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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_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 ecaade2022_431
id ecaade2022_431
authors Sieder-Semlitsch, Jakob and Nicholas, Paul
year 2022
title Self-Serveying Multi-Robot System for Remote Deposition Modelling
doi https://doi.org/10.52842/conf.ecaade.2022.1.233
source Pak, B, Wurzer, G and Stouffs, R (eds.), Co-creating the Future: Inclusion in and through Design - Proceedings of the 40th Conference on Education and Research in Computer Aided Architectural Design in Europe (eCAADe 2022) - Volume 1, Ghent, 13-16 September 2022, pp. 233–240
summary The need for increased automation of the AEC sector has been extensively documented within the architectural discipline over recent years. Far beyond economic perspectives, current advances in technology offer an increased and more direct implementation of sustainable materials. Within this research, the potential for the re-use of material with low embodied energy within automated construction will be examined. Herefore, Remote Material Deposition (RDM, firstly described in Dörfler et al., 2014) is utilized as main fabrication method, deploying varying compositions of local building debris, lime mortar, and sand, via a throwing arm. This research explores a method of continuous verification of material deployment and removal of material oversaturation to guarantee accuracy. Herefore, all instances of the robot ecology are in direct communication with one another and the user for verification, adaptation, and information. The proposed framework is examined through experimentation by designing, building, and implementing an inter-communicative network of bespoke semi-autonomous robots with all proposed parts of the system.
keywords Construction Automation, Material Reuse, Onsite Construction, Self Verifying System, Robot Ecology, Additive Manufacturing
series eCAADe
email
last changed 2024/04/22 07:10

_id caadria2014_071
id caadria2014_071
authors Li, Lezhi; Renyuan Hu, Meng Yao, Guangwei Huang and Ziyu Tong
year 2014
title Sculpting the Space: A Circulation Based Approach to Generative Design in a Multi-Agent System
doi https://doi.org/10.52842/conf.caadria.2014.565
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. 565–574
summary This paper discusses an MAS (multiagent system) based approach to generating architectural spaces that afford better modes of human movement. To achieve this, a pedestrian simulation is carried out to record the data with regard to human spatial experience during the walking process. Unlike common practices of performance oriented generation where final results are achieved through cycles of simulation and comparison, what we propose here is to let human’s movement exert direct influence on space. We made this possible by asking "humans" to project simulation data on architectural surroundings, and thus cause the layout to change for the purpose of affording what we designate as good spatial experiences. A generation experiment of an exhibition space is implemented to explore this approach, in which tentative rules of such spatial manipulation are proposed and tested through space syntax analyse. As the results suggested, by looking at spatial layouts through a lens of human behaviour, this projection-and-generation method provides some insight into space qualities that other methods could not have offered.
keywords Performance oriented generative design; projection; multi-agent system; pedestrian simulation; space syntax
series CAADRIA
email
last changed 2022/06/07 07:59

_id caadria2014_069
id caadria2014_069
authors Sosa, Ricardo; Qinqi Xu and Rajesh Elara Mohan
year 2014
title The House That Roomba Built
doi https://doi.org/10.52842/conf.caadria.2014.647
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. 647–656
summary The "Roomba House" (RH) is a novel generative design approach based on robotic interaction with the physical environment in order to inductively identify design opportunities for improving the design of future robot-inclusive spaces and furniture. The paper presents the theoretical and technological details of this approach, an empirical study of a cleaning robot and sample results from an evolutionary system inspired by heuristics inductively derived from the study. RH is an informed provocation based on the recognition that increasingly widespread domestic robots that roam our living spaces will infer key features and help produce creative design solutions that maintain or improve user requirements while improving their inclusiveness in everyday life.
keywords Robots, evolutionary creativity, computational creativity
series CAADRIA
email
last changed 2022/06/07 07:56

_id acadia14_555
id acadia14_555
authors Vomhof, Max; Vasey, Lauren, Brauer, Stefan; Eggenschwiler, Kurt; Strauss, Jurgen; Gramazio, Fabio; Kohler, Matthias
year 2014
title Robotic Fabrication of Acoustic Brick Walls
doi https://doi.org/10.52842/conf.acadia.2014.555
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. 555-564
summary This collaborative research project demonstrates the viability of using robotic fabrication and industrial polymer technologies in the fabrication of highly versatile and individually designed acoustically performative walls. Driven by the formal parameters which significantly impact the acoustics of a space through diffusion, in particular differentiated and aperiodic surface depth, a customizable system and fabrication process was developed in which an injection moulded element and a secondary insert are placed uniquely by robot and then joined through a process of ultra-sonic welding.
keywords Robotics, Digital Fabrication, Parametric Modelling, Acoustics, Collaborative Research Model, Ultra-Sonic Welding
series ACADIA
type Normal Paper
email
last changed 2022/06/07 07:58

_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_178
id sigradi2014_178
authors Baltazar, Ana Paula; Filipe Silva Gonçalves, Mateus Moreira Pontes, Emidio Dias Maciel e Souza, Luiza Silva Metzker
year 2014
title Ambiente de imersão virtual como ferramenta para mudança de paradigma no processo de projeto arquitetônico: da representação à interação [Virtual immersive environment as a tool for paradigm shift in architecturaldesign process: from representation to interaction]
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. 551-555
summary This paper discusses the possibility of a low-cost immersive virtual environment (AIVITS) shifting the paradigm from representation to interaction in architecture design process. It first presents the perspectival paradigm in architecture, initiated in the Renaissance and culminating with the separation between design, building and use, having representation as its main product. Then it discusses the possibility of having representation as a tool, no longer as a paradigm, in a design process based on interaction. It then presents the interface used in the low-cost immersive virtual environment, which instead of representing the final appearance of the building, stimulates people to play with constructive possibilities by means of gestures.
keywords Immersive environment; Virtual reality; Representation; Interaction; Stereoscopy
series SIGRADI
email
last changed 2016/03/10 09:47

_id acadia14_409
id acadia14_409
authors Bard, Joshua; Gannon, Madeline; Jacobson-Weaver, Zachary; Jeffers, Michael; Smith, Brian; Contreras, Mauricio
year 2014
title Seeing is Doing: Synthetic Tools for Robotically Augmented Fabrication in High-Skill Domains
doi https://doi.org/10.52842/conf.acadia.2014.409
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. 409-416
summary The historical split between visualization and actualization in architectural design has encouraged a disciplinary split between representation (the domain of the designer) and construction (a domain entirely removed from the Architect’s purview). This split between seeing and doing in architectural design can be questioned in the context of contemporary robotic technologies where physical and digital workflows comingle in high-skill, collaborative domains.
keywords Architectural Robotics, Human-Robot Collaboration, MOCAP, Adaptive Fabrication, High-Skill Domain, Robotics and Autonomous Design Systems
series ACADIA
type Normal Paper
email
last changed 2022/06/07 07:54

_id acadia14_579
id acadia14_579
authors Brell-Cokcan, Sigrid; Braumann, Johannes
year 2014
title Robotic Production Immanent Design: Creative toolpath Design in Micro and Macro Scale
doi https://doi.org/10.52842/conf.acadia.2014.579
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. 579-588
summary This paper discusses applications of production immanent design in the context of robotic fabrication and offers an outlook to a new research project on robotic stone structuring.
keywords production immanent design, robotic fabrication, parametric robot control, visual programming, Grasshopper
series ACADIA
type Normal Paper
email
last changed 2022/06/07 07:54

_id acadia14_709
id acadia14_709
authors Cantrell, Bradley; Holzman, Justine
year 2014
title Synthetic Ecologies: protocols, simulation, and manipulation for indeterminate landscapes
doi https://doi.org/10.52842/conf.acadia.2014.709
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. 709-718
summary This paper positions the design and curation of synthetic ecologies through the lens of simulation and monitoring as a way to develop logics of interaction and proposes autonomous decision-making, manipulations, and management of the landscape to establish adaptive and indeterminate landscapes.
keywords Synthetic Ecologies, Responsive System, Monitoring, Simulation, Feedback Loop, Protocological Control, Intelligent Environments
series ACADIA
type Normal Paper
email
last changed 2022/06/07 07:54

_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 caadria2014_047
id caadria2014_047
authors Dickinson, Susannah and Sheehan Wachter
year 2014
title Nature as a Comprehensive Model: A Biomimetic Installation
doi https://doi.org/10.52842/conf.caadria.2014.627
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. 627–636
summary The following group installation was part of a seminar on biomimetics at the University of Arizona, USA. The design began with research into various natural systems, namely cell growth and morphogenesis and digital tools. In nature cells contain preprogrammed responses based on intrinsic properties which allow for differentiation and adaptation to external forces. This logic of cell morphology was developed into the installation design. Form specificity and topological variation was developed through the manipulation of a material system, bending and loading identical components to adapt to external forces, such as the sun, while simultaneously navigating the site, providing structure and ultimately architectural space.
keywords Biomimetics; pedagogy; simulation; design/build
series CAADRIA
email
last changed 2022/06/07 07:55

_id ecaade2014_233
id ecaade2014_233
authors Evangelos Pantazis and David Gerber
year 2014
title Material Swarm Articulations - New View Reciprocal Frame Canopy
doi https://doi.org/10.52842/conf.ecaade.2014.1.463
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. 463-473
summary Material Swarm Articulations, is an experiment in developing a multi-objective optimization system that incorporates bottom up approaches for informing architectural design. The paper presents an initial built project that demonstrates the combination of a structural form finding method, with an agent based design system through the digital fabrication processes. The objective of this research is to develop a workflow combined with material and construction constraints that has the potential to increase performance objectives while enabling geometric complexity and design driven articulation of a traditional tectonic system. The emphasis of the research at this stage is to take advantage of material properties and assembly methods applied to a digital design and simulation workflow that enables emergent patterns to influence the performance of the space.The paper illustrates the research through a prototype of a self standing canopy structure in 1:1 scale. It presents results of the form finding, generative patterning, digital fabrication affordances and sets and agenda for next steps in the use of multi-agent systems for design purposes.
wos WOS:000361384700046
keywords Computational design; agent-based system; digital fabrication; parametric design; reciprocal frames; form finding; multi-objective optimization, multi-agent systems for design
series eCAADe
email
last changed 2022/06/07 07:55

_id acadia14projects_157
id acadia14projects_157
authors Fornes, Marc
year 2014
title Double Agent White
doi https://doi.org/10.52842/conf.acadia.2014.157
source ACADIA 14: Design Agency [Projects of the 34th Annual Conference of the Association for Computer Aided Design in Architecture (ACADIA) ISBN 9789126724478]Los Angeles 23-25 October, 2014), pp. 157-160
summary At the boundary between art and architecture, Double Agent White must satisfy constraints of enclosure, experience and portability. The structural skin is optimized through a dual set of descriptionsOne system of “macro” agents driven toward the minimum amount of parts for fabrication and maximum length to fit within transportation case; overlapping with secondary agent traces driven toward maximum intricacy of aperture and transversal structural connections onto parts.
keywords Multi Agent Systems in Design, Generative Design, Digital fabrication and construction, Practice-based and interdisciplinary computational design research, Material Logics and Tectonics, Material Agency
series ACADIA
type Practice Projects
email
last changed 2022/06/07 07:51

_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 caadria2014_156
id caadria2014_156
authors Iwata, Shouto; Mikiya Takei and Shiro Matsushima
year 2014
title Enhanced 3D-Space-Scanning System by Robotic Technology
doi https://doi.org/10.52842/conf.caadria.2014.347
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. 347–356
summary This study, which scans an architectural space with two-wheel vehicle robot technology that allows the flexible collection of three-dimensional (3D) data, may initiate the interaction between human beings and architecture in the future. It focuses on extracting building geometry and capturing human behavior in order to allow a space to communicate with human behavior. The current project extracts building geometry and human behavior data to create designs through a two-wheel robot; it was a collaborative project among the students of different majors, including mechanical engineering, human interaction, computer sciences, and architectural design. In this paper, the adaptive possibility of the RGB-Depth camera is examined in extracting building geometry.
keywords human behavior; robot; design process; scan
series CAADRIA
email
last changed 2022/06/07 07:50

_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 ecaade2014_159
id ecaade2014_159
authors Leyla Yunis, Ond_ej Kyjánek, Moritz Dörstelmann, Marshall Prado, Tobias Schwinn and Achim Menges
year 2014
title Bio-inspired and fabrication-informed design strategies for modular fibrous structures in architecture
doi https://doi.org/10.52842/conf.ecaade.2014.1.423
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. 423-432
summary Research pavilions can serve as architectural scale demonstrations for the materialization of experimental forms and structures. Pavilions seek to prove and change methods of design and construction mechanisms in order to achieve desires such as material efficiency, novel spatial qualities and performative needs. The case of the ICD/ITKE Research Pavilion 2013-14 highlights the use of fiber composites in order to achieve a core-less filament winding modular system from bio-inspired lightweight structures through robotic fabrication. This paper describes the multi-disciplinary design and construction process of this pavilion that created a structure of out 36 unique components.
wos WOS:000361384700042
keywords Bio-inspired; fiber composites; multi-disciplinary design; robotic fabrication; modular system construction
series eCAADe
email
last changed 2022/06/07 07:52

_id acadia14projects_219
id acadia14projects_219
authors Mirmotahari, AmirReza; Theodosiou, Joanna; Al-Hadeethi, Shahad Thamer
year 2014
title CrystalCloud
doi https://doi.org/10.52842/conf.acadia.2014.219.2
source ACADIA 14: Design Agency [Projects of the 34th Annual Conference of the Association for Computer Aided Design in Architecture (ACADIA) ISBN 9789126724478]Los Angeles 23-25 October, 2014), pp. 219-222
summary The aim of this project is to create a system that hybridizes two natural systems, clouds and crystals, and simultaneously explores the aspect of light. These rich domains with the introduction of small glass beads lead to an intricate fabric of architecture and moreover to a high-resolution fabric of light.
keywords synthetic constructability, Multi Agent Systems in Design, Robotics and Autonomous Design Systems, Big Data, Simulation + Intuition, Design Decision Making, Generative Design, Multidisciplinary Design Optimization, Design Computing and Cognition
series ACADIA
type Student's Research Projects
email
last changed 2022/06/07 07:58

_id ecaade2014_224
id ecaade2014_224
authors Mohammad Rahmani Asl, Michael Bergin, Adam Menter and Wei Yan
year 2014
title BIM-based Parametric Building Energy Performance Multi-Objective Optimization
doi https://doi.org/10.52842/conf.ecaade.2014.2.455
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. 455-464
summary Building energy performance assessments are complex multi-criteria problems. Appropriate tools that can help designers explore design alternatives and assess the energy performance for choosing the most appropriate alternative are in high demand. In this paper, we present a newly developed integrated parametric Building Information Modeling (BIM)-based system to interact with cloud-based whole building energy performance simulation and daylighting tools to optimize building energy performance using a Multi-Objective Optimization (MOO) algorithm. This system enables designers to explore design alternatives using a visual programming interface, while assessing the energy performance of the design models to search for the most appropriate design. A case study of minimizing the energy use while maximizing the appropriate daylighting level of a residential building is provided to showcase the utility of the system and its workflow.
wos WOS:000361385100048
keywords Building energy performance analysis; building information model (bim); parametric modelling; parametric energy simulation; multi-objective optimization
series eCAADe
email
last changed 2022/06/07 07:58

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