CumInCAD is a Cumulative Index about publications in Computer Aided Architectural Design
supported by the sibling associations ACADIA, CAADRIA, eCAADe, SIGraDi, ASCAAD and CAAD futures

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Hits 1 to 20 of 652

_id ecaade2014_065
id ecaade2014_065
authors Daniel Prohasky, Rafael Moya Castro, Simon Watkins, Jane Burry and Mark Burry
year 2014
title Wind sensing with real-time visualisations for Designers - An approach to understanding wind phenomena for pedestrian comfort using low cost wind sensors
doi https://doi.org/10.52842/conf.ecaade.2014.1.165
source Thompson, Emine Mine (ed.), Fusion - Proceedings of the 32nd eCAADe Conference - Volume 1, Department of Architecture and Built Environment, Faculty of Engineering and Environment, Newcastle upon Tyne, England, UK, 10-12 September 2014, pp. 165-171
summary The evaluation of a low-tech wind sensing platform for urban aerodynamic simulations relevant to pedestrian comfort. In this paper, the wind canyon effect is simulated with two different building morphologies. The platform provides conceptual knowledge of the dynamics in wind relevant for designers, architectural practitioners and students of design. Low-cost hot wire anemometry is utilised for the design of an Experimental Fluid Dynamic (EFD) wind sensing network interface. This paper explores the validity of the sensing platform for a new approach for non-wind engineers to gain a better understanding of the dynamics of wind. The influence of real-time feedback from quantified wind on the understanding of wind phenomena for non-wind engineers is discussed and compared with post analysis data. It was found that real-time quantified feedback from wind intrigues and stimulates the intuitive notion of wind dynamics through discussion, however post analysis remains critical to evaluate building design performance.
wos WOS:000361384700016
keywords Wind sensing; real-time feedback; experimental fluid dynamics; hot-wire anemometry; atmospheric boundary layer
series eCAADe
email
last changed 2022/06/07 07:55

_id acadia14_101
id acadia14_101
authors Richards, Daniel;Amos, Martyn
year 2014
title Designing with Gradients: Bio-Inspired Computation for Digital Fabrication
doi https://doi.org/10.52842/conf.acadia.2014.101
source ACADIA 14: Design Agency [Proceedings of the 34th Annual Conference of the Association for Computer Aided Design in Architecture (ACADIA) ISBN 9781926724478]Los Angeles 23-25 October, 2014), pp. 101-110
summary This paper presents a novel generative model that can create functional and expressive geometries by evolving volumetric gradient patterns. We demonstrate that our model is useful for performance-driven form finding tasks such as structural optimisation, and holds vast potential for designing exotic multi-material and functionally graded materials in future applications.
keywords Artificial Intelligence in Design, Material Agency, Biomimicry and Biological Models in Design, Generative, Parametric, and Evolutionary Design, Digital fabrication and construction, New digital design concepts and strategies
series ACADIA
type Normal Paper
email
last changed 2022/06/07 07:56

_id acadia14_267
id acadia14_267
authors Ahlquist, Sean
year 2014
title Post-forming Composite Morphologies: Materialization and design methods for inducing form through textile material behavior
doi https://doi.org/10.52842/conf.acadia.2014.267
source ACADIA 14: Design Agency [Proceedings of the 34th Annual Conference of the Association for Computer Aided Design in Architecture (ACADIA) ISBN 9781926724478]Los Angeles 23-25 October, 2014), pp. 267-276
summary This paper presents research in developing materials with integrated pre-stressed textile and rigid composite properties. Such a material system, termed Pre-stressed Textile-Reinforced Composites (pTRC), produces forms with great degrees of both 3-dimensional and structural differentiation, from flat form-work in combination with a curated composite forming process.
keywords Pre-stressed Textile-reinforced Composites, Textile Hybrid, Material Behavior, Form-finding, Spring-based Simulation.Category: Material Logics and Tectonics.
series ACADIA
type Normal Paper
email
last changed 2022/06/07 07:54

_id sigradi2014_218
id sigradi2014_218
authors Palos, Karine Itao; José Neto de Faria
year 2014
title Televisão Digital Interativa e o uso da Tipografia com liberdade: fatores morfológicos e técnicos determinantes da legibilidade e leiturabilidade [Interactive Digital Television and the use of typography with freedom: morphological and technical determinants of legibility and readability factors]
source SiGraDi 2014 [Proceedings of the 18th Conference of the Iberoamerican Society of Digital Graphics - ISBN: 978-9974-99-655-7] Uruguay - Montevideo 12 - 14 November 2014, pp. 627-631
summary This project involves a study of typographic morphologies , along with a technical description and analysis of programs and devices that make up the Digital Interactive Television, with the objective to outline the characteristics of the types that work best on it to qualify its interfaces, which will then enable better understanding and assimilation of content, this way it was found that the one area of typography provides freedom in the construction of the content, but these qualities vary according to the technological qualities and social contexts of devices.
keywords Digital Interactive Television; Design; Typography; Legibility and Readability; and Interface
series SIGRADI
email
last changed 2016/03/10 09:57

_id ecaade2014_079
id ecaade2014_079
authors Taichi Kuma, Moritz Dörstelmann, Marshall Prado and Achim Menges
year 2014
title Integrative Computational Design Methodology for Composite Spacer Fabric Architecture
doi https://doi.org/10.52842/conf.ecaade.2014.2.061
source Thompson, Emine Mine (ed.), Fusion - Proceedings of the 32nd eCAADe Conference - Volume 2, Department of Architecture and Built Environment, Faculty of Engineering and Environment, Newcastle upon Tyne, England, UK, 10-12 September 2014, pp. 61-69
summary Spacer fabrics are 3D warp-knitted fabrics, which have a volumetric structure. Together with the capacity to differentially stretch and contract, these materials allow three dimensional which is specific to spacer fabrics. The authors present a computational design methodology which enables the generation of form based on these material characteristics and local, regional and global material manipulations. Such a process can not only generate functional surface articulations, but also control the forming of spatial textile geometries. As a resin infused composite structure the spacer fabric can serve as architectural construction and building envelope. This new methodology to develop fibrous and textile morphology is contrary to a traditional hierarchical design process, which is based on a linear strategy from design to implementation. The investigation methods are based on analogue material experimentation and integration of the materials behaviour into a computational design process. Such a feedback process can unfold potential material morphologies and performances of spacer fabric as an architectural material.
wos WOS:000361385100005
keywords Integrative computational design; fibre composite structure; spacer fabric; material computation; form finding
series eCAADe
email
last changed 2022/06/07 07:56

_id ecaade2014_175
id ecaade2014_175
authors Andreas Lund Larsen, Isak Worre Foged and Rasmus Lund Jensen
year 2014
title Multi-layered Breathing Architectural Envelope
doi https://doi.org/10.52842/conf.ecaade.2014.2.117
source Thompson, Emine Mine (ed.), Fusion - Proceedings of the 32nd eCAADe Conference - Volume 2, Department of Architecture and Built Environment, Faculty of Engineering and Environment, Newcastle upon Tyne, England, UK, 10-12 September 2014, pp. 117-122
summary A multi layered breathing envelope is developed as a method of natural ventilation. The two main layers consist of mineral wool and air permeable concrete. The mineral wool works as a dynamic insulation and the permeable concrete as a heat recovery system with a high thermal mass for heat storage. The performance of the envelope is simulated and put through an optimization process. The impact of a design system on the architectural potential of Performance -based design was investigated.
wos WOS:000361385100011
keywords Architectural envelope; performance-based architecture; air permeable concrete
series eCAADe
email
last changed 2022/06/07 07:54

_id sigradi2014_338
id sigradi2014_338
authors Borges de Vasconselos, Tássia; Adriane Borda Almeida da Silva, Luisa Rodrigues Félix Dalla Vecchia
year 2014
title A parametrização como experiência prévia para a estruturação de métodos projetuais em arquitetura [Parametrization as previous experience for structuring design methods in Architecture]
source SiGraDi 2014 [Proceedings of the 18th Conference of the Iberoamerican Society of Digital Graphics - ISBN: 978-9974-99-655-7] Uruguay - Montevideo 12 - 14 November 2014, pp. 297-301
summary This study describes a didactic method for the introduction of parametric design in graphic and digital geometry courses in architectural training. It started with the recognition of the concept of parametric design and the investment in the appropriation of Grasshopper associated with Rhinoceros. Paper folding exercises were configured both physically and in the digital space. Through an interactive dynamic between traditional processes, by hand and digital, and parametric design, a learning path was defined in a playful manner which highlights the differences between methods of representation and its implications for the design action starting from a first semester of training.
keywords Parametric Design; Teaching/learning; Graphic and Digital Geometry; Architecture; Paper Folding
series SIGRADI
email
last changed 2016/03/10 09:47

_id ecaade2014_153
id ecaade2014_153
authors David Morton
year 2014
title Augmented Reality in architectural studio learning:How Augmented Reality can be used as an exploratory tool in the design learning journey
doi https://doi.org/10.52842/conf.ecaade.2014.1.343
source Thompson, Emine Mine (ed.), Fusion - Proceedings of the 32nd eCAADe Conference - Volume 1, Department of Architecture and Built Environment, Faculty of Engineering and Environment, Newcastle upon Tyne, England, UK, 10-12 September 2014, pp. 343-356
summary The boundaries of augmented reality in the academic field are now being explored at an ever increasing level. In this paper we present the initial findings of an educational project focusing on the use of augmented reality in the design process of an architectural student. The study seeks to evaluate the use of AR as a tool in the design stages, allowing effective exploration of spatial qualities of design projects undertaken in the studio. The learning process is guided by the exploration and detection of a design idea in both form and function, with the virtual environment providing a dynamic environment (Mantovani, 2001). This is further reflected in the constructivist theory where the learning processes use conceptual models, which are used to create incremental stages that become the platform to attain the next [Winn, 1993]. The additional benefit of augmented reality within the learning journey is the ability of the students to visually explore the architectural forms they are creating in greater depth.
wos WOS:000361384700034
keywords Augmented reality; pedagogy; learning journey; exploration
series eCAADe
email
last changed 2022/06/07 07:55

_id cf2015_099
id cf2015_099
authors Dickinson, Susannah
year 2015
title Hybrid Connections: Computational Mapping Methodologies for Mexico City
source The next city - New technologies and the future of the built environment [16th International Conference CAAD Futures 2015. Sao Paulo, July 8-10, 2015. Electronic Proceedings/ ISBN 978-85-85783-53-2] Sao Paulo, Brazil, July 8-10, 2015, pp. 99-111.
summary The digital age is facilitating an ever increasing trend of globalized language and culture. Environmental issues are no longer a static concept as climate change and population growth force concepts of adaptability. What does this mean for the academy? How do we educate students to contemplate future urban scenarios and make some organization out of this more dynamic, complex future? The following paper seeks to disseminate a spring 2014 design studio at The University of Arizona where these issues were addressed, with Mexico City as a test bed. Computation has become a vital tool in the organizational process of these complex issues and big data. Various digital tools and platforms were explored in the studio to determine which ones would be most useful in modeling, mapping, designing and processing some of the complex relationships that are present in urban environments today.
keywords digital methodologies, urban design, complexity, hybridized networks, adaptability
series CAAD Futures
email
last changed 2015/06/29 07:55

_id ecaade2014_237
id ecaade2014_237
authors Dorothea Kalogianni and Richard Coyne
year 2014
title Thinking about sound and space - Recording people's emotional responses to spaces
doi https://doi.org/10.52842/conf.ecaade.2014.2.185
source Thompson, Emine Mine (ed.), Fusion - Proceedings of the 32nd eCAADe Conference - Volume 2, Department of Architecture and Built Environment, Faculty of Engineering and Environment, Newcastle upon Tyne, England, UK, 10-12 September 2014, pp. 185-194
summary In this paper we explore what EEG techniques teach us about people's responses to environments. We explain two complementary projects: a sound art installation in which a performer was rigged up with an EEG device and required to sit for 30 minutes in a chair. Around him were positioned custom-made instruments for generating electro-mechanical sounds. A screen behind the performer showed a dynamic geometrical image that altered according to his mood state and as picked up by EEG (engagement, meditation, frustration and excitement), while a sound technologist operated the instruments. We used the same sound sources for an experiment in which we tested people's responses to sounds. We discuss the spatial implications of this work.
wos WOS:000361385100020
keywords Eeg; brain; sound; space
series eCAADe
email
last changed 2022/06/07 07:55

_id cdrf2023_526
id cdrf2023_526
authors Eric Peterson, Bhavleen Kaur
year 2023
title Printing Compound-Curved Sandwich Structures with Robotic Multi-Bias Additive Manufacturing
doi https://doi.org/https://doi.org/10.1007/978-981-99-8405-3_44
source Proceedings of the 2023 DigitalFUTURES The 5st International Conference on Computational Design and Robotic Fabrication (CDRF 2023)
summary A research team at Florida International University Robotics and Digital Fabrication Lab has developed a novel method for 3d-printing curved open grid core sandwich structures using a thermoplastic extruder mounted on a robotic arm. This print-on-print additive manufacturing (AM) method relies on the 3d modeling software Rhinoceros and its parametric software plugin Grasshopper with Kuka-Parametric Robotic Control (Kuka-PRC) to convert NURBS surfaces into multi-bias additive manufacturing (MBAM) toolpaths. While several high-profile projects including the University of Stuttgart ICD/ITKE Research Pavilions 2014–15 and 2016–17, ETH-Digital Building Technologies project Levis Ergon Chair 2018, and 3D printed chair using Robotic Hybrid Manufacturing at Institute of Advanced Architecture of Catalonia (IAAC) 2019, have previously demonstrated the feasibility of 3d printing with either MBAM or sandwich structures, this method for printing Compound-Curved Sandwich Structures with Robotic MBAM combines these methods offering the possibility to significantly reduce the weight of spanning or cantilevered surfaces by incorporating the structural logic of open grid-core sandwiches with MBAM toolpath printing. Often built with fiber reinforced plastics (FRP), sandwich structures are a common solution for thin wall construction of compound curved surfaces that require a high strength-to-weight ratio with applications including aerospace, wind energy, marine, automotive, transportation infrastructure, architecture, furniture, and sports equipment manufacturing. Typical practices for producing sandwich structures are labor intensive, involving a multi-stage process including (1) the design and fabrication of a mould, (2) the application of a surface substrate such as FRP, (3) the manual application of a light-weight grid-core material, and (4) application of a second surface substrate to complete the sandwich. There are several shortcomings to this moulded manufacturing method that affect both the formal outcome and the manufacturing process: moulds are often costly and labor intensive to build, formal geometric freedom is limited by the minimum draft angles required for successful removal from the mould, and customization and refinement of product lines can be limited by the need for moulds. While the most common material for this construction method is FRP, our proof-of-concept experiments relied on low-cost thermoplastic using a specially configured pellet extruder. While the method proved feasible for small representative examples there remain significant challenges to the successful deployment of this manufacturing method at larger scales that can only be addressed with additional research. The digital workflow includes the following steps: (1) Create a 3D digital model of the base surface in Rhino, (2) Generate toolpaths for laminar printing in Grasshopper by converting surfaces into lists of oriented points, (3) Generate the structural grid-core using the same process, (4) Orient the robot to align in the direction of the substructure geometric planes, (5) Print the grid core using MBAM toolpaths, (6) Repeat step 1 and 2 for printing the outer surface with appropriate adjustments to the extruder orientation. During the design and printing process, we encountered several challenges including selecting geometry suitable for testing, extruder orientation, calibration of the hot end and extrusion/movement speeds, and deviation between the computer model and the physical object on the build platen. Physical models varied from their digital counterparts by several millimeters due to material deformation in the extrusion and cooling process. Real-time deviation verification studies will likely improve the workflow in future studies.
series cdrf
email
last changed 2024/05/29 14:04

_id sigradi2014_132
id sigradi2014_132
authors Hu, Yongheng; Qinying Li, Feng Yuang, Han Li
year 2014
title The BIM based Responsive Environmental Performance Design Methodology
source SIGraDi 2014 [Proceedings of the 18th Conference of the Iberoamerican Society of Digital Graphics - ISBN: 978-9974-99-655-7] Uruguay- Montevideo 12,13,14 November 2014, pp. 120-125
summary The concept of “families” lies in the core of internal data structure in Building Information Modeling (BIM). The elements of this modeling platform are all associated with each other as parts of the “families”, independent of their geometrical structure, materiality, parametric dependencies or their physical connection to other elements. Through the associations introduced among the parameters of the ‘families’ members, this study aims at establishing a methodology for a multi-objective evaluation of the environmental performance of the building as an organism. The methodology is founded on a system of different values and weights attributed to the parameters of the families members which are adjusted and fine-tuned through a series of iterations, thus affecting the overall building performance towards an optimum goal. The performance evaluation method used in the “families” methodology is not limited to the individual assessment of the environmental performance objectives or to an integrated multi-objective weighting mechanism; as an overall evaluation platform it checks and balances the individual characteristics of the system not as static conclusive results but as dynamic criteria intended to guide the overall design and building process. The importance of this paper lies in the construction of a concrete methodological set of tools for the assessment of the environmental performance of the building. It will lead the way in independent research in the field of architectural design and the development of ecological thinking and building in China.
keywords BIM ‘families’; Multi-Objective Generic Algorithm; Environmental Performance Simulation; Multi-Objective Environmental Performance Optimization
series SIGRADI
email
last changed 2016/03/10 09:53

_id ecaade2014_147
id ecaade2014_147
authors James Charlton and Markus Brune
year 2014
title Towards a dynamic evacuation system: developing methodologies to simulate the evacuation capabilities of subway stations in response to a terrorist attack with CBRNE weapons
doi https://doi.org/10.52842/conf.ecaade.2014.1.109
source Thompson, Emine Mine (ed.), Fusion - Proceedings of the 32nd eCAADe Conference - Volume 1, Department of Architecture and Built Environment, Faculty of Engineering and Environment, Newcastle upon Tyne, England, UK, 10-12 September 2014, pp. 109-118
summary Events in recent times have highlighted the vulnerability of underground public transportation to possible terrorist attacks. A key question therefore is how an evacuation can be accomplished from underground stations safely. The strategy “go up and take the nearest exit to the surface” might not be the best response. Evidence from the Daegu subway station fire in 2003, investigated by Tsujimoto (2003) and Jeon and Hong (2009) establish that smoke or toxic airborne substances from a terrorist attack tend to use the same direct routes used by the fleeing passengers and as result significant injuries or fatalities can occur. This study proposes the concept of a dynamic evacuation system which would guide subway users along safe routes. To test how this system may operate, the study discussed combines measurements from tracer gas experiments with climate measurements to establish how toxic agents spread in subway stations under certain conditions and combines these results with those from pedestrian simulations applied to calculate evacuation times for possible escape routes. By integrating the resulting dataset from these methods, an evidence base of how a dynamic evacuation system may work can start to form.
wos WOS:000361384700010
keywords Pedestrian simulation, subway climatology; cbrne; subway evacuation; tracer gas experiments
series eCAADe
email
last changed 2022/06/07 07:52

_id ecaade2014_184
id ecaade2014_184
authors José Nuno Beirão, Letícia Mendes and Gabriela Celani
year 2014
title CItyMaker Workshop - An Urban Design Studio to experience the dynamic interaction between design exploration and data flow on density-based indicators
doi https://doi.org/10.52842/conf.ecaade.2014.1.033
source Thompson, Emine Mine (ed.), Fusion - Proceedings of the 32nd eCAADe Conference - Volume 1, Department of Architecture and Built Environment, Faculty of Engineering and Environment, Newcastle upon Tyne, England, UK, 10-12 September 2014, pp. 33-41
summary This paper shows the results of a workshop on parametric urban design. A pattern based parametric urban design platform provides a common platform for urban design and analysis by linking GIS with a parametric CAD environment. Urban plans are developed by combining design patterns taken from a large set of parametric urban design patterns acknowledged as a generic urban design language. Urban plan instances are obtained through a specific composition of patterns and a specific assignment of parameters to the patterns. The models provide simultaneous analysis by confronting formal solutions with density indicators that are automatically provided by a set of density calculation patterns.
wos WOS:000361384700002
keywords Parametric urban design; citymaker, urban design workshop; design methodology
series eCAADe
email
last changed 2022/06/07 07:52

_id acadia14_647
id acadia14_647
authors Khorasgani, Mehrnoush Latifi; Prohasky, Daniel; Burry, Jane; Akbarzadeh, Akbar; Khorasgani, Nicholas Willaims
year 2014
title ROBOTHERMODON: An Artificial Sun Study Lab with a Robot Arm and Advanced Model Platform -A Thermal Heliodon(STEVE: Solar Thermal EValuation Experiment)
doi https://doi.org/10.52842/conf.acadia.2014.647
source ACADIA 14: Design Agency [Proceedings of the 34th Annual Conference of the Association for Computer Aided Design in Architecture (ACADIA) ISBN 9781926724478]Los Angeles 23-25 October, 2014), pp. 647-654
summary *This research focuses on the design of a Robotic solar analysis platform for critical studies which explore dynamic solar light and heat phenomena within the laboratory. This robotic platform gives designers the opportunity to receive rapid feedback from physical models in real-time.*
keywords Heliodon; Robothermodon; virtual sun path;Model Platform ;Works in Progres
series ACADIA
type Normal Paper
email
last changed 2022/06/07 07:52

_id caadria2014_249
id caadria2014_249
authors Krietemeyer, Bess
year 2014
title An Adaptive Decision-Making Framework for Designing Material Behaviours
doi https://doi.org/10.52842/conf.caadria.2014.055
source Rethinking Comprehensive Design: Speculative Counterculture, Proceedings of the 19th International Conference on Computer-Aided Architectural Design Research in Asia (CAADRIA 2014) / Kyoto 14-16 May 2014, pp. 55–64
summary This paper describes an adaptive decision-making design framework for investigating the synergies between aesthetically-driven and performance-driven criteria, specifically in designing the material behaviour of an electroresponsive building envelope system. An immersive and interactive simulation environment developed in the C++ programming language provides a computational tool for testing the visual and energetic performance of a dynamic building envelope as it negotiates bioclimatic energy flows with participants’ aesthetic preferences and interactions. Experiments in bioresponsive feedback loops examine the impacts that user engagement and real-time energy performance feedback have on participants’ design choices. Preliminary results demonstrate that exposure to energy performance feedback and to the collective design choices of multiple users leads to adaptive decision-making that favours synergistic system performance with the potential for increased socio-ecological connections. Critically, this research provides new methods for supporting the design of emerging material behaviours for dynamic building envelopes that can negotiate multiple performance criteria.
keywords Participatory design; decision-making tool; interactive environment; dynamic building envelopes; immersive simulation
series CAADRIA
email
last changed 2022/06/07 07:51

_id ijac201412206
id ijac201412206
authors Lo, Chia-Hui Nico; Ih-Cheng Lai, Teng-Wen Chang
year 2014
title Design Jigsaw: Exploring a computational approach to assembling ideas in the design production process
source International Journal of Architectural Computing vol. 12 - no. 2, 199-212
summary Idea generation in the design production process often occurs within brainstorming sessions. Linking ideas is the key mechanism in the process of producing design. Through linking ideas, a graph-like knowledge is achieved in representing the individual memories, with the nodes and arcs being the ideas and the links between ideas respectively.The design process is similar to doing a jigsaw. Using the jigsaw metaphor, a cognitive study is applied to the design tool DIM (Dynamic Idea Map) to explore computational jigsaw mechanisms.Thereafter, a computational framework called Design Jigsaw is developed to support students in assembling vast ideas effectively and reveals the construction of meaning in the graph-like knowledge structure of design thinking.
series journal
last changed 2019/05/24 09:55

_id ecaade2014_191
id ecaade2014_191
authors Mads Brath Jensen and Isak Worre Foged
year 2014
title Cellular Automata as a learning process in Architecture and Urban design
doi https://doi.org/10.52842/conf.ecaade.2014.1.297
source Thompson, Emine Mine (ed.), Fusion - Proceedings of the 32nd eCAADe Conference - Volume 1, Department of Architecture and Built Environment, Faculty of Engineering and Environment, Newcastle upon Tyne, England, UK, 10-12 September 2014, pp. 297-302
summary This paper explores the application of cellular automata as method for investigating the dynamic parameters and interrelationships that constitute the urban space. With increasing aspects needed for integration during the architectural and urban design process with the relations between these aspects growing in parallel, complexity of the design process and design solution increases. Additionally, aspects and relations are of a transformative character in that they change over time and therefore construct a time-based condition for which problems are presented and solutions are sought. An architectural methodological response to this situation is presented through the development of a conceptual computational design system that allows these dynamics to unfold and to be observed for architectural design decision taking. Reflecting on the development and implementation of a cellular automata based design approach on a master level urban design studio this paper will discuss the strategies for dealing with complexity at an urban scale as well as the pedagogical considerations behind applying computational tools and methods to a urban design education.
wos WOS:000361384700029
keywords Computational design; cellular automata; education; design exploration
series eCAADe
email
last changed 2022/06/07 07:59

_id caadria2014_013
id caadria2014_013
authors Moya, Rafael; Flora Salim and Mani Williams
year 2014
title Pneumosense Project
doi https://doi.org/10.52842/conf.caadria.2014.369
source Rethinking Comprehensive Design: Speculative Counterculture, Proceedings of the 19th International Conference on Computer-Aided Architectural Design Research in Asia (CAADRIA 2014) / Kyoto 14-16 May 2014, pp. 369–378
summary The study of wind conditions in the urban context has multiple application areas such as for cleaning pollution through ventilation, analysing wind pressures on building façades, and improving pedestrian comfort. In this context, the Pneumosense project is a student’s project focused in the design of a kinetic system to ameliorate negative impact of wind conditions in pedestrian areas in the city of Melbourne. Its development considers several stages including site analysis, analogue wind tunnel testing, digital simulations with Computational Fluid Dynamic software, material explorations, kinetic component design with Arduino, and rapid prototyping.
keywords Urban aerodynamics; windbreak; wind tunnel simulation; computational fluid dynamics; architectural prototype
series CAADRIA
email
last changed 2022/06/07 07:58

_id ecaade2015_229
id ecaade2015_229
authors Pak, Burak and Meeus, Bruno
year 2015
title Project Arrivée: Counter-mapping Super-diversity in Brussels and Ghent with Architecture Students
doi https://doi.org/10.52842/conf.ecaade.2015.1.369
source Martens, B, Wurzer, G, Grasl T, Lorenz, WE and Schaffranek, R (eds.), Real Time - Proceedings of the 33rd eCAADe Conference - Volume 1, Vienna University of Technology, Vienna, Austria, 16-18 September 2015, pp. 369-378
summary This paper introduces a counter-mapping attempt augmented by a Geoweb 2.0 platform in the context of two Belgian inner-city neighborhoods. The two aims of this project were to build a platform for the collective construction of a better understanding this dynamic super-diverse arrival environment and bring the various qualities and aspects of these super-diverse urban neighborhoods to foreground. In this study we report on the first results of this project which took place in Ghent and Brussels in 2014. Around 300 architecture students registered, interpreted and geocoded visible signs along preconceived tracks by means of a Geoweb 2.0 platform. Through field observations and interviews, the students created dynamic and interactive maps. We found that the large-scale mapping through Geoweb 2.0 makes it possible to discern different layers of use in arrival neighborhoods. These layers referred to different population groups which continuously have to negotiate each other's presence. Furthermore, the platform created the possibility to effectively and efficiently combine student fieldwork with online and offline lectures and offered students the opportunity to comment on, peer-review and learn from each other's insights. The findings will serve as an alternative information resource in the forthcoming Master's thesis graduation design studio which will be led by the first author.
wos WOS:000372317300040
series eCAADe
email
last changed 2022/06/07 08:00

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