地下空间开发利用

短时疾增客流下的轨道交通换乘空间应变研究

  • 褚冬竹 ,
  • 董志凌
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  • 1.重庆大学 建筑城规学院,重庆 400030;
    2.重庆市设计院有限公司,重庆 400015
褚冬竹(1975—),男,四川绵竹人,博士,教授、博士生导师,主要从事城市设计、城市交通与公共空间一体化、可持续建筑设计领域的研究。E-mail:c.dz@vip.163.com
董志凌(1997—),男,四川宜宾人,硕士生,主要从事城市轨道交通、交通建筑设计领域的研究。E-mail:535418344@qq.com

收稿日期: 2024-03-16

  网络出版日期: 2024-10-31

基金资助

国家自然科学基金(52078070)

Research on Transformation of Urban Rail Transit Transfer Space under the Condition of Short-Term Rapid Increase Passenger Flow

  • Chu Dongzhu ,
  • Dong Zhiling
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  • 1. School of Architecture and Urban Planning, Chongqing University, Chongqing 400030, P.R. China;
    2. Chongqing Architectural Design Institute Company Limited, Chongqing 400015, P.R. China

Received date: 2024-03-16

  Online published: 2024-10-31

摘要

伴随着以通勤为目的的城市轨道公共交通使用人数的增加,高峰期轨道交通站点内出现的快速变化的、大流量的短时疾增客流使得换乘站点难以安全、稳定、有效地承载客流并满足客流换乘需要。本研究通过实地调研与借助Anylogic平台的仿真来剖析短时疾增客流的特点及其对站内空间的作用效果,将现有的预制式、组装式、折叠式等应变技术或设备作为基础,提出建筑空间层面与站内设备设施层面的分类应变思路。建立应变应用场景与应变技术及措施的对应关系,并探究空间可变在动态优化地下轨道交通站内换乘空间方面的应用。研究成果可为未来既有轨道交通站点的优化设计提供参考。

本文引用格式

褚冬竹 , 董志凌 . 短时疾增客流下的轨道交通换乘空间应变研究[J]. 地下空间与工程学报, 2024 , 20(5) : 1401 -1417 . DOI: 10.20174/j.JUSE.2024.05.01

Abstract

With the increase in the number of urban rail transit users for commuting purposes, the rapidly changing and large-scale short-term rapid increase passenger flow in rail transit stations during peak hours makes it difficult for transfer stations to safely, stably and effectively accommodate passenger flow and meet the needs of transferring. The characteristics of passenger flow and its effect on stations were analyzed through field research and simulation by Anylogic. Based on prefabricated, assembled, foldable and other transformation technologies or equipment, the spatial transformation in the field of space and facilities is proposed. The research establishes the relevance between transformation application scenarios and technologies and measures, and explores the application of space variability in dynamically optimizing the transfer space in underground rail transit stations. The results can provide reference for the optimal design of existing urban rail transit stations in the future.

参考文献

[1] 中华人民共和国住房和城乡建设部. 住房城乡建设部关于印发城市轨道沿线地区规划设计导则的通知[EB/OL].https://www.mohurd.gov.cn/gongkai/zhengce/zhengcefilelib/201512/20151210_225899.html, 2015-12-10/2024-03-16. (Ministry of Housing and Urban-Rural Development of the People's Republic of China. Notice of the Ministry of Housing and Urban-Rural Development on Issuing the Guidelines for Planning and Design of Areas along Urban Rail Transit Lines [EB/OL]. https://www.mohurd.gov.cn/gongkai/zhengce/zhengcefilelib/201512/20151210_225899.html, 2015-12-10/2024-03-16. (in Chinese))
[2] 吴祥国,张建嵩,高志刚,等.重庆主城区轨道交通客流时空特征分析[J].铁道运输与经济,2021,43(7):125-130.(Wu Xiangguo, Zhang Jiansong, Gao Zhigang, et al. Spatial-temporal characteristics of rail transit passenger flow in Chongqing's main urban area[J]. Railway Transport and Economy, 2021, 43(7): 125-130.(in Chinese))
[3] 褚冬竹,何瀚翔,王雨寒.零余空间辅助轨道交通站外客流释压策略研究[J].西部人居环境学刊,2022,37(4):122-130.(Chu Dongzhu, He Hanxiang, Wang Yuhan. Study on the strategy of reducing pressure of exterior passengers in the influenced realm around rail transit station assisted by urban fragmentary leftover space[J]. Journal of Human Settlements in West China, 2022, 37(4): 122-130.(in Chinese))
[4] 李子浩,田向亮,黎忠文,等.基于客流规律的地铁车站客流风险分析[J].清华大学学报(自然科学版),2019,59(10):854-860.(Li Zihao, Tian Xiangliang, Li Zhongwen, et al. Risk analysis of metro station passenger flow based on passenger flow patterns[J]. Journal of Tsinghua University(Science and Technology), 2019, 59(10): 854-860.(in Chinses))
[5] 卢健松,伍梦瑶,郭秋岩.短程可变建筑的自适应性[J].城市建筑,2017 (19)31-35.(Lu Jiansong, Wu Mengyao, Guo Qiuyan. Adaptation of short-term variable architecture[J]. Urbanism and Architecture, 2017 (19) 31-35.(in Chinese))
[6] Yang Juntao. Safety risk analysis and countermeasures study on regular mass passenger flow of China's urban subway[J]. Procedia Engineering, 2016, 135: 175-179.
[7] 重庆市规划和自然资源局. 2022重庆市中心城区交通发展年度报告[EB/OL]. https://ghzrzyj.cq.gov.cn/zwxx_186/tzgg/202306/P020230627583094912318.pdf, 2023-06-27/2024-03-16. (Chongqing Municipal Bureau of Planning and Natural Resources. 2022 Annual Report on Transportation Development in Central Urban area of Chongqing [EB/OL]. https://ghzrzyj.cq.gov.cn/zwxx_186/tzgg/202306/P020230627583094912318.pdf, 2023-06-27/2024-03-16. (in Chinese))
[8] 崔叙,喻冰洁,杨林川,等.城市轨道交通出行的时空特征及影响因素非线性机制——基于梯度提升决策树的成都实证[J].经济地理,2021,41(7):61-72.(Cui Xu, Yu Bingjie, Yang Linchuan, et al. Spatio-temporal characteristic and non-linear influencing factors of urban rail transit: the case of Chengdu using the gradient boosting direction tree[J]. Economic Geography, 2021, 41(7): 61-72.(in Chinese))
[9] Yu L, Cong Y, Chen K. Determination of thepeak hour ridership of metro stations in Xi'an, China using geographically-weighted regression[J]. Sustainability, 2020, 12(6):2255.
[10] 褚冬竹,魏书祥.城市公共空间人群涌现现象、机理及意义——关于高密人流区域“行为-时空-安全”关联性研究[J].建筑学报,2018 (8):40-45.(Chu Dongzhu, Wei Shuxiang. Phenomena, mechanisms and implications of gush & emergency in crowded public space in a city: a study on relationship of behavior, time-space and safety in crowded area[J]. Architectural Journal, 2018 (8): 40-45.(in Chinese))
[11] Liu T, Shan J, Liu X,et al. Departure efficiency evaluation of a comprehensive transport hub based on Wi-Fi probe data and a multilayer hybrid model[J]. PLoS One, 2022, 17(3): e0264473.
[12] 何君,雷爱国,吴翊恺,等.地铁换乘站客流滞留模型[J].交通科技与经济,2022,24(1):38-47.(He Jun, Lei Aiguo, Wu Yikai, et al. Passenger flow detention model of metro transfer station[J]. Technology & Economy in Areas of Communications, 2022, 24(1): 38-47.(in Chinese))
[13] 褚冬竹,沈方圆.城市轨道交通换乘序列空间适老对策探析[J].南方建筑,2021 (4):39-46.(Chu Dongzhu, Shen Fangyuan. Study on senior-friendly strategies for transfer sequence spaces at urban rail transit stations[J]. South Architecture, 2021 (4): 39-46.(in Chinese))
[14] 代宝乾,汪彤.地铁车站客流流动机理研究与应用[J].中国安全科学学报,2011,21(10):114-119.(Dai Baoqian, Wang Tong. Research on pedestrian flow models in subway station and its application[J]. China Safety Science Journal, 2011, 21(10): 114-119.(in Chinese))
[15] 钱堃,陈垚,毛保华.考虑换乘时间影响的城市轨道交通路径选择行为研究[J].交通运输系统工程与信息,2015,15(2):116-121.(Qian Kun, Chen Yao, Mao Baohua. Route choice behavior for urban transit considering transfer time[J]. Journal of Transportation System Engineering and Information Technology, 2015, 15(2): 116-121.(in Chinese))
[16] Song H J, Kim N H. Visual performance evaluation study of wayfinding factors in subway transfer station-focus on the Sadang Subway Station, Seoul Subway Station, Jongro 3-ga Subway Station and Gongduck Subway Station[J]. Korean Institute of Interior Design Journal, 2013, 22(4): 166-177.
[17] 夏海山,吴黎明,张纯.城市轨道交通站内换乘效率影响因素调查研究[J].地下空间与工程学报,2021,17(3):657-665.(Xia Haishan, Wu Liming, Zhang Chun. Research on influencing factors of passenger transfer efficiency in urban rail transit stations[J]. Chinese Journal of Underground Space and Engineering, 2021, 17(3): 657-665.(in Chinese))
[18] 顾宗超,陆伟,大佛俊泰.基于决策层级理论的地下行人系统时空行为研究[J].地下空间与工程学报,2022,18(增1):1-13.(Gu Zongchao, Lu Wei, Osaragi Toshihiro. Study on spatio-temporal behavior in underground pedestrian system based on choice level theory[J]. Chinese Journal of Underground Space and Engineering, 2022, 18(Supp.1): 1-13.(in Chinese))
[19] 任常兴,吴宗之,刘茂.城市公共场所人群拥挤踩踏事故分析[J].中国安全科学学报,2005 (12):102-106, 137.(Ren Changxing, Wu Zongzhi, Liu Mao. Analysis of accident due to swarm and jostlement at urban public place[J]. China Safety Science Journal, 2005 (12): 102-106, 137.(in Chinese))
[20] 卢文刚,谭喆.城市公共场所人群拥挤踩踏事故防范处置研究——以韩国梨泰院踩踏事故为例[J].中国应急救援,2023, 97(1):4-10.(Lu Wengang, Tan Zhe. Prevention and response to crowd crush and stampede in city public places: a case study of the stampede accident in South Korea[J]. China Emergency Rescue, 2023, 97(1): 4-10.(in Chinese))
[21] 朱效洁,王志海.轨道交通运营体系中车务人员标准配置研究[J].城市轨道交通研究,2009,12(7):31-35.(Zhu Xiaojie, Wang Zhihai. Research on standardized allocation of rail transit operational staff[J]. Urban Mass Transit, 2009, 12(7): 31-35.(in Chinese))
[22] 邓紫欢,胡华,胥旋.考虑时空特性的地铁车站大客流预警方法研究[J].中国安全生产科学技术,2020,16(增1):22-26.(Deng Zihuan, Hu Hua, Xu Xuan. Research on early warning method of large passenger flow in subway station considering spatial-temporal characteristic[J]. Journal of Safety Science and Technology, 2020, 16(Supp.1): 22-26.(in Chinese))
[23] 耿亚宁,胡华,孟艳丽,等.基于视频识别的地铁站突发大客流智能预警方法研究[J].智能计算机与应用,2022,12(2):170-173, 177.(Geng Yaning, Hu Hua, Meng Yanli, et al. Research on intelligent warning method of sudden large passenger flow in subway station based on video recognition[J]. Intelligent Computer and Applications, 2022,12(2):170-173, 177. (in Chinese))
[24] 中华人民共和国住房和城乡建设部. 地铁设计规范(附条文说明)(GB 50157—2013)[S]. 北京:中国建筑工业出版社,2014. (Ministry of Housing and Urban-Rural Development of the People's Republic of China. Code for design of metro[S]. Beijing: China Architecture & Building Press, 2014. (in Chinese))
[25] 程崇国,郭军,胡居义.大型地下车站洞室结构设计施工技术[J].现代隧道技术,2012,49(1):111-118.(Cheng Chongguo, Guo Jun, Hu Juyi. Design and construction technology for a large underground station structure[J]. Modern Tunnelling Technology, 2012, 49(1): 111-118.(in Chinese))
[26] 杜宇.运营地铁几种土建相关改扩建工程研究[J].隧道建设(中英文),2020,40(7):1017-1028.(Du Yu. Research on several rehabilitation and expansion schemes related to civil works for operating metro stations[J]. Tunnel Construction, 2020, 40(7): 1017-1028.(in Chinese))
[27] Crociani L, Vizzari G, Yanagisawa D, et al. Route choice in pedestrian simulation: design and evaluation of a model based on empirical observations[J]. Intelligenza Artificiale, 2016, 10: 163-182.
[28] Li H L, Zhang J, Xia L, et al. Comparing the route-choice behavior of pedestrians around obstacles in a virtual experiment and a field study[J]. Transportation Research Part C: Emerging Technologies,2019, 107: 120-136.
[29] 武鑫森,岳昊,刘秋梅,等.步行通道内行人流拉链现象的生成机理与仿真研究[J].物理学报,2021,70(6):337-350.(Wu Xinsen, Yue Hao, Liu Qiumei, et al. Generation mechanism and simulation research of zipper phenomenon of pedestrian flow in corridor[J]. Acta Physica Sinica, 2021, 70(6): 337-350.(in Chinese))
[30] Zhang H, Xu J, Jia L M, et al. Research on walking efficiency of passengers around corner of subway station[J]. Physica A: Statistical Mechanics and Its Applications,2021, 573:125933.
[31] 袁江,彭磊.广州地铁运营客流分布特征研究与应用[J].都市快轨交通,2018,31(4):63-68.(Yuan Jiang, Peng Lei. Research and application of passenger flow distribution characteristics of the Guangzhou Metro[J]. Urban Rapid Rail Transit, 2018, 31(4): 63-68.(in Chinese))
[32] 郭福强,叶霞飞.城市轨道交通站台宽度计算方法研究[J].城市轨道交通研究,2019,22(8):108-112, 117.(Guo Fuqiang, Ye Xiafei. Study on the calculation method of urban rail transit platform width[J]. Urban Mass Transit, 2019, 22(8): 108-112, 117.(in Chinese))
[33] 中华人民共和国住房和城乡建设部. 城市轨道交通工程项目规范(GB 55033—2022)[S]. 北京:中国建筑工业出版社,2023. (Ministry of Housing and Urban-Rural Development of the People's Republic of China. Project code for engineering of urban rail transit[S]. Beijing: China Architecture & Building Press, 2013. (in Chinese))
[34] 中华人民共和国交通运输部. 交通运输部关于印发《城市轨道交通客运组织与服务管理办法》的通知[EB/OL]. https://xxgk.mot.gov.cn/2020/xzgfxwj/202303/t20230317_3776349.html, 2019-10-16/2024-03-16. (Ministry of Transport of the People's Republic of China. Notice of the Ministry of Transport on the Issuance of the Measures for the Administration of the Organization and Service of Urban Rail Transit Passenger Transport [EB/OL]. https://xxgk.mot.gov.cn/2020/xzgfxwj/202303/t20230317_3776349.html, 2019-10-16/2024-03-16. (in Chinese))
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