Noise reduction in high-speed train gangways using fairings and side barriers

Interior noise in high-speed trains creates passenger discomfort and fatigue. In particular, the noise generated around the gangway between carriages tends to be easily transmitted to the passenger spaces due to the large noise component in the low-frequency region. In addition, the noise from the b...

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Main Author: Hee-Min Noh
Format: Article
Language:English
Published: SAGE Publishing 2020-07-01
Series:Advances in Mechanical Engineering
Online Access:https://doi.org/10.1177/1687814020946131
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spelling doaj-220e64eb8425451d8efd8396f66e50592020-11-25T03:54:00ZengSAGE PublishingAdvances in Mechanical Engineering1687-81402020-07-011210.1177/1687814020946131Noise reduction in high-speed train gangways using fairings and side barriersHee-Min NohInterior noise in high-speed trains creates passenger discomfort and fatigue. In particular, the noise generated around the gangway between carriages tends to be easily transmitted to the passenger spaces due to the large noise component in the low-frequency region. In addition, the noise from the between-cars space around the gangway exterior tends to increase significantly when the high-speed train is travelling inside a tunnel. Therefore, this study analyses the cause of the noise generated in the gangways and identifies an effective method for reducing it. First, the mechanism for noise generation around the gangways was determined by computational flow noise analysis using a simple two-dimensional cavity model. From this simulation, it was confirmed that noise is generated when air flow enters the cavity. To investigate the influence of noise reduction in the between-cars section, blocking the airflow indirectly by installing fairings or directly by using side barriers was proposed. These noise reduction methods were examined by flow noise analysis, and then applied to an actual high-speed train. The interior noise was measured, and the results show that the use of side barriers was effective in reducing interior noise by 10 dB or more. In particular, a high noise reduction effect was exhibited in the low-frequency region. Therefore, this study verifies that directly blocking the inflow into the between-cars section is an effective noise reduction method.https://doi.org/10.1177/1687814020946131
collection DOAJ
language English
format Article
sources DOAJ
author Hee-Min Noh
spellingShingle Hee-Min Noh
Noise reduction in high-speed train gangways using fairings and side barriers
Advances in Mechanical Engineering
author_facet Hee-Min Noh
author_sort Hee-Min Noh
title Noise reduction in high-speed train gangways using fairings and side barriers
title_short Noise reduction in high-speed train gangways using fairings and side barriers
title_full Noise reduction in high-speed train gangways using fairings and side barriers
title_fullStr Noise reduction in high-speed train gangways using fairings and side barriers
title_full_unstemmed Noise reduction in high-speed train gangways using fairings and side barriers
title_sort noise reduction in high-speed train gangways using fairings and side barriers
publisher SAGE Publishing
series Advances in Mechanical Engineering
issn 1687-8140
publishDate 2020-07-01
description Interior noise in high-speed trains creates passenger discomfort and fatigue. In particular, the noise generated around the gangway between carriages tends to be easily transmitted to the passenger spaces due to the large noise component in the low-frequency region. In addition, the noise from the between-cars space around the gangway exterior tends to increase significantly when the high-speed train is travelling inside a tunnel. Therefore, this study analyses the cause of the noise generated in the gangways and identifies an effective method for reducing it. First, the mechanism for noise generation around the gangways was determined by computational flow noise analysis using a simple two-dimensional cavity model. From this simulation, it was confirmed that noise is generated when air flow enters the cavity. To investigate the influence of noise reduction in the between-cars section, blocking the airflow indirectly by installing fairings or directly by using side barriers was proposed. These noise reduction methods were examined by flow noise analysis, and then applied to an actual high-speed train. The interior noise was measured, and the results show that the use of side barriers was effective in reducing interior noise by 10 dB or more. In particular, a high noise reduction effect was exhibited in the low-frequency region. Therefore, this study verifies that directly blocking the inflow into the between-cars section is an effective noise reduction method.
url https://doi.org/10.1177/1687814020946131
work_keys_str_mv AT heeminnoh noisereductioninhighspeedtraingangwaysusingfairingsandsidebarriers
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