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Stress Line Generation for Structurally Performative Architectural Design (2015)

article⁄Stress Line Generation for Structurally Performative Architectural Design (2015)
abstract⁄Principal stress lines, which are pairs of orthogonal curves that indicate trajectories of internal forces and therefore idealized paths of material continuity, naturally encode the optimal topology for any structure for a given set of boundary conditions. Although stress line analysis has the potential to offer a direct, and geometricallyprovocative approach to optimization that can synthesize both design and structural objectives, its application in design has generally been limited due to the lack of standardization and parameterization of the process for generating and interpreting stress lines. Addressing these barriers that limit the application of the stress line methods, this paper proposes a new implementation framework that will enable designers to take advantage of stress line analysis to inform conceptual structural design. Central to the premise of the research proposal is a new conception of structurallyinspired design exploration that does not impose a singular solution, but instead allows for the exploration of a diverse highperformance design space in order to balance the combination of structural and architectural design objectives.
keywords⁄topological optimizationstructural optimizationconceptual structural designprincipal stress linesprincipal stress directionsoptimal structuresinterdisciplinary design2015
Year 2015
Authors Tam, Kam-Ming Mark; Mueller, Caitlin.
Issue ACADIA 2105: Computational Ecologies: Design in the Anthropocene
Pages 95-109
Library link N/A
Entry filename stress-line-generation-structurally-performative-architectural