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A computational workflow for design-to-assembly of shingle covering systems for multi-curved surface structures

Publications: Contribution to conferencePaperResearchpeer-review

Abstract

Shingle covering of multi-curved surfaces is usually a manual process with no precise plan for the arrangement and assembly of shingle elements. Such processes lack the computational capacity of algorithmic methods for modeling, analysis, and optimization of shingle systems within a seamless digital workflow. As a solution, this paper presents an algorithmic procedure for the design and assembly of shingle covering systems for multi-curved surface structures. The proposed algorithm evaluates the reference surface curvatures to generate an efficient layout of shingles of identical size. The proposed model generates the arrangement of shingles based on given input parameters, including the shingle dimensions and overlapping domains. For a precise and quick on-site assembly, the corresponding nailing strips are also automatically generated on which the shingles could be installed. The applications and limitations of the proposed algorithm are discussed through a detailed analysis of various case studies.
Original languageEnglish
Publication date2022
DOIs
Publication statusPublished - 2022
Externally publishedYes
EventeCAADe2022: Co-creating the Future: Inclusion in and through Design - KU Leuven Technology Campus, Ghent, Belgium
Duration: 13 Sept 202216 Sept 2022
Conference number: 40
https://kuleuven.ecaade2022.be/

Conference

ConferenceeCAADe2022
Number40
LocationKU Leuven Technology Campus
Country/TerritoryBelgium
CityGhent
Period13/09/202216/09/2022
Internet address

Keywords

  • Shingle Covering
  • Algorithmic Design
  • Concave Surface
  • Multi-Curvature Surface
  • Overlapping Domain
  • Curvature Dependent Spacing
  • Timber Strips

Artistic research

  • No

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