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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33%; open Yessios, C.I. (1987) Find in CUMINCAD The Computability of Void Architectural Modeling , ed. Y.E. Kalay, John Wiley & Sons, New York

33%; open Yessios, C.I. (1987) Find in CUMINCAD The Computability of Void Architectural Modeling , Computability of Design, edited Y. E. Kalay, John Wiley Sons, 1987, pp. 141 - 172

33%; open Yessios, C.I. (1987) Find in CUMINCAD The Computability of Void Architectural Modelling , Computability of Design - Principles of Computer-Aided Design, Y.E. Kalay, ed., Wiley-Interscience, New York, 141-172

33%; open Yeung, J., J Hahn Menacho, A., Marvuglia, A., Navarrete Gutiérrez, T., Beach, T., & Rezgui, Y. (2023) Find in CUMINCAD An open building information modelling based co-simulation architecture to model building energy and environmental life cycle assessment: A case study on two buildings in the United Kingdom and Luxembourg , Renewable and Sustainable Energy Reviews, 183, 113419. https://doi.org/10.1016/J.RSER.2023.113419

33%; open Yew, A. W. W., Ong, S. K., & Nee, A. Y. C. (2017) Find in CUMINCAD Immersive Augmented Reality Environment for the Teleoperation of Maintenance Robots , Procedia CIRP, 61, 305–310

33%; open Yi H, Kim M-J, Kim Y, et al (2019) Find in CUMINCAD Rapid simulation of optimally responsive façade during schematic design phases: use of a new hybrid metaheuristic algorithm , Sustainability 2019; 11: 2681.

33%; open Yi YK, Yin J and Tang Y. (2018) Find in CUMINCAD Developing an advanced daylight model for building energy tool to simulate dynamic shading device , Sol Energy; 163: 140–149

33%; open Yi, J., Kang, Y., Stasko, J. & Jacko, J. (2007) Find in CUMINCAD Toward a Deeper Understanding of the Role of Interaction in Information Visualization , IEEE Transactions on Visualization and Computer Graphics, 13 (6), 1224-1231

33%; open Yi, Y (2009) Find in CUMINCAD Optimizing building form for energy performance based on hierarchical geometry relation , Automation in Construction, 18, pp. 825-833

33%; open Yi, Y. K. and Hyoungsub, K. (2015) Find in CUMINCAD Agent-based geometry optimization with Genetic Algorithm (GA) for tall apartment's solar right, , Solar Energy, 113, pp. 236-250

33%; open Yi, Y. K. and Malkawi, A. M (2012) Find in CUMINCAD Site-specific optimal energy form generation based on hierarchical geometry relation , Automation in Construction, 26, p. 77-91

33%; open Yi, Y. K. and Malkawi, A. M. (2009) Find in CUMINCAD Optimizing building form for energy performance based on hierarchical geometry relation , Automation in Construction, 18(6), 825–833

33%; open Yi, Y. K. and Malkawi, A. M. (2009) Find in CUMINCAD Optimizing building form for energy performance based on hierarchical geometry relation , Automation in Construction, 18(6), 825-833

33%; open Yi, Y. K. and Malkawi, A. M. (2009) Find in CUMINCAD Optimizing building form for energy performance based on hierarchical geometry relation , Automation in Construction, 18(6), 825-833

33%; open Yi, Y. K., & Malkawi, A. M. (2012) Find in CUMINCAD Site-specific optimal energy form generation based on hierarchical geometry relation , Automation in Construction, 26, 77-91

33%; open Yi, Y. K., and A. M. Malkawi (2009) Find in CUMINCAD Optimizing Building Form for Energy Performance Based on Hierarchical Geometry Relation , Automation in Construction 18 (6): 825–33. doi:10.1016/j.autcon.2009.03.006

33%; open Yi, Y. K., and A. M. Malkawi (2009) Find in CUMINCAD Optimizing Building Form for Energy Performance Based on Hierarchical Geometry Relation , Automation in Construction 18 (6): 825–33

33%; open Yi, Y. K., and A. M. Malkawi (2009) Find in CUMINCAD Optimizing building form for energy performance based on hierarchical geometry relation , Automation in Construction, vol. 18 (6):825-833

33%; open Yi, Y. K. (2019) Find in CUMINCAD Building facade multi-objective optimization for daylight and aesthetical perception , Building and Environment, 156, 178-190

33%; open Yi, YK, Zhang, Y and Myung, J (2020) Find in CUMINCAD House style recognition using deep convolutional neural network , AUTOMATION IN CONSTRUCTION, 118, p. 103307

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