magazinelogo

Engineering Advances

ISSN Online: 2768-7961 CODEN: EANDDL
Frequency: quarterly Email: ea@hillpublisher.com
Total View: 1210415 Downloads: 267415 Citations: 153 (From Dimensions)
ArticleOpen Access http://dx.doi.org/10.26855/ea.2023.06.010

Research on Traffic Congestion Management Strategies of Primary and Secondary Schools in Cities of China

Yitong Zhao

1Lecturer, Jilin Railway Technology College, Jilin, Jilin Province, China.

2Phd student of Woosong University, Daejeon, South Korea.

*Corresponding author: Yitong Zhao

Published: July 26, 2023

Abstract

In recent years, with the substantial increase of car ownership in Chinese cities and the widespread popularization of family cars, parents of primary and secondary schools generally use "car-to-car" to send students to and from school. As a result, the traffic congestion around the campus in the morning and evening peak hours is particularly serious, which has become one of the key problems urgently to be solved in the urban traffic congestion countermeasure system. Based on China's overall traffic development and the actual situation of traffic congestion in primary and secondary schools, this paper is committed to building a primary and secondary school traffic management model with "traffic management department" and "school" as "Double agents", and puts forward a feasible scheme to solve the traffic congestion in urban primary and secondary schools in China, breaking through the problems such as the long period, high difficulty and high cost of the implementation of the previous theoretical achievements.

Keyword

Double agents, traffic congestion, primary and secondary schools, China

References

[1] Lu Huapu, Zhang Yongbo, Wang Fang. Research on traffic congestion countermeasure and school road system planning and design around primary and secondary schools [J]. Urban Development Studies, 2014.

[2] Qiu Zhi, Chen Junfeng, Guo Jianfeng, Qishan Mountain. The Preliminary Research on the Design of Underground Distribution Space in Primary and Secondary Schools based on "Pick-up Demand" [J]. Architecture and Culture, 2021(9).

[3] Chen Yuefei, Zheng Haonan, Lu Wei, Wang Hongjing. Discussion on the traffic design of underground parking lot and transportation system for primary and secondary schools [J]. Traffic & Transportation, Jan. 2023, Volume 39 No.1 (Serial No.225).

[4] Chen Jing. Characteristic Analysis Of Traffic Flow On The Roadway Of An Elementary Or A Middle School's Gate During Going To School And School Departing School Based On CAM [D]. The Master of Engineering Degree of Communication and Transportation Engineering, Hebei University of Technology.

[5] Wang Yan. Walking -- Research on Countermeasures of Traffic congestion around primary schools [A]. Academic Committee of Urban Traffic Planning of China Urban Planning Society.

[6] Pugachev Igor, Kulikov Yrii, Cheglov Valentin. Features of traffic organization and traffic safety in cities [J]. Transportation Research Procedia, 2020, 50:500-506.

[7] Xiaomei Zhao, Ziyou Gao. A Control Method for Congested Traffic Induced by Bottlenecks in the Coupled Map Car-following Model [J]. Physical A, Statistical Mechanics and its Applications, 2006, 366: 513-522.

[8] Li Maosheng, Li Jinshu, Pan Feng. Primary and Secondary School Optimization Design of Roadside Parking Space near Campus [J]. Traffic Engineering, 2018, 18 (04):6-11.

Copyright

© 2023 by the author(s).
This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution-NonCommercial-NoDerivatives (CC BY-NC-ND) license, which permits non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited and is not modified or adapted.
https://creativecommons.org/licenses/by-nc-nd/4.0/

How to cite this paper

Research on Traffic Congestion Management Strategies of Primary and Secondary Schools in Cities of China

How to cite this paper: Yitong Zhao. (2023). Research on Traffic Congestion Management Strategies of Primary and Secondary Schools in Cities of China. Engineering Advances3(3), 205-209.

DOI: http://dx.doi.org/10.26855/ea.2023.06.010