Modelling of outdoor natural ventilation and energy performance for buildings in an industrial park : effect of the urban-heat-island

The urban air temperature is slowly rising in cities around the world. The leading causes of this effect include low wind velocity due to high-building density, diminishing of green areas, and change of surface coating materials. This may lead to overheating from human activities and absorption of s...

Full description

Saved in:
Bibliographic Details
Main Author: Teh, Phyllis Fei Yin
Other Authors: Li Hua
Format: Final Year Project
Language:English
Published: Nanyang Technological University 2021
Subjects:
Online Access:https://hdl.handle.net/10356/150281
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Nanyang Technological University
Language: English
id sg-ntu-dr.10356-150281
record_format dspace
spelling sg-ntu-dr.10356-1502812021-05-27T01:04:49Z Modelling of outdoor natural ventilation and energy performance for buildings in an industrial park : effect of the urban-heat-island Teh, Phyllis Fei Yin Li Hua School of Mechanical and Aerospace Engineering LiHua@ntu.edu.sg Engineering::Mechanical engineering Engineering::Mathematics and analysis::Simulations The urban air temperature is slowly rising in cities around the world. The leading causes of this effect include low wind velocity due to high-building density, diminishing of green areas, and change of surface coating materials. This may lead to overheating from human activities and absorption of solar radiation on dark surfaces. This problem is further worsened by increasing demand on air-conditioning, which again leads to additional heating and carbon dioxide release. [1] The main objective of the work presented in this report is to perform Computational Fluid Dynamics (CFD) simulation studies to investigate the airflow patterns within an industrial estate and to attempt to find ways to improve the airflow. In total, 6 CFD simulations were carried out to study the flow behavior within the estate. These 6 studies comprise of: 1. Reference model (North wind) 2. Reference model (East wind) 3. Model no. 1 - Bisected reference model (North wind) 4. Model no. 1 - Bisected reference model (East wind) 5. Model no. 2 – Model no. 1 with expanded driveway (North wind) 6. Model no. 2 – Model no. 1 with expanded driveway (East wind) For studies no. 1 and 2, a reference model was replicated after the Toa Payoh industrial park. The reference model consists of 11 industrial blocks (block no. 1 to 8 and 10 to 12) and 1 canteen (block no. 9). For studies no. 3 and 4, the reference model was reshaped such that all the industrial blocks were divided into 2 equal parts. The rationale behind this is that when the blocks are divided and spaced out, gaps are formed. In theory, this would encourage airflow. Finally, for studies no. 5 and 6, the bisected model was modified again. This time, the driveways were expanded from single-lane road to two-lane road, so as to further increase the gaps in between the industrial blocks. For all North-wind studies, the velocity inlet boundary condition is set on the North-side surface. Similarly, for East-wind studies, the velocity inlet is set on the East-side surface. Bachelor of Engineering (Mechanical Engineering) 2021-05-27T01:04:49Z 2021-05-27T01:04:49Z 2021 Final Year Project (FYP) Teh, P. F. Y. (2021). Modelling of outdoor natural ventilation and energy performance for buildings in an industrial park : effect of the urban-heat-island. Final Year Project (FYP), Nanyang Technological University, Singapore. https://hdl.handle.net/10356/150281 https://hdl.handle.net/10356/150281 en P-B028 application/pdf Nanyang Technological University
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Mechanical engineering
Engineering::Mathematics and analysis::Simulations
spellingShingle Engineering::Mechanical engineering
Engineering::Mathematics and analysis::Simulations
Teh, Phyllis Fei Yin
Modelling of outdoor natural ventilation and energy performance for buildings in an industrial park : effect of the urban-heat-island
description The urban air temperature is slowly rising in cities around the world. The leading causes of this effect include low wind velocity due to high-building density, diminishing of green areas, and change of surface coating materials. This may lead to overheating from human activities and absorption of solar radiation on dark surfaces. This problem is further worsened by increasing demand on air-conditioning, which again leads to additional heating and carbon dioxide release. [1] The main objective of the work presented in this report is to perform Computational Fluid Dynamics (CFD) simulation studies to investigate the airflow patterns within an industrial estate and to attempt to find ways to improve the airflow. In total, 6 CFD simulations were carried out to study the flow behavior within the estate. These 6 studies comprise of: 1. Reference model (North wind) 2. Reference model (East wind) 3. Model no. 1 - Bisected reference model (North wind) 4. Model no. 1 - Bisected reference model (East wind) 5. Model no. 2 – Model no. 1 with expanded driveway (North wind) 6. Model no. 2 – Model no. 1 with expanded driveway (East wind) For studies no. 1 and 2, a reference model was replicated after the Toa Payoh industrial park. The reference model consists of 11 industrial blocks (block no. 1 to 8 and 10 to 12) and 1 canteen (block no. 9). For studies no. 3 and 4, the reference model was reshaped such that all the industrial blocks were divided into 2 equal parts. The rationale behind this is that when the blocks are divided and spaced out, gaps are formed. In theory, this would encourage airflow. Finally, for studies no. 5 and 6, the bisected model was modified again. This time, the driveways were expanded from single-lane road to two-lane road, so as to further increase the gaps in between the industrial blocks. For all North-wind studies, the velocity inlet boundary condition is set on the North-side surface. Similarly, for East-wind studies, the velocity inlet is set on the East-side surface.
author2 Li Hua
author_facet Li Hua
Teh, Phyllis Fei Yin
format Final Year Project
author Teh, Phyllis Fei Yin
author_sort Teh, Phyllis Fei Yin
title Modelling of outdoor natural ventilation and energy performance for buildings in an industrial park : effect of the urban-heat-island
title_short Modelling of outdoor natural ventilation and energy performance for buildings in an industrial park : effect of the urban-heat-island
title_full Modelling of outdoor natural ventilation and energy performance for buildings in an industrial park : effect of the urban-heat-island
title_fullStr Modelling of outdoor natural ventilation and energy performance for buildings in an industrial park : effect of the urban-heat-island
title_full_unstemmed Modelling of outdoor natural ventilation and energy performance for buildings in an industrial park : effect of the urban-heat-island
title_sort modelling of outdoor natural ventilation and energy performance for buildings in an industrial park : effect of the urban-heat-island
publisher Nanyang Technological University
publishDate 2021
url https://hdl.handle.net/10356/150281
_version_ 1701270594277867520