Identyfikatory
Warianty tytułu
Digitalizacja w architekturze solarnej wykorzystanie narzędzia compressed shortcut (Cs), badanie w budynku mieszkalnego w Ankarze, Turcja
Języki publikacji
Abstrakty
Solar-oriented architectural design is an emerging architectural approach to high energy consumption in buildings. The digital technologies used in this approach allow designers to test the performance of the building simultaneously by providing all the conditions of the design space parametrically. In this study, Compressed Shortcut (CS) tools, which are developed as an easy and fast solution to reach the optimum result in solar energy efficiency-oriented design approaches, are used. These tools are analyzed on a residential building in Ankara. Rhinoceros - Grasshopper and Ladybug plug-in programs were used as a method. As a result, the usability of the CS tools applied with the developed digital tools has been demonstrated as a method that enables the designs to be in optimum energy in a very fast and easy way.
Czasopismo
Rocznik
Tom
Strony
11--24
Opis fizyczny
Bibliogr. 19 poz., rys., tab.
Twórcy
autor
- Necmettin Erbakan University, Faculty of Fine Art and Architecture, Department of Architecture, Konya, Türkiye
autor
- Gazi University, Faculty of Architecture, Department of Architecture, Ankara, Türkiye
Bibliografia
- [1] Anderson, J., and Tang, M. (2010). Interactive information Model for Digital Fabricator. ARCC- EAAE 2010 Conference, Washington D.C.
- [2] Duffie, J., A. and Beckman, W., A. (2013). Solar engineering of thermal processes, John Wiley and Sons Inc., New York.
- [3] El Sheikh, M. M. (2011). Intelligent Building Skins: Parametric-Based Algorithm for Kinetic Facades Design and Daylighting Performance Integration. Master of Building Science, University of Southern California, Los Angeles.
- [4] Gülay, A. N. (2008). The Future of Turkey in terms of Renewable Energy Resources and Comparison with the European Union, Dokuz Eylül University Institute of Social Sciences Department of Business Administration International Business Programme Master Thesis, İzmir, Türkiye.
- [5] Issa, R. (2020). Essential Algorithms and Data Structures for Computational Design in Grasshopper First Edition, Robert McNeel & Associates.
- [6] Kensek, K., M. (2014). Integration of Environmental Sensors with BIM: case studies using Arduino, Dynamo, and the Revit API, Informes de la Construcción Journal, 66, ISSN-L: 0020-0883.
- [7] Kim, M., Kirby, L. and Krygiel, E. (2016). Mastering Autodesk Revit 2017 for Architecture: USA: John Wiley & Sons, 5-843.
- [8] Kiraz, F. (2003). Initial Construction and Use of Conventional and Ecological Building Systems Examination of Kayseri Vineyard House in terms of Expenses, Master's Thesis, Gazi University Institute of Science and Technology, Ankara.
- [9] Kuşçu, A. C. (2006). Traditional Konya House in the Context of Sustainable Architecture an Investigation, Master's Thesis, Yıldız Technical University Science and Technology Institute, Istanbul.
- [10] Mousadais, T. ve Mengana, S. (2016). Parametric BIM: Energy Performance Analysis Using Dynamo for Revit, Royal Institute of Technology, Master Thesis, Examensarbete Inom Samhällsbyggnad, Avancerad Nivå, 30 Hp Stockholm, Sverige.
- [11] Özmehmet, E. (2005). A Mediterranean Climate Type in the Context of Sustainable Architecture Building Model Proposal, Doctoral Dissertation, Dokuz Eylül University Institute of Science and Technology, İzmir, Türkiye.
- [12] Pak, B. (2003). A Design Model in Digital Media Architectural Design Interface. Master Thesis, Istanbul Technical University Institute of Science and Technology, Istanbul.
- [13] Serraoui, M. Sellam, M. and Rebhi, M. (2016). Automatic Dual Axis Sun Tracking System using Improved Perturbs and Observes MPPT Algorithm, Electrotehnica, Electronica, Automatıca (EEA) journal, 64(2), 48.
- [14] Solstice - equinox angles, Evaluating Your Site for Solar Energy, https://www.builditsolar.com/SiteSurvey/site_survey.htm, Accesed 20.03.2024.
- [15] Soytürk, H. (2019). Architectural Project Data, Zoning Directorate, Ankara Metropolitan Municipality, Ankara.
- [16] Suyoto, W. Indraprastha, A. ve Purbo, H. (2015). Parametric Approach as a Tool for Decision-making in Planning and Design Process, Case study: Office Tower in Kebayoran Lama, Procedia - Social and Behavioral Sciences, 184 , 328 – 337.
- [17] Villamil, A. A. G. (2014). Environmentally Responsive Buildings: Multi-Objective Optimization Workflow for Daylight and Thermal Quality. Master of Building Science, University of Southern California, Los Angeles.
- [18] Yang, I. H. and Nam, E.-J. (2010). Economic Analysis of the Daylight-Linked Lighting Control System in Office Buildings. Solar Energy, 84(8), 1513-1525.
- [19] Yazar, T. and Uysal, S. (2016). Parametric Modelling with Grasshopper, Pusulam Publishing, Istanbul.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa nr POPUL/SP/0154/2024/02 w ramach programu "Społeczna odpowiedzialność nauki II" - moduł: Popularyzacja nauki (2025).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-4cda1f40-be5c-454b-b9ec-1c4f58408923
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