Evaluation of Two Improved Schemes at Non-Aligned Intersections Affected by a Work Zone with an Entropy Method

The impact of work zones on traffic is a common problem encountered in traffic management. The reconstruction of roads is inevitable, and it is necessary and urgent to reduce the impact of the work zone on the operation of traffic. There are many existing research results on the influence of highway...

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Main Authors: Yang Shao, Zhongbin Luo, Huan Wu, Xueyan Han, Binghong Pan, Shangru Liu, Christian G. Claudel
Format: Article
Language:English
Published: MDPI AG 2020-07-01
Series:Sustainability
Subjects:
Online Access:https://www.mdpi.com/2071-1050/12/14/5494
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spelling doaj-142e34a590cb43a599865fa6f3893f312020-11-25T03:45:20ZengMDPI AGSustainability2071-10502020-07-01125494549410.3390/su12145494Evaluation of Two Improved Schemes at Non-Aligned Intersections Affected by a Work Zone with an Entropy MethodYang Shao0Zhongbin Luo1Huan Wu2Xueyan Han3Binghong Pan4Shangru Liu5Christian G. Claudel6School of Modern Posts (Logistics School) & Institute of Posts, Xi’an University of Posts & Telecommunications, Xi’an 710061, ChinaChina Communications Construction Company First Highway Consultants Co., Ltd, Xi’an 710065, ChinaHuman Resource Department, Xi’an Shiyou University, Xi’an 710065, ChinaHighway Academy, Chang’an University, Xi’an 710064, ChinaHighway Academy, Chang’an University, Xi’an 710064, ChinaHighway Academy, Chang’an University, Xi’an 710064, ChinaCockrell School of Engineering, University of Texas at Austin, Austin, TX 78712, USAThe impact of work zones on traffic is a common problem encountered in traffic management. The reconstruction of roads is inevitable, and it is necessary and urgent to reduce the impact of the work zone on the operation of traffic. There are many existing research results on the influence of highway work zones, including management strategies, traffic flow control strategies, and various corresponding model theories. There are also many research results on the impacts of urban road and subway construction on traffic operation, including construction efficiency, economic impact, and travel matrix. However, there are few studies concerning the choice of work zone location, and most previous studies have assumed that the work zone choice was scientific and reasonable. Therefore, it is reasonable to choose the location of the work zone and to assess whether there is room for improvement in the road form of the work zone, but this remains a research gap. Therefore, we studied a seven-lane main road T-intersection in Xi’an, China, and investigated a work zone located at this intersection that caused a road offset, leading to the non-aligned flow of main traffic. We designed two road improvement schemes and multiple transition schemes, used VISSIM software to evaluate the traffic operation of the two schemes, and used the entropy method to choose the suitability of the two schemes under different conditions. According to the results, in the best case, the driving time, delay, and number of stops are reduced by 44%, 66%, and 92%.https://www.mdpi.com/2071-1050/12/14/5494non-aligned intersectiontraffic conflictVISSIMwork zonechannelization
collection DOAJ
language English
format Article
sources DOAJ
author Yang Shao
Zhongbin Luo
Huan Wu
Xueyan Han
Binghong Pan
Shangru Liu
Christian G. Claudel
spellingShingle Yang Shao
Zhongbin Luo
Huan Wu
Xueyan Han
Binghong Pan
Shangru Liu
Christian G. Claudel
Evaluation of Two Improved Schemes at Non-Aligned Intersections Affected by a Work Zone with an Entropy Method
Sustainability
non-aligned intersection
traffic conflict
VISSIM
work zone
channelization
author_facet Yang Shao
Zhongbin Luo
Huan Wu
Xueyan Han
Binghong Pan
Shangru Liu
Christian G. Claudel
author_sort Yang Shao
title Evaluation of Two Improved Schemes at Non-Aligned Intersections Affected by a Work Zone with an Entropy Method
title_short Evaluation of Two Improved Schemes at Non-Aligned Intersections Affected by a Work Zone with an Entropy Method
title_full Evaluation of Two Improved Schemes at Non-Aligned Intersections Affected by a Work Zone with an Entropy Method
title_fullStr Evaluation of Two Improved Schemes at Non-Aligned Intersections Affected by a Work Zone with an Entropy Method
title_full_unstemmed Evaluation of Two Improved Schemes at Non-Aligned Intersections Affected by a Work Zone with an Entropy Method
title_sort evaluation of two improved schemes at non-aligned intersections affected by a work zone with an entropy method
publisher MDPI AG
series Sustainability
issn 2071-1050
publishDate 2020-07-01
description The impact of work zones on traffic is a common problem encountered in traffic management. The reconstruction of roads is inevitable, and it is necessary and urgent to reduce the impact of the work zone on the operation of traffic. There are many existing research results on the influence of highway work zones, including management strategies, traffic flow control strategies, and various corresponding model theories. There are also many research results on the impacts of urban road and subway construction on traffic operation, including construction efficiency, economic impact, and travel matrix. However, there are few studies concerning the choice of work zone location, and most previous studies have assumed that the work zone choice was scientific and reasonable. Therefore, it is reasonable to choose the location of the work zone and to assess whether there is room for improvement in the road form of the work zone, but this remains a research gap. Therefore, we studied a seven-lane main road T-intersection in Xi’an, China, and investigated a work zone located at this intersection that caused a road offset, leading to the non-aligned flow of main traffic. We designed two road improvement schemes and multiple transition schemes, used VISSIM software to evaluate the traffic operation of the two schemes, and used the entropy method to choose the suitability of the two schemes under different conditions. According to the results, in the best case, the driving time, delay, and number of stops are reduced by 44%, 66%, and 92%.
topic non-aligned intersection
traffic conflict
VISSIM
work zone
channelization
url https://www.mdpi.com/2071-1050/12/14/5494
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