MODIFICATION OF MOSQUE ABLUTION ROOM AND TOILET VENTILATION SYSTEM USING COMPUTATIONAL FLUID DYNAMICS

Ventilation is one way to maintain room air quality and comfort. Soleh Hawa Mosque ladies’ ablution room and toilet ventilation was predicted to be inadequate. This study aimed to design and perform a computational fluid dynamics simulation of the room ventilation system. This ventilation system was...

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Main Author: Jabbar Raihan, Kaiyuma
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/77410
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:77410
spelling id-itb.:774102023-09-05T09:07:41ZMODIFICATION OF MOSQUE ABLUTION ROOM AND TOILET VENTILATION SYSTEM USING COMPUTATIONAL FLUID DYNAMICS Jabbar Raihan, Kaiyuma Indonesia Final Project mosque ablution room and toilet, ventilation rate, thermal comfort, airflow pattern, computational fluid dynamics INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/77410 Ventilation is one way to maintain room air quality and comfort. Soleh Hawa Mosque ladies’ ablution room and toilet ventilation was predicted to be inadequate. This study aimed to design and perform a computational fluid dynamics simulation of the room ventilation system. This ventilation system was expected to meet ventilation criteria, which consist of ventilation rate, airflow pattern, and thermal comfort. The designed room air ventilation system was modeled as steady, without environmental wind, also by evaluating environmental heat transfer and room air humidity changes. The model primary data consist of room dimensions and air temperature measurement. While secondary data are the physical properties of air and related materials, solar irradiation variables, and applied exhaust fans specifications. The ventilation system geometry model and domain were prepared using ANSYS software. The chosen room air ventilation system design consists of several strategically placed exhaust fans and grilles on the toilet doors. Calculation of the system model simulation was carried out using ANSYS FLUENT. The simulation results show the system design is able to meet the ventilation needs in mantaining air quality according to its room type. The ablution space, washroom, and toilets have ventilation rates of 360 L/s, 180 L/s, and 142 L/s, respectively. Although the designed ventilation system is not yet able to satisfy room thermal comfort generally, it is hoped this ventilation system may be implemented and improve the ventilation health aspect in Soleh Hawa Mosque ladies’ ablution room and toilet. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description Ventilation is one way to maintain room air quality and comfort. Soleh Hawa Mosque ladies’ ablution room and toilet ventilation was predicted to be inadequate. This study aimed to design and perform a computational fluid dynamics simulation of the room ventilation system. This ventilation system was expected to meet ventilation criteria, which consist of ventilation rate, airflow pattern, and thermal comfort. The designed room air ventilation system was modeled as steady, without environmental wind, also by evaluating environmental heat transfer and room air humidity changes. The model primary data consist of room dimensions and air temperature measurement. While secondary data are the physical properties of air and related materials, solar irradiation variables, and applied exhaust fans specifications. The ventilation system geometry model and domain were prepared using ANSYS software. The chosen room air ventilation system design consists of several strategically placed exhaust fans and grilles on the toilet doors. Calculation of the system model simulation was carried out using ANSYS FLUENT. The simulation results show the system design is able to meet the ventilation needs in mantaining air quality according to its room type. The ablution space, washroom, and toilets have ventilation rates of 360 L/s, 180 L/s, and 142 L/s, respectively. Although the designed ventilation system is not yet able to satisfy room thermal comfort generally, it is hoped this ventilation system may be implemented and improve the ventilation health aspect in Soleh Hawa Mosque ladies’ ablution room and toilet.
format Final Project
author Jabbar Raihan, Kaiyuma
spellingShingle Jabbar Raihan, Kaiyuma
MODIFICATION OF MOSQUE ABLUTION ROOM AND TOILET VENTILATION SYSTEM USING COMPUTATIONAL FLUID DYNAMICS
author_facet Jabbar Raihan, Kaiyuma
author_sort Jabbar Raihan, Kaiyuma
title MODIFICATION OF MOSQUE ABLUTION ROOM AND TOILET VENTILATION SYSTEM USING COMPUTATIONAL FLUID DYNAMICS
title_short MODIFICATION OF MOSQUE ABLUTION ROOM AND TOILET VENTILATION SYSTEM USING COMPUTATIONAL FLUID DYNAMICS
title_full MODIFICATION OF MOSQUE ABLUTION ROOM AND TOILET VENTILATION SYSTEM USING COMPUTATIONAL FLUID DYNAMICS
title_fullStr MODIFICATION OF MOSQUE ABLUTION ROOM AND TOILET VENTILATION SYSTEM USING COMPUTATIONAL FLUID DYNAMICS
title_full_unstemmed MODIFICATION OF MOSQUE ABLUTION ROOM AND TOILET VENTILATION SYSTEM USING COMPUTATIONAL FLUID DYNAMICS
title_sort modification of mosque ablution room and toilet ventilation system using computational fluid dynamics
url https://digilib.itb.ac.id/gdl/view/77410
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