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Arwin Hidding

Abstract

The goal of the design studio is to formulate a design proposal for a 7000 m2 pavilion for the World Expo in 2025 in Rotterdam. The theme of the world expo is: where ambition turns environmental challenges into economic opportunities. The building industry is a large polluter, since manufacturing processes cause a lot of waste and has a high energy consumption. The paradigm shift from mass standardization to mass customization is made possible by the third industrial revolution, namely the robotization of the manufacturing industry. When the manufacturing processes in the building industry are robotized this could reduce energy consumption, reduce waste, increase efficiency and use less materials while allowing humans to specialize. Robotic devices are already being used in the manufacturing industry, but they are not being used to their full potential. The tasks they are most commonly given are repetitive, because of limitations in the software and willingness/knowledge of manufactures. The pavilion should showcase the development of the robotic devices that will allow for mass customization in the building industry. ROS industrial consortium is a developer of open source robotic software and apply the software to the manufacturing industry. During the World Expo, the ROS industrial consortium will exhibit the newest technologies and showcase the major developments. After the World Expo the pavilion will be used as a research, education and conference centre by ROS.

Research questions - In what way can the pavilion be shaped so the visitor will be stimulated to explore the pavilion and its exhibitions? - In what way can the paths to the pavilion and inside the pavilion be shaped to account for these people flows? - The inhabitants of the Noordereiland in Rotterdam appreciate the park space on the chosen site. In what way can the pavilion be placed to maintain or improve the qualities that are present on the site?

Exploring Networks


Slide 3 DONE.jpg Slide 4 DONE.jpg Slide 5 DONE.jpg Slide 6 exploring DONE.jpg Slide 7 problem people flows DONE.jpg Slide 8 site rotterdam scale DONE.jpg Slide 9 site scale DONE.jpg Slide 10 major traffic DONE.jpg Slide 11 major traffic connections DONE.jpg Slide 12 infrastructure existing DONE.jpg Slide 12 sound DONE version 2.jpg Slide 13 Requirements spaces DONE.jpg Slide 14 connectivity diagram DONE.jpg Slide 15 function placement research2 DONE.jpg Slide 16 Function placement processing.png Slide 17 result in grasshopper function placement.png Slide 18 ground floor.png Slide 19 first floor.png Slide 21 paths to pavilion scheme.jpg Slide 22 simulation path first generation.png Slide 22-b simulation path first generation.png Slide 23 path the pavilion result.png Slide 24 second generation paths.png Slide 25 section.png Slide 26 site plan.png Slide 27 floorplan beg grond.png Slide 28 floorplan-2.png P2 Workshop.png P2 Sketch.png P2 Process.png P2 Data Fields.png P2 Prototype.png P2 Components.png P2 D2RP Results-17.png Robot Path 1.jpg Robot Path 2.jpg Robot Path 3.jpg Robot Path 4.jpg Robot Path 5.jpg Robot Path 6.jpg Robot Path 7.jpg Robot Path 8.jpg Robot Path 9.jpg Robot Path 10.jpg Robot Path 11.jpg P2 Cells 1.png P2 Cells 5.png P2 Cells 2.png P2 Cells 3.png P2 Cells 4.png Screenshot 2015-12-15 15.10.42.png Screenshot 2015-12-15 16.33.05.png Screenshot 2016-01-11 17.49.56.png Screenshot 2016-01-11 18.37.27.png Tessellation2 2.png


Parametric functions placement in Processing