CINXE.COM

{"title":"Parametric Optimization of Hospital Design","authors":"M. K. Holst, P. H. Kirkegaard, L. D. Christoffersen","volume":76,"journal":"International Journal of Architectural and Environmental Engineering","pagesStart":281,"pagesEnd":290,"ISSN":"1307-6892","URL":"https:\/\/publications.waset.org\/pdf\/2330","abstract":"Present paper presents a parametric performancebased\ndesign model for optimizing hospital design. The design model\noperates with geometric input parameters defining the functional\nrequirements of the hospital and input parameters in terms of\nperformance objectives defining the design requirements and\npreferences of the hospital with respect to performances. The design\nmodel takes point of departure in the hospital functionalities as a set\nof defined parameters and rules describing the design requirements\nand preferences.","references":"[1] K. Terzidis, AlgorithmicArchitecture, Burlington, MA: Architectural\nPress, 2006, .\n[2] B. Kolarevic Ed., Architecture in the Digital Age - Design and\nManufacturing, New York: Spon Press, 2003, pp. 314.\n[3] R. Oxman, \"Performance-based Design: Current Practices and Research\nIssues,\" International Journal of Architectural Computing, vol. 6, pp. 1-\n17, 2008.\n[4] M. Hensel, \"Towards self-organisational and multiple-performance\ncapacity in architecture \" Architectural Design, vol. 76, pp. 5-17, 2006.\n[5] B. Kolarevic and A.M. Malkawi Eds., Performative Architecture -\nBeyond Instumentality, New York: Spoon Press, 2005, .\n[6] A. Rahim, \"Performativity: Beyond efficiency and optimization in\narchitecture,\" in Performative Architecture - Beyond Instrumentality, B.\nKolarevic, New York: Spoon Press, 2005, pp. 177-192.\n[7] A. Menges, \"Instrumental geometry,\" Architectural Design, vol. 76, pp.\n42-53, 2006.\n[8] M.K. Holst, M. Mullins and P.H. Kirkegaard, \"Performative Tectonics,\"\npp. 1004-1011, 2010.\n[9] R.S. Liggett, \"Automated facilities layout: past, present and future,\"\nAutom.Constr., vol. 9, pp. 197-215, 2000.\n[10] P.H. Levin, \"Use of graphs to decide the optimum layout of buildings,\"\nArchitect, vol. 14, pp. 809-815, 1964.\n[11] R. Sharpe, B.S. Marksjo, J.R. Mitchell and J.R. Crawford, \"An\ninteractive model for the layout of buildings,\" Applied Mathematical\nModeling, vol. 9, pp. 207-214, 1985.\n[12] C.A. Baykan and M.S. Fox, \"Spatial synthesis by disjunctive constraint\nsatisfaction,\" Artificial Intelligence in Engineering Design, vol. 11, pp.\n245-262, 1997.\n[13] A. Schwarz, D.M. Berry and E. Shaviv, \"Representing and solving the\nautomated building design problem,\" Comput.-Aided Des., vol. 26, pp.\n689-698, 1994.\n[14] B. Medjdoub and B. Yannou, \"Separating topology and geometry in\nspace planning,\" Comput.-Aided Des., vol. 32, pp. 39-61, 1999.\n[15] J.J. Michalek, R. Choudary and P.Y. Papalambros, \"Architectural layout\ndesign optimization,\" Engineering Optimization, vol. 34, pp. 461-484,\n2002.\n[16] D.J. Carter and B. Whitehead, \"Data for generative layout planning\nprograms,\" Build.Sci., vol. 10, pp. 95-102, 1975.\n[17] P.M. Hahn and J. Krarup, \"A hospital facility layout problem finally\nsolved,\" Journal of Intellingent Manufacturing, vol. 12, pp. 487-496,\n2001.\n[18] K. Kaku, G.L. Thompson and I. Baybars, \"A heuristic method for the\nmulti-story layout problem,\" Eur.J.Oper.Res., vol. 37, pp. 384-397,\n1988.\n[19] P.C. Portlock and B. Whitehead, \"Three dimensional layout planning,\"\nBuilding Science, pp. 45-53, 1974.\n[20] S. Yin and J. Cagan, \"An extended pattern search algorithm for threedimensional\ncomponent layout,\" Transactions of the ASME, vol. 122,\npp. 102-108, 2000.\n[21] J. Cagan, D. Degentesh and S. Yin, \"A simulated annealing-based\nalgorithm using hierarchical models for general three-dimensional\ncomponent layout,\" Comput.-Aided Des., vol. 30, pp. 781-790, 1998.\n[22] S. Szykman and J. Cagan, \"Constrained three-dimensional component\nlayout using simulated annealing,\" ASME Transactions, vol. 119, pp.\n28-35, 1997.\n[23] J.J. Kim and D.C. Gossard, \"Reasoning on the location of components\nfor assembly packaging,\" Journal of Mechanical Design, vol. 113, pp.\n402-407, 1991.\n[24] T. Ito, \"A genetic algorithm approach to piping route path planning,\"\nJ.Intell.Manuf., vol. 10, pp. 103-114, 1999.\n[25] M.A. Stamatopoulos, K.G. Zografos and A.R. Odoni, \"A decision\nsupport system for airport strategic planning,\" Transportation Research\nPart C, vol. 12, pp. 91-117, 2004.\n[26] T.Y. Wang, K.B. Wu and Y.W. Liu, \"A simulated annealing algorithm\nfor facility layout problems under variable demand in cellular\nmanufacturing systems,\" Comput.Ind., vol. 46, pp. 181-188, 2001.\n[27] A.R.S. Amaral, \"A new lower bound for the single row facility layout\nproblem,\" Discrete Applied Mathematics, vol. 157, pp. 183-190, 2009.\n[28] M.D.M. Hassan , \"Toward re-engineering models and algorithms of\nfacility layout,\" Omega, vol. 28, pp. 711-723, 2000.\n[29] R. Dhamodharan, S.V. Nagalingam and G.C.I. Lin, \"Towards measuring\nthe effectiveness of a facilities layout,\" Robot.Comput.Integrated\nManuf., vol. 25, pp. 191-203, 2009.\n[30] K.-. Lee, M.-. Roh and H.-. Jeong, \"An improved genetic algorithm for\nmulti-floor facility layout problems having inner structure walls and\npassages,\" Comput.Oper.Res., vol. 32, pp. 879-899, 2005.\n[31] L.Y. Liang and W.C. Chao, \"The strategies of tabu search technique for\nfacility layout optimization,\" Autom.Constr., vol. 17, pp. 657-669, 2008.\n[32] N. Leach, \"Digital morphogenesis,\" Architectural Design, vol. 79, pp.\n33-37, 2009.\n[33] C. Ottchen, \"The future of information modelling and the end of theory:\nLess is limited, more is different,\" Architectural Design, vol. 79, pp. 22-\n27, 2009.\n[34] N. Leach, D. Turnbull and C. Williams Eds., Digital tectonics, West\nSussex: Wiley Academy, 2004, .","publisher":"World Academy of Science, Engineering and Technology","index":"Open Science Index 76, 2013"}