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

PDF papers
References

Hits 1 to 20 of 628

_id acadia14projects_55
id acadia14projects_55
authors Carlow, Jason
year 2014
title Parametric Façade Systems: Performance-Driven design for ultra-thin buildings in Hong Kong
doi https://doi.org/10.52842/conf.acadia.2014.055
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. 55-58
summary Through design research, analysis and modeling, the project seeks to distort the standardizing forces of building code limitations, economic concerns and mass production on the built environment. The project presents a proposal for an extremely thin building type that features a more responsive, better integrated façade developed with parametric design tools.
keywords Parametric Design, Pre-fabrication, Façade Systems, Digital Fabrication, Linear Domesticity, Building Code
series ACADIA
type Research Projects
email
last changed 2022/06/07 07:56

_id ecaade2024_167
id ecaade2024_167
authors Alammar, Ammar; Alymani, Abdulrahman; Jabi, Wassim
year 2024
title Building Energy Efficiency Estimations with Random Forest for Single and Multi-Zones
doi https://doi.org/10.52842/conf.ecaade.2024.2.365
source Kontovourkis, O, Phocas, MC and Wurzer, G (eds.), Data-Driven Intelligence - Proceedings of the 42nd Conference on Education and Research in Computer Aided Architectural Design in Europe (eCAADe 2024), Nicosia, 11-13 September 2024, Volume 2, pp. 365–374
summary Surrogate models (SM) present an opportunity for rapid assessment of a building's performance, surpassing the pace of simulation-based methods. Setting up a simulation for a single concept involves defining numerous parameters, disrupting the architect's creative flow due to extended simulation run times. Therefore, this research explores integrating building energy analysis with advanced machine learning techniques to predict heating and cooling loads (KWh/m2) for single and multi-zones in buildings. To generate the dataset, the study adopts a parametric generative workflow, building upon Chou and Bui's (2014) methodology. This dataset encompasses multiple building forms, each with unique topological connections and attributes, ensuring a thorough analysis across varied building scenarios. These scenarios undergo thermal simulation to generate data for machine learning analysis. The study primarily utilizes Random Forest (RF) as a new technique to estimate the heating and cooling loads in buildings, a critical factor in building energy efficiency. Following that, A random search approach is utilized to optimize the hyperparameters, enhancing the robustness and accuracy of the machine learning models employed later in the research. The RF algorithms demonstrate high performance in predicting heating and cooling loads (KWh/m2), contributing to enhanced building energy efficiency. The study underscores the potential of machine learning in optimizing building designs for energy efficiency.
keywords Heating and Cooling loads, Topology, Machine learning, Random Forest
series eCAADe
email
last changed 2024/11/17 22:05

_id caadria2014_505
id caadria2014_505
authors Carlow, Jason F.
year 2014
title Performance-Driven Façade Systems
doi https://doi.org/10.52842/conf.caadria.2014.923
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. 923–924
series CAADRIA
type poster
email
last changed 2022/06/07 07:55

_id acadia14_365
id acadia14_365
authors Cheng, Nancy Yen-wen; Lockyear, Brian
year 2014
title Communicating Climate-Smart Scenarios with Data-Driven Illustrations
doi https://doi.org/10.52842/conf.acadia.2014.365
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. 365-374
summary This paper describes how to generate accessible streetscape illustrations from planning scenario maps using a parametric urban modeler in a graphics workflow. The project connects economic forecasting, GIS mapping, and 3D architectural graphics.
keywords Planning Visualization, Parametric Urban Modeling, , Practice-based and Interdisciplinary Computational Design Research
series ACADIA
type Normal Paper
email
last changed 2022/06/07 07:55

_id ecaade2014_145
id ecaade2014_145
authors Peter Búš, Lukáš Kurilla and Henri Achten
year 2014
title Emergent articulation field in existing urban context - Computational typologies with emergent matter
doi https://doi.org/10.52842/conf.ecaade.2014.1.181
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. 181-189
summary The main purpose of this research is to introduce and verify selected advanced computational methodologies operating with agent-oriented approach that are applicable within the framework of emergent urban design strategies in early stages of zoning proceedings. The aim is to demonstrate that speculative matter of the phenomenon of emergence in terms of design thought driven by computational models can also be applicable within real existing urban conditions. The research concurs previous researches in the field of urban pre-reconfigurations in the selected city environments. It concentrates on developing a simulation model as an analytical and generative instrumental platform for architects in early phases of urban design and synthetizes accumulated computational advancements based on agent-oriented approach.
wos WOS:000361384700018
keywords Emergence; agent-oriented modelling; urban agency; colonial growth; bottom-up strategy
series eCAADe
email
last changed 2022/06/07 08:00

_id ascaad2014_033
id ascaad2014_033
authors Al-Mousa , Sukainah Adnan
year 2014
title Temporary Architecture: An urban mirage
source Digital Crafting [7th International Conference Proceedings of the Arab Society for Computer Aided Architectural Design (ASCAAD 2014 / ISBN 978-603-90142-5-6], Jeddah (Kingdom of Saudi Arabia), 31 March - 3 April 2014, pp. 405-413
summary One of the emerging multidisciplinary contemporary art practices is interactive installation art, which is concerned with constructing a temporary artistic environment that is digital, responsive and engaging. It is usually displayed within existing architectural context whether indoor in a gallery space or outdoor in a public space. Recent examples of such art projects show that interactivity and illusion are effectively present and highly influential in the perception and memory of the place. A digital display on a building façade can remain attached to the history of the site in the spectator’s memory even after the display is removed. An interactive space that involves body response and emotional sensory interaction can determine the narrative perceived from the experience. These trends seemingly bring together the physical context and the digital space to contain the spectator. The two mediums are merged to provide a new genre of space, hence a new mode of perception where the art space mediates people’s movement and overlay the context with new meanings. Multiple backgrounds are involved in the creative process of interactive installation art, all of which involve examining various concepts through artistic engagement with temporary spaces. Here, particularly because of interactivity and immerseveness, the spectator becomes part of the performance (the subject); with his moving and reacting he activates the narrative and probably gives it its shape. This paper aims to explore the potentials of the digital spatial display to enhance or weaken our sense of belonging to the surrounding environments while creating an illusionary space within the real physical one. It also aims to discuss how this influence would affect the memory of the mixed experience; the installation being digital, temporary and illusive and the space being physical, permanent and real. What happens to the “spectator” when contained by the digital-interactive and the physical medium(s)?. In order to unfold the mentioned questions, the study uses theories of perception and performance reflected on live case studies of recent art projects where the researcher becomes a member of the audience and an observer at the same time in order to trace the journey inside this new medium. In an era where time is being more difficult to grasp and identities of visual culture is becoming more difficult to define, temporary responsive environments can provide some openings where space becomes durational, yet, influential, and where people’s movements become more meaningful in the visual terrain.
series ASCAAD
email
last changed 2016/02/15 13:09

_id acadia14_327
id acadia14_327
authors Cabrinha, Mark; Ponitz, Jeff
year 2014
title Simplexity: Unitized FRP Façade Systems
doi https://doi.org/10.52842/conf.acadia.2014.327
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. 327-332
summary Working with industry partners from architecture, engineering, and fabrication, the Material Innovation Lab at Cal Poly Architecture envisions lightweight high-performance fiber-reinforced polymer (FRP) unitized façade systems.
keywords Composite Materials, FRP, Formwork, Unitized, Facades, Parts Consolidation
series ACADIA
type Normal Paper
email
last changed 2022/06/07 07:54

_id acadia14projects_223
id acadia14projects_223
authors Friedman, Jared; Kim, Heamin; Mesa, Olga
year 2014
title Woven Clay
doi https://doi.org/10.52842/conf.acadia.2014.223
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. 223-226
summary The accompanying poster outlines the research behind a robotic clay deposition technique that weaves clay coils in order to build up a surface. The façade panels produced by the research team act as a proxy for potential applications of the fabrication technique.
keywords Robotics, Ceramics, Additive Manufacturing, 3D Printing, Weaving, Craft in a Digital Age
series ACADIA
type Student's Research Projects
email
last changed 2022/06/07 07:50

_id ascaad2014_022
id ascaad2014_022
authors Kotsopoulos, Sotirios D.; Leonardo Giusti and Federico Casalegno
year 2014
title Designing Synchronous Interactions for the Fenestration System of a Prototype Sustainable Dwelling
source Digital Crafting [7th International Conference Proceedings of the Arab Society for Computer Aided Architectural Design (ASCAAD 2014 / ISBN 978-603-90142-5-6], Jeddah (Kingdom of Saudi Arabia), 31 March - 3 April 2014, pp. 291-301
summary This paper presents an interactive fenestration system designed for the principal façade of a prototype sustainable dwelling. The system attains autonomous, responsive and interactive modes of operation, and is able to provide synchronous response to a wide variety of environmental conditions and user needs. The method to address the design of the system was to integrate electro-active materials and real time sensing and control technologies. The test was to implement a full-scale façade with the abovementioned capabilities. This presentation discusses the features, technologies and reasoning followed in the design and implementation of the façade.
series ASCAAD
email
last changed 2016/02/15 13:09

_id acadia14projects_205
id acadia14projects_205
authors Ley, Rob
year 2014
title May/September: Eskenazi Hospital Parking Structure Façade
doi https://doi.org/10.52842/conf.acadia.2014.205
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. 205-209
summary Façade for Eskenazi Hospital, Indianapolis, IN
keywords Binary, Synthetic, Terrain, Articulated, Variable, Morphing, Interactive
series ACADIA
type Practice Projects
email
last changed 2022/06/07 07:52

_id ecaade2014_009
id ecaade2014_009
authors Marie Davidova, Martin Šichman and Martin Gsandtner
year 2014
title Material Performance of Solid Wood:Paresite, The Environmental Summer Pavilion
doi https://doi.org/10.52842/conf.ecaade.2014.2.139
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. 139-144
summary The Paresite - The Environmental Summer Pavilion designed for reSITE festival, is a möbius shaped structure, built from torsed pine wood planks in triangular grid with half cm thin pine wood triangular sheets that provide shadow and evaporate moisture in dry weather. The sheets, cut in a tangential section, interact with humidity by warping themselves, allowing air circulation for the evaporation in arid conditions. The design was accomplished in Grasshopper for Rhino in combination with Rhino and afterwards digitally fabricated. This interdisciplinary project involved students from the Architectural Institute in Prague (ARCHIP) and the students of the Faculty of Forestry and Wood Sciences at the Czech University of Life Sciences Prague (FLD CZU). The goal was to design and build a pavilion from a solid pine wood in order to analyse its material properties and reactions to the environment and to accommodate functions for reSITE festival. The design was prepared within half term studio course and completed in June 2013 on Karlovo Square in Prague where it hosted1600 visitors during festival weekend.
wos WOS:000361385100014
keywords Material performance; solid wood; wood - humidity interaction
series eCAADe
email
last changed 2022/06/07 07:59

_id ecaade2014_024
id ecaade2014_024
authors Maycon Sedrez, Rafael Meneghel and Gabriela Celani
year 2014
title Digital fabrication of a brise-soleil using fractal geometry as generative system
doi https://doi.org/10.52842/conf.ecaade.2014.2.315
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. 315-325
summary Parametric design and digital fabrication are becoming ubiquitous tools to contemporary architecture and imply a different design process. With this new perception of the contemporary production we have designed a façade sun shade using fractal geometry as a generative system. Fractals are complex shapes generated with simple rules, so it is relatively easy to change the final geometry when we work with parameters. The design process made possible the creation of different options for the brise-soleil using parametric definitions. Some solutions were physically modeled using rapid prototyping, which we consider an essential tool in the contemporary design process. The whole process conducted to the conclusion that architects need to incorporate a new set of skills when working with digital fabrication. Keywords: fractal, design process, generative system, digital fabrication.
wos WOS:000361385100033
keywords Fractal geometry; generative system; digital fabrication; design process
series eCAADe
email
last changed 2022/06/07 07:58

_id ecaade2014_067
id ecaade2014_067
authors Mehrnoush Latifi Khorasani, Jane Burry and Mahsa Salehi
year 2014
title Thermal performance of patterned facades - Studies on effects of patterns on the thermal performance of facades
doi https://doi.org/10.52842/conf.ecaade.2014.1.267
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. 267-276
summary Skin is the primary shield between our body and its surroundings. It protects the body from the harmful environmental effects like dehydration and radiation from intense sunlight. Likewise, the outer layer, or skin of a building has the same function of protecting its inhabitants against the external elements. This research is a part of a larger investigation into geometrical patterning and layering of facades as an effective intervention between the outdoor space and the indoor environment to regulate the conditions for occupant thermal comfort. This paper reports on exploration of an approach for measurement, evaluation and feedback in the design workflow through a mixed digital -physical simulation platform (MDPS) based on the objectives of the larger study. For this purpose, it introduces a new way of analyzing thermal performance of double skin facades by using temperature sensors, Arduino, post visualization with MATLAB and digital energy simulation. The main aspects of this proposed workflow is the design of a thermal performance feedback loop as an integral part of the process of geometrical patterning design for façade.
wos WOS:000361384700026
keywords Patterned facades; thermal performance; surface temperature; data visualization; mixed digital physical simulation
series eCAADe
email
last changed 2022/06/07 07:58

_id caadria2014_254
id caadria2014_254
authors Tuker, Cetin and Halil Erhan
year 2014
title An Architectural Modeling Method for Game Environments and Visualization
doi https://doi.org/10.52842/conf.caadria.2014.605
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. 605–614
summary Modeling 3D architectural environments for games and design visualization is different than modelling for other purposes, such as for construction. These models include only the outer surfaces as ‘skin’ structures of the facades for rendering for which existing tools are too complex. After interviewing fourteen domain experts and evaluating available modelling tools, we observed a need for new modelling methods for rapid visualizations that leaves redundant model parts out for efficiency. We have developed a surface modelling method and a formalism for modelling architectural environments by slicing a building into layers with strips of façade element sequences. In the first prototype, we focused on parametric structures using userdefined architectonic vocabulary such as voids and solids. We conducted an expert review study with four participants: two user-experience and two domain experts. All participants responded that the method is easy to learn even for non-experts. Based on the tasks completed, they agreed that the method can speed the process of modelling large continuous façades, single-mass single-storey geometries, and repetitive floor layers; they also made suggestions for improvement. The results from the initial evaluation show that the method presented has some merits to be used in practice.
keywords 3D modelling; facade reconstruction; game; visualization
series CAADRIA
email
last changed 2022/06/07 07:57

_id caadria2014_095
id caadria2014_095
authors Yekutiel, Tatyana Pankratov and Yasha Jacob Grobman
year 2014
title Controlling Kinetic Cladding Components in Building Façades: A Case for Autonomous Movement
doi https://doi.org/10.52842/conf.caadria.2014.129
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. 129–138
summary "The movement of building façade cladding is usually used to control buildings’ exposure to environmental conditions such as direct sunlight, noise and wind. Until recently, technology and cost constraints allowed for only limited types of façade cladding movement. One of the main restrictions stemmed from the limitations that architects face in designing and controlling movement scenarios in which each façade or cladding element moves autonomously. The introduction of parametric design tools for architectural design, combined with the advent of inexpensive sensor/actuator microcontrollers, made it possible to explore ways to overcome this limitation. Autonomous movement of building façade cladding elements has several potential benefits. One of the main feasible advantages of this type of movement is that it can deal with changing external and interior local conditions in different parts of the façade by individually controlled movement, by preceding reaction or flock behaviour. Thus, it can increase significantly the performance of the building façade. This paper presents new results from an ongoing research study that is examining the potential of autonomous movement of façade cladding elements. It compares the environmental performance of centrally controlled kinetic façade elements and a prototypic façade made of autonomously controlled elements.
keywords Kinetic cladding components; responsiveness; interactive; decentralised control; Arduino
series CAADRIA
email
last changed 2022/06/07 07:57

_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

_id acadia14_691
id acadia14_691
authors Sharaidin, Kamil
year 2014
title Using Physical Models in Design to Evaluate the Acclimatisation of Kinetic Facades for Daylight and Thermal Performance
doi https://doi.org/10.52842/conf.acadia.2014.691
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. 691-698
summary The paper discusses the exploration of physical testing to understand the kinetic facades performance in response to daylight and thermal heat conditions. This exploration can be alternative tools for the designers to explore the performance of kinetic facades in response to daylighting and thermal heat condition in the early design stage
keywords Interactive Architecture, Design Decision Making, Performance in Design
series ACADIA
type Normal Paper
email
last changed 2022/06/07 07:56

_id acadia14_655
id acadia14_655
authors Su, Zhouzhou; Yan, Wei
year 2014
title Improving Genetic Algorithm for Design Optimization Using Architectural Domain Knowledge
doi https://doi.org/10.52842/conf.acadia.2014.655
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.655-660
summary The paper presents an improved genetic algorithm (GA) for architectural design optimization problems with offline simulation method utilizing specific domain knowledge in architecture. The method is evaluated by a case study of a nursing unit design, for which the objectives are to minimize nurses’ travel distance and maximize daylighting performance in patient rooms.
keywords design optimization, building simulation, genetic algorithm, offline simulation, computational complexity, walking distance
series ACADIA
type Normal Paper
email
last changed 2022/06/07 07:56

_id sigradi2014_128
id sigradi2014_128
authors Alves Veloso, Pedro Luís
year 2014
title Explorando o diagrama de bolhas [Exploring the bubble diagram]
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. 115-119
summary This paper presents an interactive bubble diagram developed to support design exploration. The proposed diagram consists of multiple goal-oriented agents, whose interaction with the user stimulates the analysis and exploration of new spatial patterns. Until now, there are two versions implemented. The first was developed combining scripting language and a graphical editor of algorithms embedded in modeling software. The second was developed with event-driven programming techniques emphasizing functions to amplify the interaction between user and agents. Finally, as the result of this exploratory stage of the research, we propose new paths of development for the next versions of the diagram.
keywords Architectural design; bubble diagram; graph; interaction
series SIGRADI
email
last changed 2016/03/10 09:47

_id caadria2021_089
id caadria2021_089
authors Cristie, Verina, Ibrahim, Nazim and Joyce, Sam Conrad
year 2021
title Capturing and Evaluating Parametric Design Exploration in a Collaborative Environment - A study case of versioning for parametric design
doi https://doi.org/10.52842/conf.caadria.2021.2.131
source A. Globa, J. van Ameijde, A. Fingrut, N. Kim, T.T.S. Lo (eds.), PROJECTIONS - Proceedings of the 26th CAADRIA Conference - Volume 2, The Chinese University of Hong Kong and Online, Hong Kong, 29 March - 1 April 2021, pp. 131-140
summary Although parametric modelling and digital design tools have become ubiquitous in digital design, there is a limited understanding of how designers apply them in their design processes (Yu et al., 2014). This paper looks at the use of GHShot versioning tool developed by the authors (Cristie & Joyce, 2018; 2019) used to capture and track changes and progression of parametric models to understand early-stage design exploration and collaboration empirically. We introduce both development history graph-based metrics (macro-process) and parametric model and geometry change metric (micro-process) as frameworks to explore and understand the captured progression data. These metrics, applied to data collected from three cohorts of classroom collaborative design exercises, exhibited students' distinct modification patterns such as major and complex creation processes or minor parameter explorations. Finally, with the metrics' applicability as an objective language to describe the (collaborative) design process, we recommend using versioning for more data-driven insight into parametric design exploration processes.
keywords Design exploration; parametric design; history recording; version control; collaborative design
series CAADRIA
email
last changed 2022/06/07 07:56

For more results click below:

this is page 0show page 1show page 2show page 3show page 4show page 5... show page 31HOMELOGIN (you are user _anon_264712 from group guest) CUMINCAD Papers Powered by SciX Open Publishing Services 1.002