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- 16 NovHenriette Bier acts as member of the scientific committee of Oxford Journal Interacting with Computers
- 16 NovA. Liu Cheng and H. Bier publish paper on Adaptive Building-Skin Components as Context-Aware Nodes in an Extended Cyber-Physical Network for IEEE World Forum on Internet of Things 2016
- 04 NovTiantian Du and Nimish Biloria hosted the workshop "Transitional Space Design and the Concept of Architectural Thermodynamics"
- 04 NovHenriette Bier appointed as member of the scientific committee of IJAC journal
- 18 OctDr. Nimish Biloria appointed as Scientific Committee member for the CAAD Futures 2017 Conference: Future Trajectories of Computation in Design
- 23 SepHenriette Bier appointed as member of the scientific committee of CAAD Futures 2017: Future Trajectories of Computation in Design
- 23 SepHenriette Bier certified reviewer of Elsevier's Journal of Materials and Design
- 23 SepProf. Kas Oosterhuis speaker at MakeHappen! Inspiration Day 2016
- 16 SepHyperbody graduate students Ralph Cloot and Arwin Hidding in collaboration with Sina Mostafavi and supervised by Kas Oosterhuis design a building for Neurotopia
- 15 SepDr. Nimish Biloria has been appointed as Associate Partner for the LASG (Living Architecture Systems Group), University of Waterloo, Canada
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Quantum Point Cloud Workshop
Collaborative workshop between HyperBODY TU Delft and School of Architecture & Urban Planning, Nanjing University
Spring 2011: Feb 25th - March 15th
HyperBODY is invited to give a parametric design & fabrication workshop at School of Architecture & Urban Planning, Nanjing University (NJU), China. Students from HyperBODY's MSc1&3 program are embarking on this intensive 2-weeks workshop trip, where, together with students from NJU, we will design, fabricate and construct a full-scale pavilion at the NJU campus. The workshop is lead and directed by Dr. Nimish Biloria and Ir. Han Feng from Hyperbody.
Workshop underpinnings:
This workshop aims at creatively fusing parametric design approaches and subjective design inputs. Parametric design approach, as for its accuracy and efficiency, has been widely implemented in advanced architectural studies for deriving relational logics embedded within complex geometries. However, beyond such strictly defined parametric routines within the computational domain, certain aspects such as subjective thinking/abstraction and intuitive opinionating of formal/aesthetic qualities cannot be easily parameterized and broken down into logical sequences of reasoning.
The workshop will thus be focusing on how to adopt subjective design intuition based reasoning within a parametric design environment by setting up open-ended parametric design questions, which have multiple rational design solutions. An evaluation process, which ranks the priority list of these multiple solution spaces and helps designers to visualize solution sets which are selected and further processed by individual will also be introduced within this workshop. A collaborative relationship can thus be envisioned between a designer and a design algorithm that synchronizes the strength from both entities.
As a design + build workshop, a set of cost, time management and fabrication constraints will also be introduced to the students. The constraint of cost and time management will be converted to control parameters such as total volume, surface area and volume count and will be visualized at all times in order to direct the student's design decision making. The fabrication constraints are tackled with a genetic algorithm based solution that optimizes machine tool path so as to ensure an economic production of designed components based on the chosen fabrication machine. This synergy between problem solving and exploration oriented design strategies may very well address a new design paradigm; Quantum Design thinking, which advocates the construction of non-deterministic design algorithm that interacts with designers to deliver creative design outputs.
As the title of this workshop states, students will be working around a 3D point cloud as a real-time interactive interface between their design concepts and the final built form. The design concept shall be centered on user behavior (physiological and psychological), interaction routines, social behavior as well as ergonomic data pertaining to the physical body. The students are encouraged to make abstraction for the concepts as regards movement, scale, patterns, function, structure etc into 3d curves and/or surfaces, which will serve as the generator of a redundant quantum point cloud, which will be later on converted to a 3d Voronoi system for further selection. The concept of redundancy, as an argument to direct translation between design concept and output, provides opportunities for reflecting on initial design concept and releasing creativity in a way that is not coined within the initial concept. During this exploration - selection process, students will be supported with global parametric constraints to make their design development practical. The entire design process can thus be understood as blurring a crystallized design image and then re-create design solution on top of a vast probability field. This workshop is based on hotwire cutting of EPS material. In total, we will be using 35 cubic meters EPS. A grasshopper definition is prepared to automate the machine tool path optimization and drawing, which will be explained to students in detail.Cutting path projection based on case study
Tool path sequence
Selection tool interface