Title of article :
Numerical Modeling and Experimental Study of Air Flow in theYazdi Wind-Towers
Author/Authors :
Mahdavinejad Mohammadjavad نويسنده Department of Architecture - School of Architecture and Urbanism - Tarbiat Modares University, Tehran , Ghasempoorabadi Mohammadhossein نويسنده Faculty of Art and Architecture - Tarbiat Modares University, Tehran , Javanrudi Kavan نويسنده Faculty of Art and Architecture - Tarbiat Modares University, Tehran , Bemanian M. نويسنده Faculty of Art and Architecture - Tarbiat Modares University, Tehran
Pages :
6
From page :
17
To page :
22
Abstract :
This paper is an attempt to Numerical Modeling and Experimental Study of Air Flow in the Yazdi Wind-Towers. Wind Towers has been known as one of the most effective climatic elements in Iranian traditional architecture. This paper is an attempt to evaluating Yazdi wind-tower to discussion the two main questions: 1. What is the role of Orientation of wind-towers span, regarding to climate and height of it, in Yazdi wind-tower? 2. How isthe performance of Yazdi wind tower in natural ventilation and air flow in the different seasons of the year? Computer Modeling and Simulation methods and Logical reasoning have been applied in this article, and study of Library Resources was another part of research.Thus, first, the wind-tower has been modeled in computer environment, then after Appling the climatic characterize, final simulation figures and diagrams have been extracted. Results indicate that increasing of the cooling power and optimized efficiency are one of the most important principles of wind-tower design process, and Yazdi wind-towers has mentioned this fact through 4 seasons of the year. By validate computer modeling and simulation, this paper clarify that Iranian traditional ventilation systems has many undiscovered secrets and facts, which need further investigations. This article indicates that natural tactics, which have been applied in the traditional architecture of Iran, can be mentioned as methods to using this valuable heritage in contemporary architecture.
Journal title :
Astroparticle Physics
Serial Year :
2013
Record number :
2412970
Link To Document :
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