An Algorithm for Estimation of Wind-Building Interaction in the Early Design Stage

Wind-building interaction can be estimated with one of three approaches, or a combination of these: (1) on-site measurements, (2) reduced-scale wind tunnel measurements or (3) numerical simulation based on Computational Fluid Dynamics (CFD). It's clear that for early design stage, existing fore...

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Main Authors: İlker Karadağ, Nuri Serteser
Format: Article
Language:English
Published: KARE Publishing 2019-04-01
Series:Megaron
Subjects:
Online Access:https://jag.journalagent.com/z4/download_fulltext.asp?pdir=megaron&un=MEGARON-37167
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spelling doaj-5c3775471cd947a5aa27574c471256612021-01-24T18:25:52ZengKARE PublishingMegaron1309-69152019-04-0114220521210.14744/megaron.2018.37167MEGARON-37167An Algorithm for Estimation of Wind-Building Interaction in the Early Design Stageİlker Karadağ0Nuri Serteser1Department of Architecture, Istanbul Technical University Faculty of Architecture, İstanbul, TurkeyDepartment of Architecture, Istanbul Technical University Faculty of Architecture, İstanbul, TurkeyWind-building interaction can be estimated with one of three approaches, or a combination of these: (1) on-site measurements, (2) reduced-scale wind tunnel measurements or (3) numerical simulation based on Computational Fluid Dynamics (CFD). It's clear that for early design stage, existing fore mentioned methods are very time consuming and they require detailed study in terms of of fluid dynamics. These methods are not efficient especially in the case that the building form changes dynamically. Besides, both wind tunnel analysis and CFD simulations are not efficient when it comes to take output data in real-time. Due to all of these reasons, a need for a fast and robust method occurs. At this point, a very powerful method which doesn't require solid geometry as an input, besides in which there's no need to use mesh (control volume) is developed. In this study, the details of the developed algorithm and the output of it are given. In addition, the principal building forms are also simulated by the algorithm and the results are validated by the Ansys Fluent software. As a result, it is seen that the developed algorithm can be a guide in wind-building interaction analysis for architects in the preliminary design stage.https://jag.journalagent.com/z4/download_fulltext.asp?pdir=megaron&un=MEGARON-37167building aerodynamicscomputational fluid dynamics; wind efficient design; wind-building interaction.
collection DOAJ
language English
format Article
sources DOAJ
author İlker Karadağ
Nuri Serteser
spellingShingle İlker Karadağ
Nuri Serteser
An Algorithm for Estimation of Wind-Building Interaction in the Early Design Stage
Megaron
building aerodynamics
computational fluid dynamics; wind efficient design; wind-building interaction.
author_facet İlker Karadağ
Nuri Serteser
author_sort İlker Karadağ
title An Algorithm for Estimation of Wind-Building Interaction in the Early Design Stage
title_short An Algorithm for Estimation of Wind-Building Interaction in the Early Design Stage
title_full An Algorithm for Estimation of Wind-Building Interaction in the Early Design Stage
title_fullStr An Algorithm for Estimation of Wind-Building Interaction in the Early Design Stage
title_full_unstemmed An Algorithm for Estimation of Wind-Building Interaction in the Early Design Stage
title_sort algorithm for estimation of wind-building interaction in the early design stage
publisher KARE Publishing
series Megaron
issn 1309-6915
publishDate 2019-04-01
description Wind-building interaction can be estimated with one of three approaches, or a combination of these: (1) on-site measurements, (2) reduced-scale wind tunnel measurements or (3) numerical simulation based on Computational Fluid Dynamics (CFD). It's clear that for early design stage, existing fore mentioned methods are very time consuming and they require detailed study in terms of of fluid dynamics. These methods are not efficient especially in the case that the building form changes dynamically. Besides, both wind tunnel analysis and CFD simulations are not efficient when it comes to take output data in real-time. Due to all of these reasons, a need for a fast and robust method occurs. At this point, a very powerful method which doesn't require solid geometry as an input, besides in which there's no need to use mesh (control volume) is developed. In this study, the details of the developed algorithm and the output of it are given. In addition, the principal building forms are also simulated by the algorithm and the results are validated by the Ansys Fluent software. As a result, it is seen that the developed algorithm can be a guide in wind-building interaction analysis for architects in the preliminary design stage.
topic building aerodynamics
computational fluid dynamics; wind efficient design; wind-building interaction.
url https://jag.journalagent.com/z4/download_fulltext.asp?pdir=megaron&un=MEGARON-37167
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