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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67%; open Knight, Terry (2000) Find in CUMINCAD Shape Grammars in Education and Practice: History and Prospects , International Journal of Design Computing, 2, p. -

67%; open Knight, Terry (2002) Find in CUMINCAD Computing with emergence , Environmental and Planning B: Planning and design 30: 125-155

67%; open Knight, Terry (2003) Find in CUMINCAD Computing with ambiguity , Environment and Planning B: Planning and Design 30: 165-180

67%; open KNIGHT, Terry (2004) Find in CUMINCAD Transformation in Design: A Formal Approach to Stylistic Change and Innovation in the Visual Arts , Cambridge: Cambridge University Press, 2004

67%; open Knight, Terry (2015) Find in CUMINCAD Shapes and Other Things , Nexus Network Journal 17 (3): 963–980

67%; open Knight, Terry (2015) Find in CUMINCAD Shapes and Other Things , Nexus Network Journal 17 (3): 963–980

67%; open Knight, Terry (2017) Find in CUMINCAD Craft, Performance, and Grammars , Proceedings of the 2nd International Workshop on Cultural DNA, Daejoen, South Korea, 13 January 2017.

67%; open Knight, Terry. (2003) Find in CUMINCAD Computing with Emergence , Environment and Planning B: Planning and Design, volume 30, p. 125-155

67%; open Weissman, Knight and Terry (1986) Find in CUMINCAD Transformations of Languages of Designs , Ph.D. dissertation, Graduate School of Architecture and Urban Planning, University of California, Los Angeles

33%; open A Bidgoli. and P. Veloso (2018) Find in CUMINCAD DeepCloud: The Application of a Data-Driven, Generative Model in Design , ACADIA 18: Recalibration, Proceedings of the 38th Annual Conference of the Association for Computer Aided Design in Architecture. 176–85

33%; open A. Gandia, S. Parascho, R. Rust, G. Casas, F. Gramazio, and M. Kohler (2019) Find in CUMINCAD Towards Automatic Path Planning for Robotically Assembled Spatial Structures , ROBARCH 2018; Robotic Fabricationin Architecture, Art and Design 2018, Cham: Springer

33%; open A. Groenewolt, T. Schwinn, L. Nguyen, and A. Menges (2018) Find in CUMINCAD An Interactive Agent-Based Framework for Materialization-Informed Architectural Design , Swarm Intelligence 12 (2): 155–86

33%; open A. M. Salet, T (2018) Find in CUMINCAD Design of a 3D printed concrete bridge by testing , Virtual and Physical Prototyping, 13, pp. 222-236

33%; open A. M. Salet, Theo, Y. Ahmeda, Zeeshan, P. Bos, Freek and L. M. Laaglandb, Hans (2018) Find in CUMINCAD Design of a 3D printed concrete bridge by testing , Virtual and Physical Prototyping, 13(3), pp. 222-236

33%; open A. Nagabandi, I. Clavera, S. Liu, R.S. Fearing, P. Abbeel, S. Levine, and C. Finn (2018) Find in CUMINCAD Learning to Adapt in Dynamic, Real-World Environments Through Meta-Reinforcement Learning , ICLR 2019 Conference Paper, arXiv:1803.11347

33%; open A. Paul., D.P. Mukherjee., P. Das., A. Gangopadhyay., A.R. Chintha., & S. Kundu. (2018) Find in CUMINCAD Improved Random Forest for Classification , IEEE Transactions on Image Processing, 27 (8). Available at: https://doi.org/1.119/TIP.218.283483.

33%; open A. Thoma, A. Adel, M. Helmreich, T. Wehrle, F. Gramazio, and M. Kohler (2019) Find in CUMINCAD Robotic Fabrication of Bespoke Timber Frame Modules , Robotic Fabrication in Architecture, Art and Design (ROBARCH) 2018. Cham: Springer. 447–458

33%; open A.B. Hernández, R.D. Brumbaugh, P. Frederick, et al (2018) Find in CUMINCAD Restoring the eastern oyster: how much progress has been made in 53 years? , Frontiers in Ecology and the Environment 16 (8): 463–471

33%; open ABAB, . (2018) Find in CUMINCAD BIM Process Consistency: Towards a Common Framework for Digital Design, Construction and Operation , Australasian BIM Advisory Board

33%; open Abbasabadi, N. and Ashayeri, M. (2019) Find in CUMINCAD Urban energy use modelling methods and tools: A review and an outlook , Building and Environment, 161, 106270. https://doi.org/10.1016/j.buildenv.2019.106270Alhamwi, A., Medjroubi, W., Vogt, T. and Agert, C. (2017). GIS-based urban energy systems models and tools: Introducing a model for the optimisation of flexibilisation technologies in urban areas. Applied Energy, 191, 1-9. https://doi.org/10.1016/j.apenergy.2017.01.048Chen, Y. and Hong, T. (2018). Impacts of building geometry modelling methods on the simulation results of urban building energy models. Applied Energy, 215, 717-735. https://doi.org/10.1016/j.apenergy.2018.02.073Chen, Y., Hong, T., Luo, X. and Hooper, B. (2019). Development of city buildings dataset for urban building energy modelling. Energy and Buildings, 183, 252-265. https://doi.org/10.1016/j.enbuild.2018.11.008Davila, C.C., Reinhart, C.F., and Bemis, J.L. (2016). Modelling Boston: A workflow for the efficient generation and maintenance of urban building energy models from existing geospatial datasets. Energy, 117, 237-250. https://doi.org/10.1016/j.energy.2016.10.057Dogan, T. and Reinhart, C. (2017). Shoeboxer: An algorithm for abstracted rapid multi-zone urban building energy model generation and simulation. Energy and Buildings, 140, 140-153. https://doi.org/10.1016/j.enbuild.2017.01.030EC. (2021). 2030 Climate Target Plan. European Commission. Retrieved June 1, 2021, from https://ec.europa.eu/clima/eu-action/european-green-deal/2030-climate-target-plan_en

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