Numerical Research on the Mixture Mechanism of Polluted and Fresh Air at the Staggered Tunnel Portals

In longitudinal ventilation, circulating air is formed in portals for closely spaced twin tunnels, which causes mixing between the polluted air exhausted from one tunnel and the fresh air flow of another tunnel, thus leading to the rising costs of ventilation system construction and operation. In th...

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Main Authors: Xin Zhang, Tianhang Zhang, Kai Zhu, Zhiyi Huang, Ke Wu
Format: Article
Language:English
Published: MDPI AG 2018-08-01
Series:Applied Sciences
Subjects:
Online Access:http://www.mdpi.com/2076-3417/8/8/1365
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spelling doaj-68e424e070dd44e7bfbb8db991a164662020-11-25T02:26:31ZengMDPI AGApplied Sciences2076-34172018-08-0188136510.3390/app8081365app8081365Numerical Research on the Mixture Mechanism of Polluted and Fresh Air at the Staggered Tunnel PortalsXin Zhang0Tianhang Zhang1Kai Zhu2Zhiyi Huang3Ke Wu4College of Civil Engineering and Architecture, Zhejiang University, Hangzhou 310058, ChinaCollege of Civil Engineering and Architecture, Zhejiang University, Hangzhou 310058, ChinaCollege of Quality & Safety Engineering, China Jiliang University, Hangzhou 310058, ChinaCollege of Civil Engineering and Architecture, Zhejiang University, Hangzhou 310058, ChinaCollege of Civil Engineering and Architecture, Zhejiang University, Hangzhou 310058, ChinaIn longitudinal ventilation, circulating air is formed in portals for closely spaced twin tunnels, which causes mixing between the polluted air exhausted from one tunnel and the fresh air flow of another tunnel, thus leading to the rising costs of ventilation system construction and operation. In this study, for the closely spaced tunnel with staggered inlet and outlet, the computational fluid dynamics (CFD) numerical simulation method was adopted to reveal flow characteristics of the circulating air as well as variation rules of the circulating air mixing ratio φc with tunnel structure and operation parameters. Results show that both reducing inlet air velocity and increasing outlet air velocity and lateral distance can reduce the impact of the negative-pressure zone at the tunnel entrance on the jet flow structure at the tunnel exit, thus weakening the circulating air. When the inlet is placed behind or aligned with the outlet (staggered distance ∆l ≤ 0), φc will increase linearly along with the increase of staggered distance; when the inlet is placed before the outlet (∆l > 0), φc will first increase and then decrease with the increase of staggered distance. An expression to predict circulating air mixing ratio was created by sections. The predictions show a good correlation with the measurements and indicate that the front slope gradient of the tunnel portal is also one of the factors affecting the circulating air mixing ratio.http://www.mdpi.com/2076-3417/8/8/1365closely spaced twin tunnelstaggered inlet and outletcirculating airmixing ratiocomputational fluid dynamics (CFD)
collection DOAJ
language English
format Article
sources DOAJ
author Xin Zhang
Tianhang Zhang
Kai Zhu
Zhiyi Huang
Ke Wu
spellingShingle Xin Zhang
Tianhang Zhang
Kai Zhu
Zhiyi Huang
Ke Wu
Numerical Research on the Mixture Mechanism of Polluted and Fresh Air at the Staggered Tunnel Portals
Applied Sciences
closely spaced twin tunnel
staggered inlet and outlet
circulating air
mixing ratio
computational fluid dynamics (CFD)
author_facet Xin Zhang
Tianhang Zhang
Kai Zhu
Zhiyi Huang
Ke Wu
author_sort Xin Zhang
title Numerical Research on the Mixture Mechanism of Polluted and Fresh Air at the Staggered Tunnel Portals
title_short Numerical Research on the Mixture Mechanism of Polluted and Fresh Air at the Staggered Tunnel Portals
title_full Numerical Research on the Mixture Mechanism of Polluted and Fresh Air at the Staggered Tunnel Portals
title_fullStr Numerical Research on the Mixture Mechanism of Polluted and Fresh Air at the Staggered Tunnel Portals
title_full_unstemmed Numerical Research on the Mixture Mechanism of Polluted and Fresh Air at the Staggered Tunnel Portals
title_sort numerical research on the mixture mechanism of polluted and fresh air at the staggered tunnel portals
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2018-08-01
description In longitudinal ventilation, circulating air is formed in portals for closely spaced twin tunnels, which causes mixing between the polluted air exhausted from one tunnel and the fresh air flow of another tunnel, thus leading to the rising costs of ventilation system construction and operation. In this study, for the closely spaced tunnel with staggered inlet and outlet, the computational fluid dynamics (CFD) numerical simulation method was adopted to reveal flow characteristics of the circulating air as well as variation rules of the circulating air mixing ratio φc with tunnel structure and operation parameters. Results show that both reducing inlet air velocity and increasing outlet air velocity and lateral distance can reduce the impact of the negative-pressure zone at the tunnel entrance on the jet flow structure at the tunnel exit, thus weakening the circulating air. When the inlet is placed behind or aligned with the outlet (staggered distance ∆l ≤ 0), φc will increase linearly along with the increase of staggered distance; when the inlet is placed before the outlet (∆l > 0), φc will first increase and then decrease with the increase of staggered distance. An expression to predict circulating air mixing ratio was created by sections. The predictions show a good correlation with the measurements and indicate that the front slope gradient of the tunnel portal is also one of the factors affecting the circulating air mixing ratio.
topic closely spaced twin tunnel
staggered inlet and outlet
circulating air
mixing ratio
computational fluid dynamics (CFD)
url http://www.mdpi.com/2076-3417/8/8/1365
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