Exploring Relationship Regenerative Algorithm and Tectonism within Parametricism: ASynthesis of Architectural Principles

  • سال انتشار: 1403
  • محل انتشار: نهمین کنفرانس بین المللی مطالعات بین رشته ای در مدیریت و مهندسی
  • کد COI اختصاصی: ICOCS09_068
  • زبان مقاله: انگلیسی
  • تعداد مشاهده: 159
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نویسندگان

چکیده

This paper investigates the convergence of Relationship Regenerative Algorithms (RRAs) andtectonism within the paradigm of parametricism, elucidating their transformative potential incontemporary architectural practice. Parametricism, characterized by its computational designprinciples, offers a fertile ground for exploring the dynamic interaction between algorithmicprocesses and material articulation. RRAs, emphasizing the reciprocal relationship betweenform and function, empower architects to devise responsive, adaptable, and sustainablearchitectural solutions. Tectonism, rooted in the expressive manipulation of materials andconstruction techniques, enriches architectural expression with tactile and sensory qualities.Through a synthesis of these concepts, architects can realize design interventions thatharmonize environmental responsiveness, structural integrity, and material richness. The paperdelves into theoretical underpinnings, design methodologies, and exemplary projects thatshowcase the fusion of RRAs and tectonism, demonstrating novel approaches to form generavealgorithm, performance optimization, and material exploration. Key themes explored includeemergent phenomena in architecture, computational methodologies in parametric design,expressive tectonic strategies, and performative materiality. Furthermore, the paper discussesemerging trends, challenges, and opportunities, including advances in digital fabrication,interdisciplinary collaboration, and ethical implications. By embracing the integration of RRAsand tectonism, architects can push the boundaries of design innovation, fostering a builtenvironment that is dynamic, expressive, and culturally resonant

کلیدواژه ها

Regenerative Algorithms, tectonism, parametricism, computational design, materialarticulation, environmental responsiveness.

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