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 547

_id sigradi2005_490
id sigradi2005_490
authors Duro da Silva, Fernando; Celso Scaletsky, Rogério Castro Oliveira
year 2005
title Between the logic and the imaginary: reflections about the digital graphic in the process of architectural design conception.
source SIGraDi 2005 - [Proceedings of the 9th Iberoamerican Congress of Digital Graphics] Lima - Peru 21-24 november 2005, vol. 1, pp. 490-493
summary Discussing a standpoint about the relations between the digital graphic and the process of architectural design conception and the role of the imaginary in this process is the goal of this paper. Design process is critically examined as a problem solving issue to conclude that it is in fact an ill-defined problem and to it are not applicable the traditional analysis and solution methods. As an ill-defined problem, it has some characteristics to which the traditional logics do not give answers, especially to the fact that there are many solutions for a design problem, in many cases, conflicting and contradictories solutions. Here the imagination has a huge role to play by generating the multiple solutions required for the design and the digital graphic can be (or cannot be) an important tool. [Full paper in Portuguese]
series SIGRADI
email
last changed 2016/03/10 09:50

_id sigradi2005_362
id sigradi2005_362
authors Jemtrud, Michael; Konstantin Privalov
year 2005
title “User Controlled LightPath” Enabled Participatory Design Studio: first steps
source SIGraDi 2005 - [Proceedings of the 9th Iberoamerican Congress of Digital Graphics] Lima - Peru 21-24 november 2005, vol. 1, pp. 362-368
summary The technical scheme and creative scenario of a new media-based “User Controlled Lightpath Provisioning” (UCLP) enabled “Participatory Design Studio” will be elaborated. This practical collaborative work environment model represents a technologically robust and sophisticated means of communication and sharing of resources that stands to radically transform design processes. UCLP technology is a fibre based software solution designed to enable end-users to create their own discipline or application-specific IP network whose topology and architecture is optimized for their particular applications needs and requirements. A distinction between “task-based collaboration” found in conventional “Virtual Design Studios” and the heterogeneous nature of the “participatory” work environment will be made. UCLP technology provides a secure, large bandwidth, low latency network that can accommodate up to 10Gbps. This capability creates an environment which is not dependent upon traditional low bandwidth requirements for communication, visualization, and production therefore allowing a greater range of desired tools for creative activity.
series SIGRADI
email
last changed 2016/03/10 09:53

_id 2005_399
id 2005_399
authors Johansson, Mikael and Roupé, Mattias
year 2005
title From CAD to VR – Implementations for Urban Planning and Building Design
source Digital Design: The Quest for New Paradigms [23nd eCAADe Conference Proceedings / ISBN 0-9541183-3-2] Lisbon (Portugal) 21-24 September 2005, pp. 399-405
doi https://doi.org/10.52842/conf.ecaade.2005.399
summary At present time, three-dimensional objects are often represented with 2D-data in urban planning and building design. In order to get all the involved parties to fully understand a certain project, this may not be enough. More and more projects therefore take use of the Virtual Reality (VR) technique as a complement to traditional 2D drawings and sketches. All the involved parties can then share a common frame of reference for all discussions regarding a certain project. Unfortunately, the technique is not yet adapted to fit the current building design process. In this paper, we present a solution for semi-automatic generation of a VR-model based on 3D CAD information and aerial photos obtained from the City Planning Authorities in Sweden. The data is imported to support real-time editing of terrain, roads and buildings. We also present a framework for importing 3D-models created in Autodesk Revit which enables a seamless integration of modern 3D CAD and VR-models. The features are implemented in a software developed at Chalmers Visualization studio (Gothenburg, Sweden) and technical details about terrain handling and speed-up techniques will be given.
keywords Virtual Reality; 3D City modeling; Urban planning; Terrain; Visualization
series eCAADe
email
last changed 2022/06/07 07:52

_id caadria2006_179
id caadria2006_179
authors KEATRUANGKAMALA K., NILKAEW P.
year 2006
title STRONG VALID INEQUALITY CONSTRAINTS FOR ARCHITECTURAL LAYOUT DESIGN OPTIMIZATION
source CAADRIA 2006 [Proceedings of the 11th International Conference on Computer Aided Architectural Design Research in Asia] Kumamoto (Japan) March 30th - April 2nd 2006, 179-185
doi https://doi.org/10.52842/conf.caadria.2006.x.w5d
summary In the past decades, many attempts have been made to solve the challenging architectural layout design problem such as non-linear programming and evolutionary algorithm (Michalek and Papalambros, 2002). The Mixed Integer Programming (MIP) (Kamol and Krung, 2005) was recently developed to find the global optimal solution. However, the problem can be shown to belong to the class of NP-hard problem (Michalek and Papalambros, 2002). Hence, only the small instances of the problem can be solved in a reasonable time. In order to deal with large problem sizes, this paper utilizes the strong valid inequalities (George and Laurence). It cut off the infeasible points in the integral search space by formulated the disconnected constraints involved with line configurations of three rooms. It is shown to significantly increase the computational speed to more than thirty percents. This exhibits the practical use of the MIP formulation to solve the medium size architectural layout design problems.
series CAADRIA
email
last changed 2022/06/07 07:49

_id cf2005_1_38_111
id cf2005_1_38_111
authors KEATRUANGKAMALA Kamol and SINAPIROMSARAN Krung
year 2005
title Optimizing Architectural Layout Design via Mixed Integer Programming
source Computer Aided Architectural Design Futures 2005 [Proceedings of the 11th International Conference on Computer Aided Architectural Design Futures / ISBN 1-4020-3460-1] Vienna (Austria) 20–22 June 2005, pp. 175-184
summary For many decades, solving the optimal architectural layout design is unattainable for the reasonable problem sizes. Architects have to settle for acceptable layouts instead of the favourable optimal solution. With today technologies, various optimization techniques have been used to alleviate the optimal search according to diversified goals. This paper formulates the optimal architectural layout design as the multiobjective mixed integer programming model solved by the MIP solver. The main idea is to capture functional constraints, dimensional constraints and the objective function using only linear formulae with binary variables. Functional constraints are the connectivities, the unused grid cells, the fixed room location, the boundary and the fixed border location while dimension constraints are the non-intersecting, the overlapping, the length and the ratio constraints. The objective function is designed to minimize the absolute distance among rooms and maximize room spaces. Due to the nonlinearity of area computation, the linear approximation of width and height constraints have been utilized. Architects can control these different objectives within the model. By specifying the rigid restriction and the time limits, the problem can be solved within a reasonable amount of time.
keywords layout design, linear programming, mixed integer programming, optimization
series CAAD Futures
email
last changed 2006/11/07 07:27

_id 2005_671
id 2005_671
authors Kilian, Axel
year 2005
title Design Innovation through Constraint Modeling
source Digital Design: The Quest for New Paradigms [23nd eCAADe Conference Proceedings / ISBN 0-9541183-3-2] Lisbon (Portugal) 21-24 September 2005, pp. 671-678
doi https://doi.org/10.52842/conf.ecaade.2005.671
summary This paper describes how constraint modeling can support design innovation. Furthermore, it lays out how constraints are employed in the construction and exploration of a model’s design space. The paper places this approach within the larger context of design exploration using computational and conceptual representations of design. Four general constraint types are identified and examples from several workshops and design studios are presented for each of the constraint types. The examples range from product design to structural design to fabrication issues in architecture. Based on a review of the literature the most common constraints are of geometric, topologic, functional, and quantitative type. Based on the case studies the paper describes how the different types of constraints can be used as design drivers and help in the exploration of solution space. In conclusion the paper identifies the addition of bi-directional properties to constraint modeling as the next challenge in improving the application of constraint modeling in design exploration. Furthermore, the paper demonstrates the necessity to develop better constraint models for cross domain design.
keywords Design Exploration, Constraint Modeling, Parametric Modeling
series eCAADe
email
last changed 2022/06/07 07:52

_id b678
id b678
authors Loemker, Thorsten Michael
year 2008
title Designing with machines
source Proceedings of the Dresden International Symposium of Architecture 2005, Technische Universitaet Dresden, P. 225-229
summary In 1845 Edgar Allan Poe wrote the poem “The Raven”. An act full of poetry, love, passion, mourning, melancholia and death. In his essay “The Theory of Composition” which was published in 1846 Poe proved that the poem is based on an accurate mathematical description. Not only in literature are structures present that are based on mathematics. In the work of famous musicians, artists or architects like Bach, Escher or Palladio it is evident that the beauty and clarity of their work as well as its traceability has often been reached through the use of intrinsic mathematic coherences. If suchlike structures could be described within architecture, their mathematical abstraction could supplement “The Theory of Composition” of a building. This research focuses on a basic approach to describe principles in architectural layout planning in the form of mathematical rules that will be executed by the use of a computer. Provided that “design” is in principle a combinatorial problem, i.e. a constraint-based search for an overall optimal solution of a design problem, an exemplary method will be described to solve those problems. Mathematical and syntactical difficulties that arise from the attempt to extract rules that relate to the process of building design will be pointed out. As a consequence for teachings it will be demonstrated which competences are needed in order to aid designing with machines.
series other
type normal paper
email
last changed 2008/10/13 14:20

_id acadia20_38
id acadia20_38
authors Mueller, Stephen
year 2020
title Irradiated Shade
source ACADIA 2020: Distributed Proximities / Volume I: Technical Papers [Proceedings of the 40th Annual Conference of the Association of Computer Aided Design in Architecture (ACADIA) ISBN 978-0-578-95213-0]. Online and Global. 24-30 October 2020. edited by B. Slocum, V. Ago, S. Doyle, A. Marcus, M. Yablonina, and M. del Campo. 38-46.
doi https://doi.org/10.52842/conf.acadia.2020.1.038
summary The paper details computational mapping and modeling techniques from an ongoing design research project titled Irradiated Shade, which endeavors to develop and calibrate a computational toolset to uncover, represent, and design for the unseen dangers of ultraviolet radiation, a growing yet underexplored threat to cities, buildings, and the bodies that inhabit them. While increased shade in public spaces has been advocated as a strategy for “mitigation [of] climate change” (Kapelos and Patterson 2014), it is not a panacea to the threat. Even in apparent shade, the body is still exposed to harmful, ambient, or “scattered” UVB radiation. The study region is a binational metroplex, a territory in which significant atmospheric pollution and the effects of climate change (reduced cloud cover and more “still days” of stagnant air) amplify the “scatter” of ultraviolet wavelengths and UV exposure within shade, which exacerbates urban conditions of shade as an “index of inequality” (Bloch 2019) and threatens public health. Exposure to indirect radiation correlates to the amount of sky visible from the position of an observer (Gies and Mackay 2004). The overall size of a shade structure, as well as the design of openings along its sides, can greatly impact the UV protection factor (UPF) (Turnbull and Parisi 2005). Shade, therefore, is more complex than ubiquitous urban and architectural “sun” and “shadow studies” are capable of representing, as such analyses flatten the three-dimensional nature of radiation exposure and are “blind” to the ultraviolet spectrum. “Safe shade” is contingent on the nuances of the surrounding built environment, and designers must be empowered to observe and respond to a wider context than current representational tools allow.
series ACADIA
type paper
email
last changed 2023/10/22 12:06

_id 2005_407
id 2005_407
authors Post, Jelle and Koutamanis, Alexander
year 2005
title Simulation for Daylighting in the Real World
source Digital Design: The Quest for New Paradigms [23nd eCAADe Conference Proceedings / ISBN 0-9541183-3-2] Lisbon (Portugal) 21-24 September 2005, pp. 407-414
doi https://doi.org/10.52842/conf.ecaade.2005.407
summary Technology has been an obvious solution to the increasing complexity of the built environment. As the number and specificity of use requirements increases, designers, clients and managers tend to segment the overall problem to manageable aspects only tentatively linked to each other. As a result, aspects such as ventilation and lighting tend to rely more on mechanical means than on the affordances of the overall design. Ironically this increases the complexity and opacity of the built environment probably to a greater extent than rules, regulations and requirements. The paper presents a review of available computational methods and techniques that aim at a more coherent approach by supporting integration of (day)lighting into architectural designing. It proposes that the two main courses of further action are the improvement and updating building regulations, and the combination of quantitative knowledge of good, existing daylight designs with advanced simulation-based analyses of early design proposals. Improvements in daylighting design and the integration of daylighting in design solutions depend primarily on design guidance based on the coordinated development and thorough understanding of usable measures such as the Daylight Factor, the Daylight Performance Index and function factors. A major prerequisite to both simulation and design guidance are robust and detailed geometrical 3D models that accommodate both the input and the output of design actions and transactions.
keywords Simulation; Daylight; Integration
series eCAADe
email
last changed 2022/06/07 08:00

_id 2005_349
id 2005_349
authors Rafi, Ahmad, Izani, Mohd and Tinauli Musstanser
year 2005
title High Dynamic Range Image (HDRI) Rendering
source Digital Design: The Quest for New Paradigms [23nd eCAADe Conference Proceedings / ISBN 0-9541183-3-2] Lisbon (Portugal) 21-24 September 2005, pp. 349-356
doi https://doi.org/10.52842/conf.ecaade.2005.349
summary This paper suggests a method known as High Dynamic Range Image (HDRI) to pre-visualise architectural elements in three-dimensional (3D) environment used by Computer Graphic Imaging (CGI) film-makers to integrate 3D models and characters into live action background (special effect). This Intensification Research Priority Area (IRPA) grant project was developed to suggest ways to achieve effective rendering solution and composition of the final output. It will focus on experimental modelling of local cultural elements that provides solutions for radiosity-type effects and dirt shadings. A set of data from an established site (i.e. environment) was captured and represented in High Dynamic Range (HDR) file. This data is integrated with architectural elements (e.g. 3D objects) and then pre-rendered to get the 3D visualisation of the actual environment. Several different exposures were also captured and tested to establish the correct rendering and lighting condition. This earlier result shows that HDRI method provides accurate visualisation and drastically reduces the rendering time without compromising the data (images) with accurate lighting. This paper will demonstrate the process of HDRI, compare the visual impact with ‘radiosity’ technique and other related rendering solutions and present the results, which are useful for architectural animation, simulation and other modelling developments.
keywords HDRI, Pre-Visualisation, Modelling, Rendering
series eCAADe
email
last changed 2022/06/07 07:59

_id caadria2005_a_1a_d
id caadria2005_a_1a_d
authors Seung Yeon Choo, Stefan Hoff, Rye-Hwa Jung
year 2005
title A Design Checking Tool Based on Aesthetic Properties from Design Theories of Architecture: Focused on Musical Harmony in Architecture
source CAADRIA 2005 [Proceedings of the 10th International Conference on Computer Aided Architectural Design Research in Asia / ISBN 89-7141-648-3] New Delhi (India) 28-30 April 2005, vol. 1, pp. 33-44
doi https://doi.org/10.52842/conf.caadria.2005.033
summary This paper proposes a way how a semantic aesthetic property from architectural theories in the Western world can be integrated into a computer-aided architectural design (CAAD) system. It starts from the premise that computer-aided design tools are mostly aimed at serving as drawing tools which are used only after a design formal solution has already been established by the architect. To support an early design solution in a computer-based environment, a design checking tool was developed and tested in a real building project. This tool gives various design alternatives from the early design phase to the final stage of design details, according to musical harmony. Finally, this paper shows that an aesthetic property from architectural theories can be calculated with the aid of a computerbased design tool, and the used tool played its role as a design assistant in supporting the architectural design.
series CAADRIA
email
last changed 2022/06/07 07:57

_id 2005_373
id 2005_373
authors Ucelli, Giuliana, Conti, Giuseppe and De Amicis, Raffaele
year 2005
title Shape Knowledge Embedded in a Collaborative Virtual Design Environment for Architectural Design
source Digital Design: The Quest for New Paradigms [23nd eCAADe Conference Proceedings / ISBN 0-9541183-3-2] Lisbon (Portugal) 21-24 September 2005, pp. 373-381
doi https://doi.org/10.52842/conf.ecaade.2005.373
summary VR-based design environment have been traditionally not connected to companies’ design repositories and knowledge management systems. Till now these tools are mainly used for the initial exploration of innovative and original three-dimensional spaces and curves. Our approach encourages the use of VRbased design environments as design tools from where to reuse design solutions and to access design information, which are stored in internal repositories. This vision goes towards the development of a VR-based integrated design platform. Further, today’s knowledge management systems show evident limitations when dealing with multimedia files and 3D models. In order to overcome this limitation a framework for embedding in our VR-based design environment a Knowledge Management system for multimedia content has been developed and it is here described. Our solution implies the use of annotation languages such as the recent MPEG7 ISO/IEC (Multimedia Content Description Interface) standard for metadata, which is based on the XML language. Data types handled in our system are multimedia formats including text, audio, video, images, and 3D models. The main contribution of our research activity is in providing an innovative and original approach for supporting the design process, which takes advantage both of the visualization and design capabilities of virtual reality technology and of the reuse of design solutions directly in VE, through the retrieval of 3D models and multimedia data from various sources.
keywords Virtual Reality, Collaborative Architectural Design, Design Reuse, Content Retrieval
series eCAADe
email
last changed 2022/06/07 07:57

_id sigradi2005_483
id sigradi2005_483
authors Abdelhameed, Wael
year 2005
title Digital-Media Impact on the Representation Capability of Architects
source SIGraDi 2005 - [Proceedings of the 9th Iberoamerican Congress of Digital Graphics] Lima - Peru 21-24 november 2005, vol. 1, pp. 483-489
summary Architects draw to define design problems, to construct concepts, or to explore ideas. Representation not only connects various design activities and tasks, but also is utilized inside all these activities and tasks. Within the context of this research, the Design Capabilities of architects are defined as the skills used during the design process, including Conceptualization, Representation, Form Giving, Knowledge Building and Retrieving, and Decision-Making. Using representational techniques introduced by digital media during design development has altered what we can represent, perceive, and therefore conceive and imagine. Depending on primary data (a global questionnaire) and secondary data (synthesis of previous researches), the results of this investigation have substantiated that there has been a positive impact of digital media settings on the output of Representation capability of architects. The analysis reveals some detailed findings, which provide a better understanding of the subject matter.
series SIGRADI
email
last changed 2016/03/10 09:47

_id caadria2005_a_7b_a
id caadria2005_a_7b_a
authors Abdullah, A.Q.M. ; Md. Emran Hossain, Md. Shabab Habib Khan
year 2005
title Digital Perception, Development and Presentation in Architecture: a study of Bangladesh with global context
source CAADRIA 2005 [Proceedings of the 10th International Conference on Computer Aided Architectural Design Research in Asia / ISBN 89-7141-648-3] New Delhi (India) 28-30 April 2005, vol. 1, pp. 255-267
doi https://doi.org/10.52842/conf.caadria.2005.255
summary In the recent past the computer has become an important tool in both the design and presentation media/method in architecture. In this paper digitalization in architectural practice and architectural education in both the global and Bangladesh contexts have been studied. A survey questionnaire was carried out to find how and to what extent available software are being used in Bangladesh for this purpose. Opinion, views, expectations of architects from leading architectural firms of Bangladesh were studied to understand the future prospect of this field in Bangladesh.
series CAADRIA
email
last changed 2022/06/07 07:54

_id cf2005_1_64_168
id cf2005_1_64_168
authors ACHTEN Henri
year 2005
title Resolving some Ambiguities in Real-time Design Drawing Recognition by means of a Decision Tree for Agents
source Computer Aided Architectural Design Futures 2005 [Proceedings of the 11th International Conference on Computer Aided Architectural Design Futures / ISBN 1-4020-3460-1] Vienna (Austria) 20–22 June 2005, pp. 311-320
summary In this paper, we present a theoretical study on automated understanding of the design drawing. This can lead to design support through the natural interface of sketching. In earlier work, 24 plan-based conventions of depiction have been identified, such as grid, zone, axial system, contour, and element vocabulary. These are termed graphic units. Graphic units form a good basis for recognition of drawings as they combine shape with meaning. We present some of the theoretical questions that have to be resolved before an implementation can be made. The contribution of this paper is: (i) identification of domain knowledge which is necessary for recognition; (ii) outlining combined strategy of multi-agent systems and online recognition; (iii) functional structure for agents and their organisation to converge on sketch recognition.
keywords multi-agent system, decision tree, pattern recognition, sketch
series CAAD Futures
email
last changed 2006/11/07 07:27

_id 2005_287
id 2005_287
authors Achten, Henri and Reymen, Isabelle
year 2005
title Structured Reflection as a Means to Deepen Understanding of CAAD
source Digital Design: The Quest for New Paradigms [23nd eCAADe Conference Proceedings / ISBN 0-9541183-3-2] Lisbon (Portugal) 21-24 September 2005, pp. 287-294
doi https://doi.org/10.52842/conf.ecaade.2005.287
summary In this paper we outline a strategy of structured reflection to improve reflection by students in a course on the implication of CAAD, design theory, and design methodology. Earlier editions of the course showed that students often did not evolve their learning beyond a checklist level. Reflection is an important mechanism to improve learning from design situations. After a consideration of the main approaches to design reflection, we take up Schön’s notion of reflection and provide support for structured reflection in CAAD education, based on earlier experiences with structured question lists in a civil engineering course. Findings after the first year’s run show a deeper level of reflection on a more elaborate level.
keywords Structured Reflection, CAAD, Education
series eCAADe
email
last changed 2022/06/07 07:54

_id caadria2005_a_2b_a
id caadria2005_a_2b_a
authors Affleck, Janice; Kvan Thomas
year 2005
title REINTERPRETING VIRTUAL HERITAGE
source CAADRIA 2005 [Proceedings of the 10th International Conference on Computer Aided Architectural Design Research in Asia / ISBN 89-7141-648-3] New Delhi (India) 28-30 April 2005, vol. 1, pp. 169-178
doi https://doi.org/10.52842/conf.caadria.2005.169
summary This paper describes the context and proposal for an alternative approach to the common pattern of application of digital tools in the area of cultural heritage, also know as Virtual Heritage (VH). It investigates and addresses arising issues in a digital case study developed to implement a theoretical framework and investigate how and if existing technology can support it.
series CAADRIA
type normal paper
email
last changed 2022/06/07 07:54

_id 2005_083
id 2005_083
authors Agostinho, Francisco Santos
year 2005
title Architecture as Drawing, Perception and Cognition
source Digital Design: The Quest for New Paradigms [23nd eCAADe Conference Proceedings / ISBN 0-9541183-3-2] Lisbon (Portugal) 21-24 September 2005, pp. 83-90
doi https://doi.org/10.52842/conf.ecaade.2005.083
summary This work is about realizing that human perception is inherent to architecture. It is an asset and a trait subject to training and development in an empirical way, involving physical and manual action. It cannot be taught literally through convention and logic reasoning. It is a human achievement of great significance built on intellectual and scientific knowledge. It is something, being physical and empirical, that is supported on instrumental procedure. The computer, as a machine and an instrument, does not shorten the empirical experience of manipulation; on the contrary, it enhances J.J. Gibson’s findings about the perception of space in relation to eye and body movement. Being a cybernetic machine the computer may, and shall, evolve, and become perceptive. In order for that to happen, it is important to keep in mind the mechanism of human perception. Through producing a computerized model of a major architectural work, we develop natural knowledge about its physical features and the thought that lies underneath. To be able to use the computer as an instrument provides a user with explicit knowledge about its ways and mechanism that has to be made available. It involves training, which is to a great extent self-explanatory, and also explicit knowledge about the conventions that are being used, such as programming, reasoning and trigonometry.
keywords Visualization; Environmental Simulation; Knowledge Modelling (KM); 3D Modeling
series eCAADe
email
last changed 2022/06/07 07:54

_id 2005_010
id 2005_010
authors Aish, Robert
year 2005
title From Intuition to Precision
source Digital Design: The Quest for New Paradigms [23nd eCAADe Conference Proceedings / ISBN 0-9541183-3-2] Lisbon (Portugal) 21-24 September 2005, pp. 10-14
doi https://doi.org/10.52842/conf.ecaade.2005.010
summary Design has been described as making inspire decisions with incomplete information. True, we may use prior knowledge, we may even think we understand the causalites involved, but what really matters is exploration: of new forms, of new materials, and speculation about the response to the resulting effects. Essentially, this exploration has its own dynamics, involving intuition and spontaneity, and without which there is no design. But of course we all know that this is not the whole story. Design is different to 'craft'; to directly 'making' or 'doing'. It necessarily has to be predictive in order to anticipate what the consequence of the 'making' or 'doing' will be. Therefore we inevitably have to counter balance our intuition with a well developed sense of premeditation. We have to be able to reason about future events, about the consequence of something that has not yet being made. There is always going to be an advantage if this reasoning can be achieved with a degree of precision. So how can we progress from intuition to precision? What abstractions can we use to represent, externalize and test the concepts involved? How can we augment the cognitive processes? How can we record the progression of ideas? And, how do we know when we have arrived? Design has a symbiotic relationship with geometry. There are many design issues that are independent of any specific configurations. We might call these “pre-geometric” issues. And having arrived at a particular configuration, there may be many material interpretations of the same geometry. We might call these “post-geometric” issues. But geometry is central to design, and without appropriate geometric understanding, the resulting design will be limited. Geometry has two distinct components, one is a formal descriptive system and the other is a process of subjective evaluation.
series eCAADe
email
last changed 2022/06/07 07:54

_id ijac20053201
id ijac20053201
authors Aitcheson, Robert; Friedman, Jonathan; Seebohm, Thomas
year 2005
title 3-Axis CNC Milling in Architectural Design
source International Journal of Architectural Computing vol. 3 - no. 2, 161-180
summary Physical scale models still have a role in architectural design. 3-axis CNC milling provides one way of making scale models both for study purposes and for presentation in durable materials such as wood. We present some types of scale models, the methods for creating them and the place in the design process that scale models occupy. We provide an overview of CNC milling procedures and issues and we describe the process of how one can creatively develop appropriate methods for milling different types of scale models and materials. Two case studies are presented with which we hope to convey not only the range of possible models that can be machined but also the way one creatively explores to arrive at appropriate milling strategies. Where apposite, we compare 3-axis CNC milling to newer technologies used for rapid prototyping but rapid prototyping is not a primary focus.
series journal
more http://www.multi-science.co.uk/ijac.htm
last changed 2007/03/04 07:08

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