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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17%; open Rosman, R. (1996) Find in CUMINCAD Contribution to the conceptual design of building floor grids , Conceptual design of structures: Proceedings of the international symposium, University of Stuttgart, October 7-11, 1996, Stuttgart/Germany. vol. II, Case studies, 919–926. Stuttgart, Germany: Institut für Konstruktion und Entwurf II, Universität Stuttgart

17%; open Rossi, A and Tessmann, O (2017) Find in CUMINCAD Aggregated Structures : Approximating Topology Optimized Material Distribution with Discrete Building Blocks , Proceedings of IASS 2017

17%; open Rossi, Andrea and Oliver Tessmann (2017) Find in CUMINCAD Aggregated Structures: Approximating Topology Optimized Material Distribution with Discrete Building Blocks , Interfaces: Architecture, Engineering, Science, Proceedings of the Symposium of the International Association for Shell and Spatial Structures 2017. Hamburg: IASS

17%; open Rossi, Andrea and Oliver Tessmann (2017) Find in CUMINCAD Aggregated Structures: Approximating Topology Optimized Material Distribution with Discrete Building Blocks , Interfaces: Architecture, Engineering, Science, Proceedings of the Symposium of the International Association for Shell and Spatial Structures 2017. Hamburg: IASS

17%; open Rossignac , J.R. and O'Connor, M.A. (1990) Find in CUMINCAD SGC: A Dimension-independent model for pointsets with internal structures and incomplete boundaries , Geometric Modeling for Poduct Engineering I Proceedings of the 1988 IFIP/NSF Workshop on Geometric Modelling Rensselaerville, NY, September 18-22, 1988. M. J. Wozny, JZ. Turner and K. Preiss (El.), North-Holland, pp . 14~- 180

17%; open Rossignac, J.R. and O´Connor, M.A. (1990) Find in CUMINCAD SGC: A Dimension-independent model for poinsets with internal structures and incomplete boundaries , M. J. Wozny, J.U. Turner and K. Preiss (eds.). Geometric Modeling for. Product Engineering. Proc. of the 1988 IFIP/NSF, Workshop on Geometric Modelling, pp. 145-180. Rensselaerville, NY. North-Holland

17%; open Rozvany, G.I.N., M.P. Bends?e, and U. Kirsch (1995) Find in CUMINCAD Layout Optimization of Structures , Applied Mechanics Reviews 48(2): 41-119

17%; open Rusenova, G. et al. (2018) Find in CUMINCAD Load-Bearing Capacity and Deformation of Jammed Architectural Structures , 3D Printing and Additive Manufacturing, 5(4), pp. 257-267. doi: 10.1089/3dp.2018.0039

17%; open S. Adriaenssens, P. Block, D. Veenendaal, and C. Williams, eds (2014) Find in CUMINCAD Shell Structures for Architecture: Form Finding and Optimization , London: Routledge

17%; open S. Ahlquist, and A. Menges (2013) Find in CUMINCAD Frameworks for Computational Design of Textile Micro-Architectures and Material Behavior in Forming Complex Force-Active Structures , ACADIA 2013 Adaptive Architecture;Proceedings of the 33rd Annual Conference of the Association forComputer Aided Design in Architecture. 281–292

17%; open S. Bhooshan, V. Bhooshan, A. Dell’Endice, J. Chu, P. Singer, J. Megens, T. Van Mele, and P. Block (2022) Find in CUMINCAD The Striatus bridge , Architecture,Structures and Construction 2: 521–543.

17%; open S. Hofmann, I. (1999) Find in CUMINCAD The Concept of Pellevation for Shaping of Structural Forms , University of Surrey, Department of Civil Engineering, Guilford: Space Structures Research Centre

17%; open S. Naghashian, B. L. Fox, and M. R. Barnett (2014) Find in CUMINCAD Actuation curvature limits for a composite beam with embedded shape memory alloy wires , Smart Materials and Structures 23 (6): 065002

17%; open S. Steffen, S. Weidner, L. Blandini, and W. Sobek (2020) Find in CUMINCAD Using Influence Matrices as a Design and Analysis Tool for Adaptive Truss and Beam Structures , Frontiers in Built Environment 6

17%; open S. Suzuki, A. Körner, and J. Knippers (2018) Find in CUMINCAD IGUANA: Advances on the development of a robust computational framework for active-geometric and-topologic modeling of lightweight structures , Proceedings of IASS Annual Symposia, IASS 2018 Boston Symposium: Approaches for Conceptual Structural Design, 1–10

17%; open S?ndergaard, A, Amir, O and Knauss, M (2013) Find in CUMINCAD Topology optimization and digital assembly of advanced space-frame structures , Proceedings of the 33rd Annual Conference of the Association for Computer Aided Design in Architecture (ACADIA), Cambridge

17%; open S?ndergaard, A, Amir, O and Knauss, M (2013) Find in CUMINCAD Topology Optimization And Digital Assembly Of Advanced Space-Frame Structures , Acadia 2013: Adaptive Architecture - Proceedings of the 33rd Annual Conference of the Association for Computer Aided Design in Architecture (ACADIA), Cambridge, pp. 367-378

17%; open S?ndergaard, A, Amir, O and Knauss, M (2013) Find in CUMINCAD Topology optimization and digital assembly of advanced space-frame structures , ACADIA 14: Design Agency Proceedings of the 34th Annual Conference of the Association for Computer Aided Design in Architecture (ACADIA), Cambridge, pp. 367-378

17%; open S?ndergaard, A, Amir, O, Eversmann, P, Piskorec, L, Stan, F, Gramazio, F and Kohler, M (2016) Find in CUMINCAD Topology Optimization and Robotic Fabrication of Advanced Timber Space-Frame Structures. , Reinhardt, D, Saunders, R and Burry, J (eds), Robotic Fabrication in Architecture, Art and Design, Springer International Publishing, pp. 190-203

17%; open S?ndergaard, A, Amir, O, Eversmann, P, Piskorec, L, Stan, F, Gramazio, F and Kohler, M (2016) Find in CUMINCAD Topology optimization and robotic fabrication of advanced timber space-frame structures , Reinhardt, D, Saunders, R and Burry, J (eds), Robotic fabrication in Architecture, Art and Design, Springer, p. 191-203

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