prefabricated timber buildings. The framework offers a rule-based parametric system where geometry is governed by specific relationships and constraints, enabling the development of discipline-specific models from a unified computational source. A model was created using Rhinoceros and Grasshopper to generate a parametric timber module and to test cross-platform compatibility with structural analysis software (Dlubal) and manufacturing detailing software (Cadwork). The results show that parameter-driven geometry can be integrated across platforms, supporting reduced primary geometry re-authoring and improved cross-platform coordination within the proof-of-concept workflow. The framework extends technical validation by shifting parametric modelling from merely a generative design tool to a comprehensive infrastructure that supports industrialised timber workflows. The proposed approach provides a practical solution to enhance design-to-manufacturing integration in prefabricated construction, while maintaining modelling flexibility specific to each discipline.

KEYWORDS:

  • prefabricated timber construction;
  • building information modelling;
  • design-to-manufacturing integration;
  • parametric modelling;
  • computational design;
  • cross-platform integration;
  • structural and architectural design;
  • CAD/CAM


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