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Example text
Form is at the edges, diagram in the middle. Spatially, it results in a porous bone-like structure, in which the surface shell is more dense and solid than the inside. It is not a Cartesian option but more an actual fuzzy material state of ‘in between’ that is internalized and functioning. C00: corner node M00: mid node : transit users : users of site Diagrams showing the application of the hair system algorithm on the project’s site and the resulting two-dimensional circulation patterns and programmatic zones 34 35 SITE EDGE CONDITIONS 3D HAIR SITE SETUP : lobbies C00: corner node M00: mid node : transit users : users of site diagrams showing the 3D setup of the additional nodes and the application of the hair dynamics algorithm within the boundaries of the site of the project 36 37 HIGH DENSITY MEDIUM DENSITY LOW DENSITY 38 Sequence showing the evolution of the infrastructural system and the vertical organization 38 39 40 CIRCULATION After numerous iterations; the network of hair lines bundles together and reaches a stable state.
This emerging vertical pattern of the floor plates stands out against the layered organization of the existing model of Center Point. 5M 51 10M 10M 10M 10M 10M 52 Series of diagrams explaining the transformation of the linear structural grid of the existing fabric into the non linear grid of the proposed project 53 SITE SETUP CIRCULATION TUBES 3D HAIR DIAGRAM SELECTED CONES PROGRAM 2D GROUND GRID GC FLOORS 3D DEFORMED GRID PERSPECTIVE BOUNDARIES CONES 2D DEFORMED GRID PERSPECTIVE 3D LEVELS / PROGRAMME CONES TECTONICS Through various digital experiments with the hair system, logics for structural capabilities are sieved out; rules are extracted regarding the fillet angles and radii at the branching intersections, and the thicknesses related to the length of the branches.
54 55 56 57 58 LATTICE Generative Components was used to design the components and lattices as well as the myriad variations to meet precisely the needs for structural and organizational differentiation. Interrelations established between components proliferate them, seamlessly achieving a differential distribution of material with flawless continuity. Various embedded digital features are then explored to test different component spreading modes. The components are spread over different surfaces and point grids controlled by law curves that provide control over the various possible deformations of the surfaces.