A case study on effect of air movement at train platform / Syed Haziq Saggaff Syed Hood, Hazril Sherney Basher and Mohd Hafizal Mohd Isa

Nowadays, train station is a common transportation used by people and gradually increases in popularity due to walkable city approach. Comfortability at the platform are important as all passenger use the space and it is improving for user convenient, safety and security according to location needs....

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Main Authors: Syed Hood, Syed Haziq Saggaff, Basher, Hazril Sherney, Mohd Isa, Mohd Hafizal
Format: Conference or Workshop Item
Language:English
Published: 2022
Subjects:
Online Access:https://ir.uitm.edu.my/id/eprint/80275/1/80275.pdf
https://ir.uitm.edu.my/id/eprint/80275/
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spelling my.uitm.ir.802752023-09-11T00:39:15Z https://ir.uitm.edu.my/id/eprint/80275/ A case study on effect of air movement at train platform / Syed Haziq Saggaff Syed Hood, Hazril Sherney Basher and Mohd Hafizal Mohd Isa Syed Hood, Syed Haziq Saggaff Basher, Hazril Sherney Mohd Isa, Mohd Hafizal Heating and ventilation. Air conditioning Nowadays, train station is a common transportation used by people and gradually increases in popularity due to walkable city approach. Comfortability at the platform are important as all passenger use the space and it is improving for user convenient, safety and security according to location needs. Under ventilation aspect, air movement are important because the tunnelling effect of present platform design have to meet passenger comfort and standard. Issue such as crowded people, train movement, heat, dust and air pollution by train adding with the pandemic virus Covid-19 create new opportunities of study on air movement. The methodology of investigation is field measurement conducted in KL Sentral using Extech 45160 3 in 1 Anemometer and questionnaire survey with 21 questions answered by 70 respondents. Based on the method, this paper analyses and comprehensively evaluates the ventilation indicator of thermal performance of KTM KL Sentral station platform. The results show an average air velocity of 0.05 – 0.16 m/s, an average air temperature of 30.75 – 33.03 ℃, and an average humidity of 62.63 – 72.30%. Most of the platform users hardly accept the air velocity and air temperature, while 60% of users agreed that the relative humidity is dry or a little dry. The acceptability range for user at the train platform were found to be for air velocity is more than 0.15 m/s, indoor air temperature is 26℃ and relative humidity is 65-75%. 2022 Conference or Workshop Item PeerReviewed text en https://ir.uitm.edu.my/id/eprint/80275/1/80275.pdf A case study on effect of air movement at train platform / Syed Haziq Saggaff Syed Hood, Hazril Sherney Basher and Mohd Hafizal Mohd Isa. (2022) In: 1st International of e-Conference on Green and Safe Cities 2022, 20-21 September, Universiti Teknologi MARA, Perak.
institution Universiti Teknologi Mara
building Tun Abdul Razak Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
url_provider http://ir.uitm.edu.my/
language English
topic Heating and ventilation. Air conditioning
spellingShingle Heating and ventilation. Air conditioning
Syed Hood, Syed Haziq Saggaff
Basher, Hazril Sherney
Mohd Isa, Mohd Hafizal
A case study on effect of air movement at train platform / Syed Haziq Saggaff Syed Hood, Hazril Sherney Basher and Mohd Hafizal Mohd Isa
description Nowadays, train station is a common transportation used by people and gradually increases in popularity due to walkable city approach. Comfortability at the platform are important as all passenger use the space and it is improving for user convenient, safety and security according to location needs. Under ventilation aspect, air movement are important because the tunnelling effect of present platform design have to meet passenger comfort and standard. Issue such as crowded people, train movement, heat, dust and air pollution by train adding with the pandemic virus Covid-19 create new opportunities of study on air movement. The methodology of investigation is field measurement conducted in KL Sentral using Extech 45160 3 in 1 Anemometer and questionnaire survey with 21 questions answered by 70 respondents. Based on the method, this paper analyses and comprehensively evaluates the ventilation indicator of thermal performance of KTM KL Sentral station platform. The results show an average air velocity of 0.05 – 0.16 m/s, an average air temperature of 30.75 – 33.03 ℃, and an average humidity of 62.63 – 72.30%. Most of the platform users hardly accept the air velocity and air temperature, while 60% of users agreed that the relative humidity is dry or a little dry. The acceptability range for user at the train platform were found to be for air velocity is more than 0.15 m/s, indoor air temperature is 26℃ and relative humidity is 65-75%.
format Conference or Workshop Item
author Syed Hood, Syed Haziq Saggaff
Basher, Hazril Sherney
Mohd Isa, Mohd Hafizal
author_facet Syed Hood, Syed Haziq Saggaff
Basher, Hazril Sherney
Mohd Isa, Mohd Hafizal
author_sort Syed Hood, Syed Haziq Saggaff
title A case study on effect of air movement at train platform / Syed Haziq Saggaff Syed Hood, Hazril Sherney Basher and Mohd Hafizal Mohd Isa
title_short A case study on effect of air movement at train platform / Syed Haziq Saggaff Syed Hood, Hazril Sherney Basher and Mohd Hafizal Mohd Isa
title_full A case study on effect of air movement at train platform / Syed Haziq Saggaff Syed Hood, Hazril Sherney Basher and Mohd Hafizal Mohd Isa
title_fullStr A case study on effect of air movement at train platform / Syed Haziq Saggaff Syed Hood, Hazril Sherney Basher and Mohd Hafizal Mohd Isa
title_full_unstemmed A case study on effect of air movement at train platform / Syed Haziq Saggaff Syed Hood, Hazril Sherney Basher and Mohd Hafizal Mohd Isa
title_sort case study on effect of air movement at train platform / syed haziq saggaff syed hood, hazril sherney basher and mohd hafizal mohd isa
publishDate 2022
url https://ir.uitm.edu.my/id/eprint/80275/1/80275.pdf
https://ir.uitm.edu.my/id/eprint/80275/
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score 13.209306