Growth Phases The first phase is to establish a park edge, a river edge, and mass transportation edge that connects with the TransMilenio Portal de la 80 station. Then, the development of mixed-use reisential space along the public spaces and the park edge. The park access will be a key node for transportation and for further development. Project Elements The project seeks to contrast the tendency of unmanaged development along transit infrastructure (fig1). It recognizes the roads as a system, as well as the various natural systems (green) and proposes a translator that softens the transition between the two. In addition, it stresses the importance of permeability and connection between the natural and the built, and the savanna/ wetlands and the rivers/mountain. Connectivity This image shows the strong relationship between the park entrance node, the transportation, the urban space, and the main axis that leads to the ecosystem of the savanna with a pedestrian connector. 11
Connectivity This image shows the strong relationship between the park entrance node, the transportation, the urban space, and the main axis that leads to the ecosystem of the savanna with a pedestrian connector. 12 Danniely Staback Portal de Tenjo
One to Three Storeys Max Building Envelope Two-Lane Light Road Bike Lane Malecón de la Sabana Rain Garden Vallado Gradual Transition Into Sabana Buffer Four to Five Storeys Building Envelope Vegetable Garden Lawn Two-Lane Road Bike Lane Permeable Pavement Rain Gardens Floodable Linear Park along Protected River Edge Buffer One to Three Storeys Building Envelope Commerce Rain Garden Pedestrian Bridge Residential Alameda Bike Lane Two-Lane Residential Road Two-Lane Industrial Road Sidewalk and Buffer New Industrial Corridor Buffer 13
14 Danniely Staback Fast, Cheap, Out of the Box
Programmable Sheet A sheet of fabric is sandwiched between complementary patterns of rigid panels. The different tolerances between panels prescribe the direction and extent of the folds, so that when the sheet is corrugated, it will aquire a pre-determined shape. Programmable Hinges This prototype combines material thickness and mitering of joints to fold the fl at, packable sheet to pre-determined angles. Folding is activated by inflation. Flexible Hinges This prototype tests a double layer of thin playwood and elastic fabric. The model folds into the minimun triangle, and pops three-dimensionally out of plane. FAST, CHEAP, OUT OF THE BOX MIT SAP 2016 J Addison M Thi Nguyen This on-going project is a research oriented development of alternative ways to conceive the deployment and construction of architecture. It challenges the current notions of time and scale, and pushes the tradional ideas of structure and enclosure. Our group approach was to tackle rigid folding, both geometrically and technotically, by offering different ways in which these preprogrammed packages could be easily deployed once on site, and then taken appart. We experimented with tension, infl atables, and elastics, aiming in each case to propose self-supporting, interactive structures. 1 2 3 4 15
OBJECTIFIED DESIGN 2013-2015 Three-Part-Joint with curvature continuity, where parts nestle perfectly into each other. Spinning top milled in 4-axis machine with exported parametrically controlled tool paths, rather than surfaces. Dry-Stacked arch segments in compression, casted on resinfi xed tensile fabric following a solver-generated hanging chain model. 16 Danniely Staback
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Parametric voronoi facade developed at/with Diaz Paunetto Arquitectos. Initial Shop Drawings and fabricaion images. Algorithm for discretization of closed geometry under the premise of poles of influence, into foldable parts. The obtained pieces, are assembled with nesting joints. The dimensions of the tabs, amount of subdivisions, and size of appertures (conceptually for economy of material) are variable parameters. MAIN SUNSCREEN DIMENSIONS FACA 18 Danniely Staback Objectified Design
A- MAIN SUNSCREEN DIMENSIONS FACADE PERSPECTIVE CONSTRUCTION DRAWINGS FOR: MEDINA GUZMÁN RESIDENCE IMPROVEMENTS 2014.016 19