The impact of using Voronoi diagrams on the contemporary interior design.

Document Type : Original Article

Author

Abu Dhabi university, United Arab of Emirates, college of engineering, architecture and design department

Abstract

Design is a process that requires an advanced stage of thinking in order to find suitable problems solutions. Consequently, Designers are no longer relaying their creations on ordinary resources, but are always looking for unconventional ideas. The interior design depends on previous designer experience through which he generates new ideas and inventions. Contemporaneity is a term that reflects the rapid changes that the design world faces each day. Accordingly, the designer must cross the barrier of everything traditional in his designs, using all the disciplines that directly or indirectly serve his field. This paper investigates the impact of using Voronoi Diagram -as one of the mathematics methods in space and surface dividing- on the interior and furniture design. Voronoi Diagram used to divide two-dimensional surfaces through specified points. This theory result is used recently in interior and architecture drawings without relaying these forms to the mathematical rules and fundamentals. The designer knowledge of Voronoi Diagram drawing methods will enhance his design outputs. The research will use the Descriptive analytical method to achieve the objectives.Interior design is one of the Applied Sciences, it is influenced by a large number of fields. Each new innovation affects the design, making the definition of contemporaneity difficult. Consequently, it made the designer always in a state of anticipation for every new that may open up his intellectual and cognitive horizons and affect the design process. For example, Biotical Engineering Which is defined as a science that relies on the use of the functional mechanism of natural elements and their utilization in other fields. Based on the principles of biotic engineering, designers can develop new design solutions that reflect organisms ' adaptation mechanisms with nature. Designers, however, did not relay their creations on the appearance of organisms ' biological structure, but dived further in order to analyze the mathematical theories behind these forms. In addition, designers used computer AIDs to help analyze the mathematical relationships that structured the organic organisms. The results of these analyzes were therefore considered a source of inspiration for the creation of new forms of design.

Keywords


المراجع:
المراجع العربیة:
قرنى، وسام حسین. "رؤیة تصمیمیة لاتجاهان التصمیم الحدیثة وتأثیرها على التصمیم الداخلى والاثاث" مجلة العمارة والفنون والعلوم الانسانیة العدد 18
qurny, wessam husayn. "Roaia Tasmimya Le Atgahan al tasmem al hadisa w taa’syraha ala al tasmim al dakheli w al asas” Magalet al Emara w al Fenoun w al Elom al Insania al adad 18.
محمد، دعاء عبد الرحمن. النجادى، على صالح. عبد الکریم، انعام عبد الغنى. "مفهوم التصمیم المستدام وأثره على جودة البیئة الداخلیه للتصمیم الداخلى " مجلة العمارة والفنون والعلوم الانسانیة العدد 15
Mohamed, Doaa Abdel Rahman. Al Najadi, Ali Saleh. Abdel Karem, Enaam abdel Ghany. : Mafhom Al tasmim al mostadam w asro ala gawdet al bya’a al dakhlya le al tasmim al dakhly” Magalet al Emara w al Fenoun w al Elom al Insania al adad 15.
 
 
المراجع الأجنبیة: 
1- Esomba. Steve, twenty-first century's fuel sufficiency roadmap, published by Lulu.com, (2012).
2- Nowak. Anna, Application of Voronoi diagrams in contemporary architecture and town planning, Challenges of Modern Technology, 2015.
3- Thomas M. Liebling & Lionel Pournin, Voronoi Diagrams and Delaunay Triangulations: Ubiquitous Siamese Twins, Documenta Mathematica, Extra Volume ISMP, (2012).
4-  Klein. Rolf & Lee. Der-Tsai, Voronoi Diagrams and Delaunay Triangulations, World Scientific Publishing Company, First edition, (2013).
5-A. Okabe & B. Boots & K. Sugihara, Spatial Tessellations: Concepts and Applications of Voronoi Diagrams, Second Edition, John Wiley and Sons, 1992.
6- Sebbane. Yasmina, Smart Autonomous Aircraft: Flight Control and Planning for UAV, CRC Press, 2015.
7- Pokojski. Wojciech & Pokojska. Paulina, Voronoi diagrams – inventor, method, applications, Polish Cartographical Review Vol. 50, no. 3, 2018.
8- Kaplan. Craig S, Voronoi Diagrams and Ornamental Design, in The First Annual Symposium of the International Society for the Arts- Mathematics and Architecture (conference), 1999.
9-Siu-Wing Cheng, Tamal K. Dey, Jonathan Shewchuk, Delaunay Mesh Generation, Chapman and Hall/CRC, 2012.
10- https://en.wikipedia.org/wiki/Delaunay_triangulation referring to Delaunay, Boris (1934). "Sur la sphère vide". Bulletin de l'Académie des Sciences de l'URSS, Classe des sciences mathématiques et naturelles.
11-M. deBerg & M. VanKreveld & M. Overmars & O. Schwarzkopf, Computational Geometry algorithms and Applications (second edition), 1998.
12- Aurenhammer. Franz, Voronoi Diagrams-A Survey of a Fundamental Geometric Data Structure, ACM Computing Surveys, 1991.
13- Coates. Paul & Derix. Christian, Generating architectural spatial configurations. Two approaches using Voronoi tessellations and particle systems, 8th Generative Art Conference GA2005, 2005.
15- Plagens. Peter, “The Art of Being Contemporary”, Art in America, 2010.
19- Mitchell. W, “Three Paradigms for Computer Aided Design,” Knowledge Based Computer Aided Architectural Design, G. Carrara and Y. Kalay (Eds.), Elsevier, Amsterdam, (1994).
شبکة المعلومات الدولیة:
14- معجم المعانی الجامع،(2016،دیسمبر 21).نقلا عن الموقع : http://www.almaany.com