تبیین و سطح بندی ابعاد مدل معماری پارامتریک بر مبنای زمینه گرایی فرهنگی - فرهنگ معماری و شهرسازی اسلامی
دوره 8، شماره 2 - ( دوفصلنامه 1402 )                   جلد 8 شماره 2 صفحات 196-169 | برگشت به فهرست نسخه ها


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Shahed M, Sattari Sarbangholi H, Tahmasebi A. Explanation and Leveling of Parametric Architectural Model Dimensions Based on Cultural Contextualism. CIAUJ 2023; 8 (2) :169-196
URL: http://ciauj-tabriziau.ir/article-1-488-fa.html
شاهد مهلقا، ستاری ساربانقلی حسن، طهماسبی ارسلان. تبیین و سطح بندی ابعاد مدل معماری پارامتریک بر مبنای زمینه گرایی فرهنگی. فرهنگ معماری و شهرسازی اسلامی. 1402; 8 (2) :169-196

URL: http://ciauj-tabriziau.ir/article-1-488-fa.html


1- گروه معماری، واحد سنندج، دانشگاه آزاد اسلامی، سنندج، ایران
2- گروه معماری و شهرسازی، واحد تبریز، دانشگاه آزاد اسلامی، تبریز، ایران ، hassansattari.sa@gmail.com
چکیده:   (1450 مشاهده)
معماری پارامتریک به عنوان یکی از رویکردهای مهم طراحی در دوران معاصر امکان ایده پردازی و خلق فرم های متنوعی را بوجود آورده است؛ اما با وجود پتانسیل های آن، در برخی موارد شکل گیری طرح های ناهماهنگ با مؤلفه های فرهنگی زمینه طراحی مشاهده می شود که منجر به کم رنگ شدن اهمیت زمینه های فرهنگی در تعریف فرم های پاسخگو به نیازهای انسانی شده است. از این رو بازخوانی ارتباط معماری پارامتریک با زمینه گرایی فرهنگی دارای ضرورت است. این تحقیق با هدف شناسایی و سطح بندی ابعاد مدل معماری پارامتریک بر مبنای زمینه گرایی فرهنگی انجام گرفته است. روش تحقیق در گام اول به صورت مطالعات کتابخانه ای جهت شناسایی معیارها، مؤلفه ها و ابعاد مدل بوده و در وهله دوم با هدف سطح بندی ابعاد از رویکرد مدل سازی ساختاری تفسیری و تحلیل MICMAC بهره گرفته شد. بر اساس مرور ادبیات مرتبط، مدلی متشکل از 44 معیار، 20 مؤلفه و 9 بعد تبیین شد. هم چنین یافته های رویکرد مدل سازی ساختاری تفسیری بیانگر آن است که فرایند علی ارتباط متغیرها در سه سطح قابل تمییز بوده که در سطح زیرین و مبنایی ابعاد مدل موردنظر، بعد «طراحی قاعده مند در ارتباط با زمینه فرهنگی» مشاهده می شود؛ بنابراین اصل اولیه در دستیابی به معماری پارامتریک مبتنی بر زمینه فرهنگی ایجاد ساختارهای قاعده مند و ترکیب عناصر فنی و فرهنگی بوده که نیازمند دستیابی به زبان مشترک در حوزه هایی چون معماری، فرهنگ و ریاضیات جهت تبیین الگوهای نظام مند و قابل اجرا در معماری معاصر است
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نوع مطالعه: پژوهشي | موضوع مقاله: فرهنگ و سبك زندگي
دریافت: 1402/4/4 | پذیرش: 1402/8/24 | انتشار الکترونیک: 1402/10/8

فهرست منابع
1. Al-Hammadi, N. A., & Grchev, K. (2023). Aspects of contextual architecture regarding traditional/contemporary architecture, physical/cultural and place identity: a systematic literature review. Open House International, 48(1), 119-140. [DOI:10.1108/OHI-01-2022-0007]
2. Alexander, C. (1977). A pattern language: towns, buildings, construction. Oxford university press.
3. Alexander, C. (2014). The Timeless Way of Building. (Mehrdad Qayyumi Bidhandi, Trans). Tehran: Shahid Beheshti University. [In Persian]
4. Arab Anvari, E., & Fayaz, R. (2019). Parametric Building Performance Simulation in the Early Architectural Design Stage: Mid-Rise Apartment in Hot and Dry Climate. Journal of Architecture and Urban Planning, 11(23), 5-28. [In Persian]
5. Ashoori, D. (2009). Definitions and concept of culture. Tehran: Aghah Press. [In Persian]
6. Azizi, Sh., Delpazir, A., & Moghaddam, P. (2012). Cultural Anthropology, a Mean for Analyzing Forming Factors of Architecture. Hoviatshahr, 6(12), 61-70. [In Persian]
7. Barati, N. (2004). Holistic and Atomic World Views and their Effects on the Architecture and Urbanism. Bagh-e Nazar, 1(1), 7-24. [In Persian]
8. Bahrieh, P., Toofan, S., & Akbari Namdar, S. (2021). Investigation and Determination of the Evolution Process of Architecture in the Structure of the Tabriz bazaar with emphasis on contextualism. Journal of Studies on Iranian - Islamic City, 10(39), 5-18. [In Persian]
9. Barrios, C. (2005). Transformations on parametric design models: A case study on the Sagrada Familia columns. In Computer Aided Architectural Design Futures 2005, 393-400. [DOI:10.1007/1-4020-3698-1_37]
10. Boehm, D. (2002). About creativity. (Mohammad Ali Hossein Nejad, Trans). Tehran: Saghi Press. [In Persian]
11. Brolin, B. C. (1980). Architecture in context: Fitting new buildings with old. Van Nostrand Reinhold.
12. Caetano, I., Santos, L., & Leitão, A. (2020). Computational design in architecture: Defining parametric, generative, and algorithmic design. Frontiers of Architectural Research, 9(2), 287-300. [DOI:10.1016/j.foar.2019.12.008]
13. Capra, F. (1996). The Tao of physics. (Habiballah Dadfarma, Trans). Tehran: Keyhan. [In Persian]
14. Cavalli-Sforza, V., & Ortolano, L. (1984). Delphi forecasts of land use: Transportation interactions. Journal of transportation engineering, 110(3), 324-339. [DOI:10.1061/(ASCE)0733-947X(1984)110:3(324)]
15. Chang, P. L., Hsu, C. W., & Chang, P. C. (2011). Fuzzy Delphi method for evaluating hydrogen production technologies. International journal of hydrogen energy, 36(21), 14172-14179. [DOI:10.1016/j.ijhydene.2011.05.045]
16. Chien, S. F., & Yeh, Y. T. (2012). On Creativity and Parametric Design. In: Proceedings of the 30th International eCAADe Conference, 1, 245-254. [DOI:10.52842/conf.ecaade.2012.1.245]
17. Dunn, N. (2019). Digital fabrication: advanced design and construction methods in architecture. (Golnaz Nouri, Trans). Tehran: Fekrenobook. [In Persian]
18. Eghbali, S., & Karimi, S. (2017). Troubleshooting form-rise buildings using parametric design process and compare the output optimized form in terms of radiation exposure. Urban Management, 45, 225-238. [In Persian]
19. ElBatran, R. M., & Ismaeel, W. S. (2021). Applying a parametric design approach for optimizing daylighting and visual comfort in office buildings. Ain Shams Engineering Journal, 12(3), 3275-3284. [DOI:10.1016/j.asej.2021.02.014]
20. Elghandour, A., Saleh, A., Aboeineen, O., & Elmokadem, A. (2016). Using Parametric Design to Optimize Building's Façade Skin to Improve Indoor Daylighting Performance. In the Proceedings of the 3rd IBPSA-England Conference BSO.
21. Eltaweel, A., & Yuehong, S. U. (2017). Parametric design and daylighting: A literature review. Renewable and Sustainable Energy Reviews, 73, 1086-1103. [DOI:10.1016/j.rser.2017.02.011]
22. Ganjisafar, H. (2023). Sustainability and Bionic Biological Strategies as Parametric Patterns in Architectural Design. International Journal of Bionic Architecture, 3(8), 47-60. [In Persian] [DOI:10.52547/ijba.8.2.2]
23. Gerber, D. J., & Pantazis, E. (2016). A multi-agent system for façade design: a design methodology for design exploration, analysis and simulated robotic fabrication. In: Proceedings of the 36th Annual Conference of the Association for Computer Aided Design in Architecture, 12-23. [DOI:10.52842/conf.acadia.2016.012]
24. Ghalehnoee, M. (2023). Origins of Thought and Methods of Contextualism in Urbanism, Architecture and Fields Affecting the Two, From the 1960s to the Present. Journal of Space and Place Researches, 25(1), 5-28. [In Persian]
25. Golkar, K. (1999). Exploration in the definition of urban design. Ministry of Housing and Urban Development Studies and Research Center. [In Persian]
26. Grobman, Y., & Neuman, E. (2012). Performalism: form and performance in digital architecture. Routledge. [DOI:10.4324/9780203720981]
27. Habibi, A., Izadyar, S., & Serafrazi, A. (2014). Fuzzy multi-criteria decision making. Tehran: Simayedanesh. [In Persian]
28. Hajizadeh Alamdari, K., Etesam, I., & Mokhtabad Amri, S.M. (2020). Analysis of contextualism in traditional Iranian architecture (Study sample: Sadeghi House, Ardabil). Quarterly of Geography (Regional Planing), 10(4), 235-251. [In Persian]
29. Hajizadeh Alamdari, K., Etesam, I., & Mokhtabad Amri, S.M. (2021). Evaluation of contextualism indicators in the architectural design process. Quarterly of Geography (Regional Planing), 11(2), 115-123. [In Persian]
30. Hasanpour Loumer, S., Nejad Ebrahimi, A., Sattarisarbangholi, H., & Vandshoari, A. (2023). Understanding the Cultural Components Affecting the Formation of the Architectural Ornamentation of the Historical City of Masouleh. National Studies, 93(1), 59-80. [In Persian]
31. Hernández Falagán, D., & Ziaiebigdeli, M. (2022). Parametric Architecture beyond Form-Klein and Price: Pioneers in Computing the Quality of Life in Housing. Architecture, 2(1), 1-17. [DOI:10.3390/architecture2010001]
32. Hillier, B., & Hanson, J. (1989). The social logic of space. Cambridge university press.
33. Homaei, J. (2000). Molavi Namah. Tehran: Homa Publishing. [In Persian]
34. https://www.archdaily.com
35. Imani, E. (2015). Examining different approaches of adapting to the context to strengthen the position of contextualism in the architectural planning process.Journal of Iranian Architecture & Urbanism, 10, 29-44. [In Persian]
36. Jabi, W. (2013). Parametric design for architecture. London, UK: Laurence King Publishing Ltd.
37. Jabi, W., Soe, S., Theobald, P., Aish, R., & Lannon, S. (2017). Enhancing parametric design through non-manifold topology. Design Studies, 52, 96-114. [DOI:10.1016/j.destud.2017.04.003]
38. Jacobus, F., Carpenter, A., Loerts, R. S., Nunzio, A., & Bedeschi, F. (2023). Architectonics and Parametric Thinking: Computational Modeling for Beginning Design. Routledge. [DOI:10.4324/9781003252634]
39. Janssen, P., & Stouffs, R. (2015). Types of parametric modelling. In: Proceedings of the 20th International Conference of Association for Computer-Aided Architectural Design Research in Asia CAADRIA, 157-166. [DOI:10.52842/conf.caadria.2015.157]
40. Kensek, K., & Noble, D. (2014). Building information modeling: BIM in current and future practice. John Wiley & Sons. [DOI:10.4324/9781315797076]
41. Khabazi, Z. (2016). Algorithmic architecture paradigm. Mashhad: Kasrapublishing. [In Persian]
42. Khasm Afkan Nezam, E., Navidi Majd, F., & Fadavi Anbiayee, B. (2020). Re-evaluation of the Patterns and Practices of Contextual Architecture in Islamic Cities in the Age of Globalization. Culture of Islamic Architecture and Urbanism Journal, 5(1), 123-149. [In Persian] [DOI:10.29252/ciauj.5.1.8]
43. Kollar, L. P. (1985). On the Whole and the Part. University of New South Wales, Faculty of Architecture.
44. Lee, C., Shin, S., & Issa, R. R. (2023). Rationalization of Free-Form Architecture Using Generative and Parametric Designs. Buildings, 13(5), 1-17. [DOI:10.3390/buildings13051250]
45. Liu, H., Jiao, J., & Zhang, N. (2016). Research on nonlinear thinking of landscape architecture design based on computer-aided parametric model. International Journal of Multimedia and Ubiquitous Engineering, 11(8), 333-344. http://dx.doi.org/10.14257/ijmue.2016.11.8.34 [DOI:10.14257/ijmue.2016.11.8.34]
46. Meredith, M., & Sasaki, M. (2008). From control to design: parametric/algorithmic architecture. Actar-D.
47. Modaberian, A., & Pakdel Fard, M. (2022). The paradigm of parametric architecture in Islamic architecture of Iran. Journal of urban design studies and urban research, (1), 15-26. [In Persian]
48. Moini, J. (2008). Theory and culture. Tehran: Center for International Cultural Studies and Research. [In Persian]
49. Molaei, A. (2023). Redefinition the Contextual Urban Competitiveness Potentials in Cities and Regions Development. Journal of Development strategy, 19(1), 100-142. [In Persian]
50. Mostaghni, A., & Alimoradi, M. (2016). Analysis the application of the nature geometry and the fractal in parametric architecture: The Interior ornament of the dome of the Sheikh Lotfollah mosque. Journal of Architecture and Urban Planning, 8(16), 103-122. [In Persian]
51. Naghavi, P., & Mazaherian, H. (2019). Analysis of Contemporary Theories When Encountering the Context in Architectural Design. Bagh-e Nazar, 16(74), 69-80. [In Persian]
52. Nematimehr, M. (2005). The principle of totality in urban design. Honar-Ha-Ye-Ziba, (22), 5-14. [In Persian]
53. Nesbitt, K. (2008). Postmodern theories in architecture. (Mohammad Reza Shirazi, Trans). Tehran: Ney. [In Persian]
54. Noghsanmohammadi, M., & Abbasi, M. (2020). The Effects of Cultural Contextualism on Historical Textures in Abarkooh. Farhang Yazd, 2(6), 121-145. [In Persian]
55. Okoli, C., & Pawlowski, S. D. (2004). The Delphi method as a research tool: an example, design considerations and applications. Information & management, 42(1), 15-29. [DOI:10.1016/j.im.2003.11.002]
56. Oxman, R. (2017). Thinking difference: Theories and models of parametric design thinking. Design studies, 52, 4-39. [DOI:10.1016/j.destud.2017.06.001]
57. Queiroz, N., & Vaz, C. (2015). Designing a Building envelope using parametric and algorithmic processes. In: Proceedings of the 19th Conference of the Iberoamerican Society of Digital Graphics, 797-801. [DOI:10.5151/despro-sigradi2015-sp90284]
58. Rapoport, A. (1979). Cultural origins of architecture. Introduction to architecture, 2-20.
59. Rapoport, A. (2013). Pour une anthropologie de la maison. (Khosro Afzalian, Trans). Mashhad: Kasrapublishing. [In Persian]
60. Rashidi, S., Toofan, S., & Nejadabrahimi, A. (2023). The Role of Context-oriented Management in the Formation of the Historical Landscape of Takht Suleiman. Journal of Urban Management Studies, 15(53), 1-17. [In Persian]
61. Rasuli, M., Shahbazi, Y., & Matini, M. (2019). Horizontal and Vertical Movable Drop-Down Shades Performance in Double Skin Façade of Office Buildings; Evaluation and Parametric Simulation. Naqshejahan- Basic studies and New Technologies of Architecture and Planning, 9(2), 135-144. [In Persian]
62. Ronagh, E., & Zandieh, M. (2021). Exploring the Digital Approach to Redefining Decoration Design in Islamic Architecture Inspired by the Teachings of the Holy Quran. Naqshejahan- Basic studies and New Technologies of Architecture and Planning, 10(4), 255-263. [In Persian]
63. Samadi-Miarkolaei, H., Samadi-Miarkolaei, H., & Bastami, M. (2019). The application of Fuzzy Delphi Method and Fuzzy AHP in Verification and Ranking of Effective Indexes on Organizational Entrepreneurship. Journal of Innovation and Enterpreneurship, 6(11), 61-74. [In Persian]
64. Schumacher, P. (2009). Parametricism: A new global style for architecture and urban design. Architectural Design, 79(4), 14-23. [DOI:10.1002/ad.912]
65. Schumacher, T. (1971). Contextualism. Urban Ideals and Deformation. Casa bella, (359), 78-86.
66. Tantawy, A. R. (2022). Toward the formulation of a proposed frame for the formal and structural specifications of the modern parametric digital architecture. Beni-Suef University Journal of Basic and Applied Sciences, 11(1), 1-16. [DOI:10.1186/s43088-022-00195-2]
67. Tarashi, M., & Gharaei, F. (2015). Neighborhood Design Using Parametric Design Method Based on Patterns of Traditional Urban Textures in Kashan City. Journal of Architecture and Urban Planning, 8(15), 97-112. [In Persian]
68. Terzidis, K. (2003). Expressive form: A conceptual approach to computational design. Routledge. [DOI:10.4324/9780203586891]
69. Wang, Y., & Chen, L. (2022). Architectural and landscape garden planning integrated with artificial intelligence parametric analysis. Security and Communication Networks, 2022, 1-9. [DOI:10.1155/2022/8577269]
70. White, E. T. (2012). Concept sourcebook: a vocabulary of architectural forms. (Mohammad Ahmadinejad, Trans). Isfahan: Khak. [In Persian]
71. Woodbury, R. (2010). Elements of Parametric Design. Routledge
72. Yazdanfar, A., Hosseini, B., & Zaroudi, M. (2014). Culture and House Form (Case Study: Traditional Houses in Tonekabon and Ramsar). Housing and Rural Environment, 32(144), 17-32. [In Persian]
73. Yazdani, H., Jalali, N., & Moazeni, B. (2018). An Organizational Change Readiness Model to Implement Business Processes. Quarterly Journal of Bi Management Studies, 7(25), 41-84. [In Persian]
74. Yoo, Y. S., Cho, M., Eum, J. S., & Kam, S. J. (2020). Biomorphic clothing sculpture interface as an emotional communication space. Frontiers in Psychology, 11, 117. [DOI:10.3389/fpsyg.2020.00117]
75. Yu, R., & Gero, J. (2015). An empirical foundation for design patterns in parametric design. In: Proceedings of the 20th International Conference of the Association for Computer-Aided Architectural Design Research in Asia. 551-560. [DOI:10.52842/conf.caadria.2015.551]
76. Zandieh, M., & Ronagh, E. (2020). The use of the Holy Quran tunes in the production of geometrical decoration for Iranian architecture based on the parametric architecture. Naqshejahan- Basic studies and New Technologies of Architecture and Planning, 9(4), 273-286. [In Persian]
77. Zarei, Y. (2012). The challenges of parametric design in architecture today: Mapping the design practice. (Doctoral Thesis). The University of Manchester, United Kingdom.
78. Zelner, P. (2007). Hybrid Space: new forms in digital architecture. (Alireza Seyedahmadian & Hamid Khodapanahi, Trans). Tehran: Honar-e Memari Publication. [In Persian]
79. Ziaee, A., Moztarzadeh, H., & Movahed, KH. (2020). The Role of Parametric System in the Analysis of Sim Van Der Ryn's Ecological Architecture Principles in Iranian Plateau. Journal of Architect, Urban Design & Urban Planning, 13(30), 167-182. [In Persian]

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