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The Impact of Applying Floor Area Ratio (FAR) and Building’s Height Diversity on Urban Air Temperature.

Article

Last updated: 05 Jan 2025

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Abstract

Building height and Floor Area Ratio (FAR) are recognized as crucial design elements in urban environments, prior research has examined the effects of Floor Area Ratio (FAR) on thermal performance, explores the relationship between FAR and building coverage ratio (BCR). The combined influence of FAR and building height remains understudied. Recent policy changes in Egypt have increased the permissible FAR, potentially leading to a rise in buildings heights. These changes have prompted concerns regarding the combined effect of FAR and building height on thermal environment. However, a comprehensive understanding of this intricate relationship within urban blocks remains elusive. This study addresses this knowledge gap by investigating the impact of varying building heights on air temperature, with a focus on pedestrian thermal comfort in hot, arid climates. Employing computational simulations using ENVI-met software, the research evaluates different urban design scenarios. A base case urban block is established based on Egyptian regulations, followed by twelve additional scenarios with identical FAR and Building Coverage Ratio (BCR) but varying building heights (8-72 meters). Simulations compare potential air temperature for each scenario to the base case. Results reveal a significant influence of building height variation on air temperature. Notably, one scenario achieved a 1.5°C reduction during peak hours compared to the base case, suggesting potential for mitigating thermal discomfort. This study demonstrates that incorporating building height diversity within urban design strategies can be a valuable tool for managing air temperature and enhancing pedestrian thermal comfort in hot, arid regions.

DOI

10.21608/erjsh.2024.295632.1321

Keywords

Floor area ratio (FAR), Building coverage ratio (BCR), height diversity, air temperature, thermal comfort

Authors

First Name

aya

Last Name

Attia

MiddleName

-

Affiliation

Department of Architectural Engineering, Faculty of Engineering at Shoubra, Benha University, Cairo, Egypt

Email

archayaatya2014@gmail.com

City

-

Orcid

-

First Name

Tarek

Last Name

El Heinawy

MiddleName

-

Affiliation

Department of Architectural Engineering, Faculty of Engineering at Shoubra, Benha University, Cairo, Egypt

Email

tarek.alhenawy@feng.bu.edu.eg

City

cairo

Orcid

-

First Name

Islam

Last Name

Ghonimi

MiddleName

-

Affiliation

Department of Architectural Engineering, Faculty of Engineering at Shoubra, Benha University, Cairo, Egypt

Email

islam.ghonimi@feng.bu.edu.eg

City

-

Orcid

-

Volume

53

Article Issue

4

Related Issue

51476

Issue Date

2024-10-01

Receive Date

2024-06-10

Publish Date

2024-11-01

Page Start

36

Page End

45

Print ISSN

3009-6049

Online ISSN

3009-6022

Link

https://erjsh.journals.ekb.eg/article_395620.html

Detail API

https://erjsh.journals.ekb.eg/service?article_code=395620

Order

395,620

Type

Research articles

Type Code

2,276

Publication Type

Journal

Publication Title

Engineering Research Journal (Shoubra)

Publication Link

https://erjsh.journals.ekb.eg/

MainTitle

The Impact of Applying Floor Area Ratio (FAR) and Building’s Height Diversity on Urban Air Temperature.

Details

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Article

Created At

29 Dec 2024