dc.creator | Moreno De Luca, Leonardo | |
dc.creator | Galvis Chacón, María Jimena | |
dc.creator | García, René José | |
dc.date.accessioned | 2022-09-28T15:12:48Z | |
dc.date.available | 2022-09-28T15:12:48Z | |
dc.identifier.uri | http://repositorioslatinoamericanos.uchile.cl/handle/2250/3670928 | |
dc.language | spa | |
dc.publisher | Universidad Santo Tomás - Seccional Bucaramanga | |
dc.relation | http://revistas.ustabuca.edu.co/index.php/REVISTAM/article/view/973/774 | |
dc.relation | /*ref*/ALBARDANÉ, Francesc (1965), Frei Otto: Spannweiten. Berlin, Verlag Ullstein GmbH. | |
dc.relation | /*ref*/BENYUS, Janine (1997), Biomimicry: Innovation Inspired by Nature. New York, Harper Perennial. | |
dc.relation | /*ref*/BYRNE, J.; Fenton, M.; Hemberg, E.; McDermott, J.; O’Neil, M.; Shotton, E. y Nally, C. (2011) “Combining structural analysis and multi-objective criteria for evolutionary architectural design”, En: Applications of Evolutionary Computation, pp.204-213. | |
dc.relation | /*ref*/CHANDRUPATLA, Tirupathi y BELEGUNDU, Ashok (2002), Introduction to Finite Elements in Engineering. New Jersey, Prentice-Hall. | |
dc.relation | /*ref*/COELLO, C.A. y Christiansen, A.D. (2000) “Multiobjective optimization of trusses using genetic algorithms”, En: Computers and Structures, No.75, pp. 647-660. | |
dc.relation | /*ref*/COELLO, Carlos; LAMONT, Gary y VAN VELDHUIZEN, David (2007), Evolutionary Algorithms for Solving Multi-Objective Problems. New York, Springer Science+Business Media. | |
dc.relation | /*ref*/CRESPO CABILLO, I. (2005), Control gráfico de formas y superficies de transición [tesis doctoral], Barcelona, Universitat Politécnica de Catalunya. | |
dc.relation | /*ref*/FIALHO, A.; Hamadi, Y. y Schoenauer, M. (2011) “Optimizing Architectural and Structural Aspects of Buildings towards Higher Energy Efficiency”, En: Proceedings of the 13th Annual Conference Companion on Genetic and Evolutionary Computation GECCO’11, New York, ACM, pp.727-732. | |
dc.relation | /*ref*/FOGEL, Lawrence Jerome; OWENS, Alvin J. y WALSH, Michael John (1966), Artificial Intelligence through simulated evolution. Chichester, UK, John Wiley. | |
dc.relation | /*ref*/GAGNE, J.M.L. y Andersen, M. (2010) “Multi-objective facade optimization for daylighting design using a Genetic Algorithm”, En: Proceedings of SimBuild 2010 - 4th National Conference of IBPSA-USA. | |
dc.relation | /*ref*/GASPAR-CUNHA, A.; Loyens, D. y Van Hattum, F. (2011) “Aesthetic Design Using Multi-Objective Evolutionary Algorithms”, En: EMO’11 Proceedings of the 6th International Conference on Evolutionary Multi-Criterion Optimization, Heidelberg, Springer-Verlag, pp.374-388. | |
dc.relation | /*ref*/HOLLAND, John H. (1975), Adaptation in natural and artificial systems. Ann Arbor, MI, University of Michigan Press. | |
dc.relation | /*ref*/KICINGER, R.; Arciszewski, T. y De Jong, K. (2005) “Evolutionary computation and structural design: A survey of the state-of-the-art”, En: Computers and Structures, No.83, pp.1943-1978. | |
dc.relation | /*ref*/LI, G.; Zhou, R.G.; Duan, L. y Chen, W.F. (1999) “Multiobjective and multilevel optimization for steel frames”, En: Engineering Structures, No.21, pp.519-529. | |
dc.relation | /*ref*/MARTÍN, Esteban y CARRANZA, Andreu (2007), La Clave Gaudí. Bogotá, Random House Mondadori. | |
dc.relation | /*ref*/MATHEWS, F. (2011) “Towards a Deeper Philosophy of Biomimicry”, En: Organization and Environment, No.24, pp.364-387. | |
dc.relation | /*ref*/MATTHECK, Claus (1998), Design in Nature. Berlin, Springer-Verlag. | |
dc.relation | /*ref*/McDONOUGH, William y BRAUNGART, Michael (2002), Cradle to Cradle: remaking the way we make things. New York, North Point Press. | |
dc.relation | /*ref*/NEUROHR, R. y Dragomirescu, C. (2007) “Bionics in engineering – defining new goals in engineering education at politehnica University of Bucharest”, En: International Conference on Engineering Education – ICEE 2007. Coimbra, Portugal. | |
dc.relation | /*ref*/NOILUBLAO, N. y Bureerat, S. (2011) “Simultaneous topology, shape and sizing optimization of a three-dimensional slender truss tower using multiobjective evolutionary algorithms”, En: Computers and Structures, No.89, pp.2531-2538. | |
dc.relation | /*ref*/PUGNALE, A. y Sassone, M. (2007) “Morphogenesis and structural optimization of Shell structures with the aid of a Genetic Algorithm”, En: Journal of the International Association for Shell and Spatial Structures, No.48, pp.161-166. | |
dc.relation | /*ref*/RECHENBERG, I. (1965), Cybernetic solution path of an experimental problem [Library Translation 1122], Farnborough, UK, Royal Aircraft Establishment. | |
dc.relation | /*ref*/SASSONE, M. y Pugnale, A. (2008) “Optimal design of glass grid shells with quadrilateral elements by means of a genetic algorithm”, En: Proceedings of the 6th International Conference on Computation of Shell and Spatial Structures IASS-IACM 2008: Spanning Nano to Mega. | |
dc.relation | /*ref*/SASSONE, M.; Méndez, T. y Pugnale, A. (2008) “On the interaction between architecture and engineering: the acoustic optimization of a reinforced concrete shell”, En: Proceedings of the 6th International Conference on Computation of Shell and Spatial Structures IASSIACM 2008: Spanning Nano to Mega. | |
dc.relation | /*ref*/SCHWEFEL, H.P. (1965), Kybernetische Evolution als Strategie der experimentelen Forschung in der Stromungstechnik [Tesis de Maestría], Berlín, Hermann Fottinger Institute for Hydrodynamics, Technical University of Berlin. | |
dc.relation | /*ref*/SIVANANDAM, S.N. y DEEPA, S.N. (2012), Introduction to Genetic Algorithms. Berlin, Springer-Verlag. | |
dc.relation | /*ref*/STEVENS, Peter (1987), Patrones y pautas en la naturaleza. Barcelona, Salvat Editores. | |
dc.relation | /*ref*/TÁRRECH, Armand Puig (2011), La Sagrada Familia según Gaudí. Barcelona, El Aleph Editores. | |
dc.relation | /*ref*/TURNER, J. y Soar, R. (2008) “Beyond Biomimicry: What termites can tell us about realizing the living building”, En: First International Conference on Industrialized, Intelligent Construction – I3CON. Leicestershire, UK. | |
dc.relation | /*ref*/TYREE, M. (2003) “The ascent of water”, En: Nature, No.423, p.923. | |
dc.relation | /*ref*/TYREE, Melvin y ZIMMERMANN, Martin (2002), Xylem Structure and the Ascent of Sap. Berlin, Springer. | |
dc.relation | /*ref*/VINCENT, J. (2006) “Applications: Influence of Biology on Engineering”, En: Journal of Bionic Engineering, No.3, pp.161-177. | |
dc.relation | /*ref*/VOGEL, Steven (2000), Cat’s Paws and Catapults: mechanical worlds of nature and people. New York, W.W. Norton & Company. | |
dc.relation | /*ref*/WANG, S.; Lim, K.; Khoo, B. y Wang, M. (2007) “An extended level set method for shape and topology optimization”, En: Journal of Computational Physics, No.221, pp.395-421. | |
dc.relation | /*ref*/WANG, W.; Rivard, H. y Zmeureanu, R. (2006) “Floor shape optimization for green building design”, En: Advanced Engineering Informatics, No.20, pp.363-378. | |
dc.relation | /*ref*/WINSLOW, P.; Pellegrino, S. y Sharma, S.B. (2010) “Multi-objective optimization of free-form grid structures”, En: Struct Multidisc Optim, No.40, pp.257-269. | |
dc.relation | /*ref*/YIATROS, S.; Wadee, M. y Hunt, G. (2007) “The load-bearing duct: biomimicry in structural design”, En: Engineering Sustainability, No.160, pp.179-188. | |
dc.rights | Copyright (c) 2018 Revista M | |
dc.source | M; Vol. 9, Núm. 1 (2012): El proyecto como investigación, la investigación como proyecto 1; 78-101 | |
dc.source | Revista M; Vol. 9, Núm. 1 (2012): El proyecto como investigación, la investigación como proyecto 1; 78-101 | |
dc.source | 1692-5114 | |
dc.title | BIOMÍMESIS EN ARQUITECTURA E INGENIERÍA ESTRUCTURAL | |
dc.type | info:eu-repo/semantics/article | |
dc.type | info:eu-repo/semantics/publishedVersion | |
dc.type | Artículo revisado por pares | |