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  • 51.
    Runberger, Jonas
    KTH, Skolan för arkitektur och samhällsbyggnad (ABE), Fastigheter och byggande, Projektkommunikation. KTH, Skolan för arkitektur och samhällsbyggnad (ABE), Arkitektur, Arkitekturteknik.
    Cognitive Estrangement in Digital Design Practice2010Inngår i: ACSA West Central Fall: Flip Your Field, 2010Konferansepaper (Annet vitenskapelig)
    Abstract [en]

    The development of digital practice in architecture has over the past 20 years seen an open-ended, innovation driven development, covering territories of formal and generative design, fabrication, and production of building components or full scale structures. A parallel track in discourse has discussed the technological, cultural and societal meaning of the work, as post-project commentaries, or as actual drivers and pre-requisites of the work. As financial crisis and environmental concerns have shifted the attention of design discourse in general, the digital field is looking for new meaning. Concepts such as performance or affect emerged over the last decade as primarily aesthetic motivations, but their ambivalence and dual meaning makes them also useful as signifiers for architecture that deals with efficiency of energy and material. These considerations, previously seen as constraints in digital design process, are now becoming drivers and prime motivators, in order to link speculative practice with global issues. Another approach to making a previously internal discourse accessible to the outside has been to set it in an historical line of progression, in the extreme case in the definition of new styles such as Parametricism. In the latest iteration of this venture its main advocate Patrik Schumacher is calling out for a stylistic war in which Modernism would finally be replaced, claiming that style is the only aspect of architecture recognized to the society in general. As material and climatic performance becomes more important than its cultural and aesthetic counterpart, and a global diversified field of experimental practice is appropriated into a formalized manifesto, there is a risk that the open ended innovation of the past is shifted into a more conventional problem solving mode of practice.

    There is therefore a need for other trajectories for the future development within digital practice and discourse, in which an experimental and speculative approach can include relevant contextual issues in regards to imminent cultural, societal and environmental concerns. A look to other creative fields may give important clues, and a particular interesting field is the literature genre of science fiction. With a long tradition of informed speculations on how technological innovation or biological evolution can instigate profound changes in society, there is extensive literature theory to draw on.

    This paper will examine particular concepts within science fiction theory, such as the idea of cognitive estrangement put forward by Darko Suvin, referring to the double aspects of plausible extrapolations on technological evolution and with fantastic elements that introduces something previously unknown to the reader. It will re-assess these concepts and discuss their relevance in a speculative yet informed future mode of digital practice in architecture. It will draw on the author´s own design practice, as a partner of the Krets design research group, and revisit a series of projects exploring parametric design and fabrication strategies. In this way it will outline a mode of design practice that is given agency through an integrated conceptual narrative layer, avoiding the fallacy of the manifesto in favour for informed and project specific speculations on possible futures.

  • 52.
    Runberger, Jonas
    KTH, Skolan för arkitektur och samhällsbyggnad (ABE), Arkitektur, Arkitekturteknik.
    Lagens Estetik2007Inngår i: Rum, ISSN 1650-1330, nr 6Artikkel i tidsskrift (Annet (populærvitenskap, debatt, mm))
  • 53.
    Runberger, Jonas
    KTH, Skolan för arkitektur och samhällsbyggnad (ABE), Arkitektur, Arkitekturteknik.
    Medverkande Design2006Inngår i: Skapande människa: texter om konst och vetenskap / [ed] Bo Andér, Mats Brodén, Henrik Karlsson, Stockholm: Stiftelsen Skapande Människa , 2006Kapittel i bok, del av antologi (Annet (populærvitenskap, debatt, mm))
  • 54.
    Runberger, Jonas
    KTH, Skolan för arkitektur och samhällsbyggnad (ABE), Arkitektur, Arkitekturteknik.
    Mjukvaran leder till framtiden2006Inngår i: Arkitekten, ISSN 0903-2347, nr marsArtikkel i tidsskrift (Annet (populærvitenskap, debatt, mm))
  • 55.
    Runberger, Jonas
    KTH, Skolan för arkitektur och samhällsbyggnad (ABE), Arkitektur, Arkitekturteknik.
    PARCEL: Developing Performative Prototypes in Architectural Design2005Inngår i: Joining Forces: Design Research, Industries, and a New Interface for Comptetiveness / [ed] Lotta Palmi, Helsingfors: University of Art and Design Helsinki, 2005Konferansepaper (Annet vitenskapelig)
  • 56.
    Runberger, Jonas
    KTH, Skolan för arkitektur och samhällsbyggnad (ABE), Fastigheter och byggande, Projektkommunikation. KTH, Skolan för arkitektur och samhällsbyggnad (ABE), Arkitektur, Arkitekturteknik.
    Realtime Editing2008Inngår i: Rum : arkitektur, inredning och design, ISSN 1650-1330, nr 10Artikkel i tidsskrift (Annet (populærvitenskap, debatt, mm))
  • 57.
    Runberger, Jonas
    KTH, Skolan för arkitektur och samhällsbyggnad (ABE), Arkitektur, Arkitekturteknik.
    Remediation as operation and strategy within architectural design development2005Konferansepaper (Annet vitenskapelig)
  • 58.
    Runberger, Jonas
    KTH, Skolan för arkitektur och samhällsbyggnad (ABE), Fastigheter och byggande, Projektkommunikation. KTH, Skolan för arkitektur och samhällsbyggnad (ABE), Arkitektur, Arkitekturteknik.
    The Future Agency of Digital Design in Architecture2010Inngår i: CONDITIONS magazine, ISSN 1891-2672, nr 4, s. 76-81Artikkel i tidsskrift (Annet (populærvitenskap, debatt, mm))
    Abstract [en]

    The past 15 years have seen an open-ended, innovation driven development in the field of digital design in architecture, where the current ambitions are focused on fabrication and production. In many ways this is concluding a phase of free exploration by proving that things before envisioned can be actualized as built work. In parallel, the discourse has targeted critical practice, suggesting its replacement with projective practice, and design intelligence has been defined as a mode of operation that allows innovative architecture in a commercial arena. Recent attempts to conjecture a heterogeneous discourse into a collective manifesto, as well as a regard of the first decade of this century being characterized as “un-serious” in its formal approach, has been answered by critical voices that suggest that this trajectory of architectural development is superficial, internal, self-absorbed or even subversive.

     

    While these responses may be directed at singular voices (such as Patrik Schumacher´s recent manifesto), they are suggesting that contemporary architectural discourse needs more than a formal discourse. Yet, very important new knowledge has been created in the networks of practices that have emerged over the last decade, and perhaps more importantly, the lineage of computational design is far older than the mid 1990s. The missing piece today may be the future agenda, the agency beyond the explorations of spatial conception and material fabrication. How can new modes of design respond to and interact with the demands of society? What is the role of the primarily American aesthetic discourse in this regard? Is architectural practice changing, as suggested by Michael Speaks already in 1995, or are we replicating the classical notion of the architect augmented by new modes of representations?

     

    This text will investigate the shifting field of digitally based design within architecture, and its recent turns, including internal discourse, external debate, and samples of especially potential design. It will suggest that we need to multiply our agendas and combine techniques with agency. This needs to be supported by the establishment of new conceptual tools that incorporate digital techniques, the notion of the parametric and the potential of network practices in order to step up to the challenges of the future while building on the recent past.

     

     

     

     

     

    * Agency here denotes the motivation behind a group's action. There may be an opportunity to use this term in a fruitful way in this context, by learning from parallel architectural discourses that sometimes position themselves against the digital modes of operation.

  • 59.
    Runberger, Jonas
    et al.
    KTH, Skolan för arkitektur och samhällsbyggnad (ABE), Arkitektur, Arkitekturteknik.
    Gunterberg, Ylva
    Bostäder byggda med volymelement: En fallstudie av svenska bostadsprojekt - verklighet och vision2006Rapport (Annet (populærvitenskap, debatt, mm))
  • 60.
    Runberger, Jonas
    et al.
    KTH, Skolan för arkitektur och samhällsbyggnad (ABE), Arkitektur, Arkitekturteknik.
    Gunterberg, Ylva
    Volymelement i bostadsarkitekturen2006Rapport (Annet (populærvitenskap, debatt, mm))
  • 61.
    Runberger, Jonas
    et al.
    KTH, Skolan för arkitektur och samhällsbyggnad (ABE), Arkitektur, Arkitekturteknik.
    Karlsson, Ulrika
    KTH, Skolan för arkitektur och samhällsbyggnad (ABE), Arkitektur.
    Parametrisk design: Ett sätt att göra associationer2014Inngår i: Arkitekten, ISSN 0903-2347Artikkel i tidsskrift (Annet (populærvitenskap, debatt, mm))
  • 62.
    Runberger, Jonas
    et al.
    KTH, Skolan för arkitektur och samhällsbyggnad (ABE), Arkitektur, Arkitekturteknik.
    Magnusson, Frans
    Chalmers Arkitektur.
    Harnessing the Informal Processes around the Computational Design Model2015Inngår i: Modelling Behaviour: Design Modelling Symposium 2015 / [ed] Thomsen, M.R., Tamke, M., Gengnagel, C., Faircloth, B., Scheurer, F., Springer International Publishing , 2015, s. 329-339Konferansepaper (Fagfellevurdert)
    Abstract [en]

    This paper presents a strategic framework that facilitates the introduction of computational design techniques into architectural practice. The presented architectural design case, and the strategic framework itself, were developed within the Dsearch, a computational development team part of the R&D at White arkitekter AB. An important aspect of the work within the team is to support the integration of computational processes new to the practice, and promote organisational learning that enables a continuous development. The strategic framework therefore is related to certain concepts within the fields of Sociology and Knowledge Management, such as the notion of boundary objects as first defined by Susan Leigh Star and James R. Griesemer, then later developed by Etienne Wenger as an important factor for collaboration within communities of practice. The strategic framework – an assembly of a number of boundary objects, helps elevate the design model to a design system – a project specific set-up that facilitates design versioning, quality control of processes, and organisational learning. Examples are provided through a case project – the development of a 60 meter public bench for Forumtorget (Uppsala, Sweden).

  • 63.
    Scherer, Annie Locke
    KTH, Skolan för arkitektur och samhällsbyggnad (ABE), Arkitektur, Arkitekturteknik.
    Concrete Form[ing]work:: Designing and Simulating Parametrically-Patterned Fabric Formwork for Cast Concrete2019Inngår i: eCAADe SIGraDi 2019 Proceedings: Matter - FABRICATION AND CONSTRUCTION 2 - Volume 2 / [ed] Jose Pedro Sousa, Goncalo Castro Henriques, Joao Pedro Xavier, 2019, Vol. 2, s. 759-768, artikkel-id 193Konferansepaper (Fagfellevurdert)
    Fulltekst (pdf)
    fulltext
  • 64.
    Scherer, Annie Locke
    KTH, Skolan för arkitektur och samhällsbyggnad (ABE), Arkitektur, Arkitekturteknik.
    Concrete Form[ing]work:: Integrating patterns in flexible formwork for cast concrete2017Inngår i: Archidoct Journal, E-ISSN 2309-0103, ISSN 2309-0103, Vol. 5, nr 1Artikkel i tidsskrift (Fagfellevurdert)
    Fulltekst (pdf)
    fulltext
  • 65.
    Tessmann, Oliver
    KTH, Skolan för arkitektur och samhällsbyggnad (ABE), Arkitektur, Arkitekturteknik.
    Topological Interlocking Assemblies2013Inngår i: ECAADE 2012, Vol 2: Physical Digitality / [ed] Henri Achten, Jiří Pavliček, Jaroslav Hulín, Dana Matějovská, 2013, s. 211-219Konferansepaper (Fagfellevurdert)
    Abstract [en]

    Topological interlocking is a concept developed in material science. Solid modules form a structural system without the use of glue or mortar. Given fixed boundaries the elements constrain each other kinematically. This project seeks to re-conceptualize the system within an architectural framework by embracing computational design, analysis and fabrication tools and procedures. The goal is to develop geometrical differentiated, reversible, force-locked systems and the processes and methods to design and manufacture them. Students of the Architecture and Performative Design Studio (APD) at the Staedelschule Architecture Class (SAC) and the author developed the presented projects. The paper discusses the pedagogical approach of starting a design research studio from a very narrow material system. The research is continued at the School of Architecture of the Royal Institute of Technology (KTH) in Stockholm.

  • 66.
    Tessmann, Oliver
    et al.
    KTH, Skolan för arkitektur och samhällsbyggnad (ABE), Arkitektur, Arkitekturteknik.
    Becker, Mirco
    Staatliche Hochschule für bildende Künste Staedelschule.
    Extremely heavy and incredibly light: Performative assemblies in dynamic environments2013Inngår i: Open Systems - Proceedings of the 18th International Conference on Computer-Aided Architectural Design Research in Asia, CAADRIA 2013: / [ed] Rudi Stouffs, Patrick Janssen, Stanislav Roudavski, Bige Tunçer, Singapore: The Association for Computer-Aided Architectural Design Research in Asia (CAADRIA), Hong Kong, and Center for Advanced Studies in Architecture (CASA), Department of Architecture, School of Design and Environment, National University of Singapore, Singapore , 2013, s. 469-478Konferansepaper (Fagfellevurdert)
    Abstract [en]

    This research addresses the design and negotiation of two kinds of assemblies that are similar in topology but fundamentally different in performance. Firstly, Topological Interlocking Assemblies (TA) are made of solid elements. Their overall structural integrity relies on each element being kinematical constraint by its neighbours. Secondly, Bell Kites, similar in topology but fundamentally different in performance these kites are made of clusters of tetrahedrons. While TAare heavy, massive and exposed to gravity Bell Kites are super light and dominantly driven by wind forces. These two instances formulate the opposing ends of a spectrum in which a new system, one that is capable of covering the full range of performance, is developed and re-conceptualized in architectural context. The research seeks designinnovation by scrutinizing systems that are not yet part of the architectural ecosystem. Mapping out their performative characteristics and developing their spatial and programmatic potential through conscious design moves explore the potential for architectural applications. The work presented in this paper is the result of a design research studio of the Architecture and Performative Design Class at the Staedelschule in Frankfurt.

  • 67.
    Tessmann, Oliver
    et al.
    KTH, Skolan för arkitektur och samhällsbyggnad (ABE), Arkitektur, Arkitekturteknik.
    Bollinger, Klaus
    Universität für angewandte Kunst Wien.
    Grohmann, Manfred
    University of Kassel.
    Projektbeispiele: Digitale Tragwerksgenerierung, Spehre Deutsche Bank Frankfurt, Fussgaengerbruecke Reden, Rolex Learning Center Lausanne, Hungerburgbahn Innsbruck2010Inngår i: Digitale Prozess: Planung Fertigung Gestaltung / [ed] Moritz Hauschild, Rüdiger Karzel, Munich: Institut für internationale Architektur-Dokumentation GmbH + Co. KG , 2010, 1, s. 72-85Kapittel i bok, del av antologi (Annet vitenskapelig)
    Abstract [de]

    Der Planungsprozess von Tragwerken ist in den meisten Phasen von digitalen Technologien durchdrungen. Fast immer ist das rechnergestützte Arbeiten eine Optimierung bisheriger Prozesse, da repetitive Vorgänge automatisiert werden können und der Computer eine hohe Präzision liefert. Darüber hinaus verändern sich planerische Paradigmen wenn digitale Techniken konzeptionell und allumfassend  verwendet werden. Im Folgenden werden anhand einer Reihe von Projekten aus dem Büro Bollinger + Grohmann der konzeptionelle Einsatz computerbasierter Methoden in frühen Entwurfs- und Planungsphasen erläutert. Computer können viele Entwurfsvarianten erzeugen und bewerten und dadurch vorher nicht gekannte Lösungen auffinden. Tragwerke werden generiert, sofort evaluiert und für spezifische Situationen adaptiert. 

  • 68.
    Tessmann, Oliver
    et al.
    KTH, Skolan för arkitektur och samhällsbyggnad (ABE), Arkitektur, Arkitekturteknik.
    Bollinger, Klaus
    Universität für angewandte Kunst Wien.
    Grohmann, Manfred
    University of Kassel.
    Prozessinnovation beim Konstruieren2008Inngår i: ARCH+: Archplus, ISSN 0587-3452, nr 188, s. 88-91Artikkel i tidsskrift (Annet vitenskapelig)
    Abstract [de]

    Die Tragwerksplanung bedient sich in der täglichen Arbeit Formalismen und Methoden, um Sicherheit und Vorhersagbarkeit von Tragstrukturen gewährleisten zu können. Formalisierung bedeutet, dass Denkprozesse in Handlungsprozesse überführt werden. Eine Reihe von Regeln stehen zur Verfügung, die die Handlungsalternativen einschränken und bereits geleistete Verständnisarbeit funktionalisieren. Einmal gewonnene Erkenntnis ist theoretisch für jedermann erlernbar und gehört zum ‘öffentlichen Denken’. 

    In unserer Arbeit mit Architekten werden die Rahmenbedingungen für Tragwerke aufgeweitet. Der Entwurfsprozess liefert Erkenntnisse, die zur Hinterfragung der Anfangsbedingungen führen und damit eine erneute Iteration erfordern. Tragwerke entstehen im Dialog mit allen Planungsbeteiligten. Der Tragwerksentwurf ist nur ein Aspekt in einem komplexen Netzwerk von Anforderungen, die ins Gleichgewicht gebracht werden müssen.

  • 69.
    Tessmann, Oliver
    et al.
    KTH, Skolan för arkitektur och samhällsbyggnad (ABE), Arkitektur, Arkitekturteknik.
    Bollinger, Klaus
    Universität für angewandte Kunst Wien.
    Manfred, Grohmann
    University of Kassel.
    Mark, Fahlbusch
    Markus, Schein
    Kunsthochschule Kassel.
    The Sphere – generate, calculate, fabricate2011Inngår i: Fabricate: Making Digital Architecture / [ed] Ruairi Glyn, Bob Sheil, Ontario: Riverside Architectural Press , 2011, 1Kapittel i bok, del av antologi (Fagfellevurdert)
    Abstract [en]

    In 2006 Mario Bellini won the architectural competition for the refurbishment of the iconic Deutsche Bank twin towers in Frankfurt. Within the extensive environmentally-conscious renovation Bellini identified nine key areas to be modernized. In the lobby he proposed a strong visual focus point: A sphere, made from seemingly random criss-crossing metal strips, represents a fluid and dynamic core of the building. Bellini’s vision closely matched the client’s goals. Thus the image of the sphere was further developed by an interdisciplinary team of the architect (Mario Bellini Associati S.r.l), the engineers (Bollinger + Grohmann), and the contractor (Arnold AG). The process from the image to the real object is described in this chapter.

  • 70.
    Tessmann, Oliver
    et al.
    KTH, Skolan för arkitektur och samhällsbyggnad (ABE), Arkitektur, Arkitekturteknik.
    Grohmann, Manfred
    University of Kassel.
    Geometry, topology, materiality: The structural parameters in a collaborative design approach2011Inngår i: Distributed Intelligence In Design / [ed] Tuba Kocatürk, Benachir Medjdoub, West Sussex: Blackwell Publishing, 2011, 1, s. 252-259Kapittel i bok, del av antologi (Fagfellevurdert)
    Abstract [en]

    Collaborative design resembles a discussion or conversation. Ideas are bounced off the different members of a design team. Depending on the task and the point in time the engineer joins a design team different structural parameters contribute to an integrated solution. The paper will present different strategies we pursue involving geometry, topology and materiality. Geometry plays a major role for structural performance in large-scale structures and at the same time embodies the architectural design approach. Thus a solution which suits different requirements has to be negotiated. Topology of surface- and vector-active systems within a predefined shape or envelope can become the objective of evolutionary design processes where structure adapts to specific needs. Materiality is embedded into a larger context of material systems that include digital workflow and fabrication.

  • 71.
    Tessmann, Oliver
    et al.
    KTH, Skolan för arkitektur och samhällsbyggnad (ABE), Arkitektur, Arkitekturteknik.
    Klaus, Bollinger
    Universität für angewandte Kunst Wien.
    Grohmann, Manfred
    University of Kassel.
    Truss Structures – from Typology to Adaption2010Inngår i: Journal of the International Association for Shell and Spatial Structures (J. IASS), ISSN 1028-365X, Vol. 51, nr 3, s. 190-194Artikkel i tidsskrift (Fagfellevurdert)
    Abstract [en]

    New structural mechanics insights have always had repercussions on the design procedures for engineers. The structural typologies resulting from these procedures privilege certain solutions while dismissing others. Timber bridge constructions of different periods exemplify this development. Computational design tools offer new possibilities for design procedures that overcome predefined structural typologies and evolve highly context sensitive and adapted structures. An evolutionary design approach for a vector active pedestrian bridge in Germany is presented in this paper.

  • 72.
    Tessmann, Oliver
    et al.
    KTH, Skolan för arkitektur och samhällsbyggnad (ABE), Arkitektur, Arkitekturteknik.
    Mirco, Becker
    Fromm, Asko
    University of Kassel.
    A design approach integrating architectural design with engineering by using programming as an adaptive tool2005Inngår i: Innovation in Architecture, Engineering and Construction, Volume 1 - Innovation in Design, Engineering and Construction / [ed] SARIYILDIZ S., TUNÇER B., Rotterdam: SOON , 2005, s. 73-80Konferansepaper (Fagfellevurdert)
    Abstract [en]

    Instead of using engineering consultancy after finishing a design proposal and expecting solutions our pitch is to evaporate the professional demarcations of architects and engineers in order to synthesize the expertise of both professions. A collaborative approach with emphasis on a critical feedback is initiated in the beginning of the project.

    The use of NURBS surfaces as a powerful representation of double-curved surfaces ever so often compromises constructability. The paper describes how such a surface is translated into a population of parametric components. An adaptive space frame module is proliferated by using the surface parameterisation and a set of script routines. Component and form are developed simultaneously using design and engineering intelligence.

    This cooperative strategy between architects and engineers as well as the use of programming is exemplified by the project “augmentedFRAME” a design proposal for a landmark tower for Paris’ bid to organise the Olympic Games 2012. 

  • 73.
    Tessmann, Oliver
    et al.
    KTH, Skolan för arkitektur och samhällsbyggnad (ABE), Arkitektur, Arkitekturteknik.
    Schein, Markus
    Kunsthochschule Kassel.
    Structural Analysis as Driver in Surface-Based Design Approaches2008Inngår i: International Journal of Architectural Computing, ISSN 1478-0771 , Vol. 6, nr 1, s. 19-39Artikkel i tidsskrift (Fagfellevurdert)
    Abstract [en]

    This research argues for novel strategies to integrate structural analysis data in architectural design. Instead of a linear procedure of analysis, synthesis, evaluation and post-rationalization a synthesis/evaluation loop is installed which embeds structural analysis data as design driver from early on. The approach regards structural performance as one design criteria within a network of different requirements. An equilibrium of multiple parameters is aspired to instead of a single-parameter-optimum.The research is conducted via a custom-made digital interface between 3d modelling software and an application for structural analysis of space frames. The information exchange provides the basis for successive strategies within a collaborative design process of spatial roof structures: negotiation of an overall form and a multi-dimensional improvement of space frame topologies by a Genetic Algorithm (GA).

  • 74.
    Tim, Anstey
    KTH, Skolan för arkitektur och samhällsbyggnad (ABE), Arkitektur, Arkitekturteknik.
    Obelisks and other Phenomena: Works, Artefacts, Processes2011Inngår i: KTHA: #2 / [ed] Johan Andersson, Tim Anstey et. al., Stockholm: KTH Arkitekturskolan , 2011Kapittel i bok, del av antologi (Annet vitenskapelig)
  • 75.
    Tim, Anstey
    et al.
    KTH, Skolan för arkitektur och samhällsbyggnad (ABE), Arkitektur, Arkitekturteknik.
    Kara, Hanif
    KTH, Skolan för arkitektur och samhällsbyggnad (ABE), Arkitektur, Arkitekturteknik.
    Designing the Phaeno Science Centre2008Inngår i: Design Engineering: AKT Adams Kara Taylor / [ed] Hanif Kara and Micheal Kubo, Barcelona: Actar , 2008, s. 78-82Kapittel i bok, del av antologi (Annet vitenskapelig)
  • 76.
    Weilandt, Agnes
    et al.
    Fachhochschule Frankfurt.
    Tessmann, Oliver
    KTH, Skolan för arkitektur och samhällsbyggnad (ABE), Arkitektur, Arkitekturteknik.
    From Structural Purity to Site Specificity: New Canopies for the Entrance Gates of the Messe Frankfurt2013Inngår i: Rethinking Prototyping: Proceedings of the Design Modelling Symposium Berlin 2013 / [ed] C. Gengnagel, A. Kilian, J. Nembrini, F. Scheurer, Berlin, 2013, s. 91-102Konferansepaper (Fagfellevurdert)
    Abstract [en]

    This paper describes a structural design approach that seeks to replace structural purity and preconceived typologies by site-specific constructions. The process is exemplified by a canopy design for the Frankfurt fair. The competition-winning proposal is the result of a collaborative design effort of architects and structural engineers. In a computational design process the structure is optimized in regards to fabrications requirements and material consumption.  Beyond the particular project the design process is accompanied by a design tool development. Shortcomings in existing tools became obvious in the process and showed the need for in-house development of advanced collaborative digital design tools. 

12 51 - 76 of 76
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