Towards the effect of climate change in structural loads of urban infrastructure: A review

被引:31
作者
Mishra, Varun [1 ]
Sadhu, Ayan [2 ]
机构
[1] Indian Inst Technol Roorkee, Dept Civil Engn, Roorkee, India
[2] Western Univ, Dept Civil & Environm Engn, London, ON, Canada
关键词
Climate change; Structural loads; Structural design; Snow loads; Wind loads; Temperature and precipitation extremes; Climate models; Structural adaptation; EXTREME WIND; PRECIPITATION EXTREMES; CHANGE PROJECTIONS; PAVEMENT DESIGN; CHANGE IMPACTS; SNOW LOAD; PERFORMANCE; RISK; ADAPTATION; EUROPE;
D O I
10.1016/j.scs.2022.104352
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Climate change is one of the pressing problems of today's world, with its unequivocal effects. The modern urban infrastructure has also borne the brunt of the devastating impact of changing climate. The increasing number of structural failures under extreme environmental loads has been reported throughout the globe, with state-of-the-art design and maintenance practices proved to be insufficient under the dynamically changing climate, demanding more resilient design standards and maintenance procedures. This review article synthesizes the research findings aimed at building climate-resilient civil infrastructure considering the design and service phase of various structures, the durability of structural components and materials, and adaptation and mitigation practices. The paper performs a systematic literature review of the effect of climate change on various structural loads, including wind, snow, temperature, and multi-hazard, in various urban infrastructures from different regions of the globe. The findings in this review can serve as valuable information to suitably revisit and improve design and maintenance practices and build more climate-resilient urban infrastructure.
引用
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页数:16
相关论文
共 128 条
[11]  
Black Richard., 2008, Demographics and Climate Change: Future Trends and their Policy Implications for Migration
[12]  
Chai G., 2012, 25 ARRB CONFERENCESH
[13]   Resilient pavement design with consideration of flooding effect caused by climate change [J].
Chan, Kin-ming ;
Wang, Yuhong .
TRANSPORTMETRICA A-TRANSPORT SCIENCE, 2020, 16 (03) :1136-1155
[14]   Probabilistic remaining life estimation for deteriorating steel marine infrastructure under global warming and nutrient pollution [J].
Chaves, Igor A. ;
Melchers, Robert E. ;
Peng, Lizhengli ;
Stewart, Mark G. .
OCEAN ENGINEERING, 2016, 126 :129-137
[15]   Possible Impacts of Climate Change on Wind Gusts under Downscaled Future Climate Conditions: Updated for Canada [J].
Cheng, Chad Shouquan ;
Lopes, Edwina ;
Fu, Chao ;
Huang, Zhiyong .
JOURNAL OF CLIMATE, 2014, 27 (03) :1255-1270
[16]   Non-stationary extreme value analysis in a changing climate [J].
Cheng, Linyin ;
AghaKouchak, Amir ;
Gilleland, Eric ;
Katz, Richard W. .
CLIMATIC CHANGE, 2014, 127 (02) :353-369
[17]   Probabilistic flutter analysis of a long-span bridge in typhoon-prone regions considering climate change and structural deterioration [J].
Chu, Xiaolei ;
Cui, Wei ;
Zhao, Lin ;
Cao, Shuyang ;
Ge, Yaojun .
JOURNAL OF WIND ENGINEERING AND INDUSTRIAL AERODYNAMICS, 2021, 215
[18]  
Croce P., 2016, SUPPORT POLICIES STA
[19]  
Croce P., 2017, EFFECT CLIMATE CHANG, P231
[20]   Extreme Ground Snow Loads in Europe from 1951 to 2100 [J].
Croce, Pietro ;
Formichi, Paolo ;
Landi, Filippo .
CLIMATE, 2021, 9 (09)