Study on the Thermal Environment Inside a Fully-Enclosed Subway Noise Barrier

The thermal environment inside a fully-enclosed subway noise barrier shall be designed according to underground section tunnel standards. This article constructs a model using practical examples, simulates calculations on fully-enclosed noise barrier installations both with and without air vents via...

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Main Authors: Liu Lei, Zhang Lianghan, Kang Zhongxu, Yao Kun
Format: Article
Language:English
Published: EDP Sciences 2020-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/03/e3sconf_arfee2020_01044.pdf
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spelling doaj-3b219633e4144ee3863837ab151527ea2021-03-02T07:31:00ZengEDP SciencesE3S Web of Conferences2267-12422020-01-011430104410.1051/e3sconf/202014301044e3sconf_arfee2020_01044Study on the Thermal Environment Inside a Fully-Enclosed Subway Noise BarrierLiu Lei0Zhang Lianghan1Kang Zhongxu2Yao Kun3Beijing Urban Construction Design & Development Group Co., LimitedBeijing Urban Construction Design & Development Group Co., LimitedBeijing Municipal Institute of Labour ProtectionBeijing Municipal Institute of Labour ProtectionThe thermal environment inside a fully-enclosed subway noise barrier shall be designed according to underground section tunnel standards. This article constructs a model using practical examples, simulates calculations on fully-enclosed noise barrier installations both with and without air vents via a threedimensional numerical simulation method, and then conducts a comparative analysis of the effects noise barrier lengths and air vent widths have on an internal thermal environment. The calculation results show that when the length of the fully-enclosed noise barrier without air vents was 100m, the internal thermal environment exceeded the limit; as the width of the air vents increased, the temperature in the internal environment gradually decreased, but the reduction was less once the air vent width exceeded 2 m; When the top air vent width was 2 m, and the noise barrier length was 100m, the thermal environment was found to meet requirements. As the noise barrier length increased, the internal air temperature exceeded the standards by varying degrees.https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/03/e3sconf_arfee2020_01044.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Liu Lei
Zhang Lianghan
Kang Zhongxu
Yao Kun
spellingShingle Liu Lei
Zhang Lianghan
Kang Zhongxu
Yao Kun
Study on the Thermal Environment Inside a Fully-Enclosed Subway Noise Barrier
E3S Web of Conferences
author_facet Liu Lei
Zhang Lianghan
Kang Zhongxu
Yao Kun
author_sort Liu Lei
title Study on the Thermal Environment Inside a Fully-Enclosed Subway Noise Barrier
title_short Study on the Thermal Environment Inside a Fully-Enclosed Subway Noise Barrier
title_full Study on the Thermal Environment Inside a Fully-Enclosed Subway Noise Barrier
title_fullStr Study on the Thermal Environment Inside a Fully-Enclosed Subway Noise Barrier
title_full_unstemmed Study on the Thermal Environment Inside a Fully-Enclosed Subway Noise Barrier
title_sort study on the thermal environment inside a fully-enclosed subway noise barrier
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2020-01-01
description The thermal environment inside a fully-enclosed subway noise barrier shall be designed according to underground section tunnel standards. This article constructs a model using practical examples, simulates calculations on fully-enclosed noise barrier installations both with and without air vents via a threedimensional numerical simulation method, and then conducts a comparative analysis of the effects noise barrier lengths and air vent widths have on an internal thermal environment. The calculation results show that when the length of the fully-enclosed noise barrier without air vents was 100m, the internal thermal environment exceeded the limit; as the width of the air vents increased, the temperature in the internal environment gradually decreased, but the reduction was less once the air vent width exceeded 2 m; When the top air vent width was 2 m, and the noise barrier length was 100m, the thermal environment was found to meet requirements. As the noise barrier length increased, the internal air temperature exceeded the standards by varying degrees.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/03/e3sconf_arfee2020_01044.pdf
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AT zhanglianghan studyonthethermalenvironmentinsideafullyenclosedsubwaynoisebarrier
AT kangzhongxu studyonthethermalenvironmentinsideafullyenclosedsubwaynoisebarrier
AT yaokun studyonthethermalenvironmentinsideafullyenclosedsubwaynoisebarrier
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