Urban mobility resilience under heat extremes: Evidence from bike-sharing travel in New York

被引:10
作者
Li, Chaosu [1 ,2 ]
Chen, Guiyu [1 ]
Wang, Sicheng [3 ]
机构
[1] Hong Kong Univ Sci & Technol Guangzhou, Urban Governance & Design Thrust, Guangzhou, Peoples R China
[2] Hong Kong Univ Sci & Technol, Div Publ Policy, Hong Kong, Peoples R China
[3] Univ South Carolina, Dept Geog, Columbia, SC USA
关键词
Urban resilience; Active travel; Climate change; Extreme heat; Land use; NON-MOTORIZED TRAVEL; BUILT ENVIRONMENT; WEATHER; IMPACT; HETEROGENEITY; TRANSPORT; BICYCLE; CHOICE; USAGE;
D O I
10.1016/j.tbs.2024.100821
中图分类号
U [交通运输];
学科分类号
08 ; 0823 ;
摘要
Enhancing the resilience of urban non-motorized mobility amid rising temperatures is crucial, yet there is a lack of empirical evidence in this field. This study examines the urban mobility resilience under extreme heat events, focusing on New York City's bike-sharing system. Utilizing the clustering method and spatial probit regression, we explore the spatial-temporal variations in the resilience of bike-sharing usage during heat extremes, and further identify key factors that contribute to the resilience of bike-sharing travel. Results show an increase in evening bike-sharing as a compensatory response to decreased daytime usage due to extreme heat, and highlight the temporal heterogeneity in bike-sharing travel resilience to extreme heat events. The regression analysis further reveals land use/land cover characteristics and income level significantly impact bike-sharing resilience, with notable variations throughout the day. These findings contribute to understanding the critical relationship between urban mobility and climate resilience, offering novel insights for urban planners and policymakers to enhance urban transportation resilience in the face of climate change.
引用
收藏
页数:9
相关论文
共 54 条
[21]  
Koppen W., 1900, Geographische Zeitschrift, V11, P593
[22]   World map of the Koppen-Geiger climate classification updated [J].
Kottek, Markus ;
Grieser, Jorgen ;
Beck, Christoph ;
Rudolf, Bruno ;
Rubel, Franz .
METEOROLOGISCHE ZEITSCHRIFT, 2006, 15 (03) :259-263
[23]   Understanding intra-urban human mobility through an exploratory spatiotemporal analysis of bike-sharing trajectories [J].
Li, Wenwen ;
Wang, Shaohua ;
Zhang, Xiaoyi ;
Jia, Qingren ;
Tian, Yuanyuan .
INTERNATIONAL JOURNAL OF GEOGRAPHICAL INFORMATION SCIENCE, 2020, 34 (12) :2451-2474
[24]   Built environment and public bike usage for metro access: A comparison of neighborhoods in Beijing, Taipei, and Tokyo [J].
Lin, Jen-Jia ;
Zhao, Pengjun ;
Takada, Kazuyuki ;
Li, Shengxiao ;
Yai, Tetsuo ;
Chen, Chi-Hao .
TRANSPORTATION RESEARCH PART D-TRANSPORT AND ENVIRONMENT, 2018, 63 :209-221
[25]   Quantifying the impact of weather on ride-hailing ridership: Evidence from Haikou, China [J].
Liu, Shan ;
Jiang, Hai ;
Chen, Zhe .
TRAVEL BEHAVIOUR AND SOCIETY, 2021, 24 :257-269
[26]   Associations between overhead-view and eye-level urban greenness and cycling behaviors [J].
Lu, Yi ;
Yang, Yiyang ;
Sun, Guibo ;
Gou, Zhonghua .
CITIES, 2019, 88 :10-18
[27]  
Menne Matthew J, 2012, NCEI
[28]   Built environmental correlates of cycling for transport across Europe [J].
Mertens, Lieze ;
Compernolle, Sofie ;
Deforche, Benedicte ;
Mackenbach, Joreintje D. ;
Lakerveld, Jeroen ;
Brug, Johannes ;
Roda, Celina ;
Feuillet, Thierry ;
Oppert, Jean-Michel ;
Glonti, Ketevan ;
Rutter, Harry ;
Bardos, Helga ;
De Bourdeaudhuij, Ilse ;
Van Dyck, Delfien .
HEALTH & PLACE, 2017, 44 :35-42
[29]  
MTA General Transit Feed Specification Static Data, 2023, MTA General Transit Feed Specification (GTFS) Static Data, 2022
[30]   Facilitators and barriers to winter cycling: Case study of a downtown university in Toronto, Canada [J].
Nahal, Tamara ;
Mitra, Raktim .
JOURNAL OF TRANSPORT & HEALTH, 2018, 10 :262-271