面向气候风险的长三角中心区城市韧性评估及时空演变

Assessment of Urban Resilience and Spatial and Temporal Evolution in the Yangtze River Delta Region for Climate Risks

李 航
浙江农林大学风景园林与建筑学院 硕士研究生

施益军(通信作者)
浙江农林大学风景园林与建筑学院 副教授,硕士生导师,博士

徐丽华
浙江农林大学风景园林与建筑学院 党委书记,教授,博士生导师,博士

摘要: 全球气候变化带来更强的气候风险,对城市韧性评价能够找出城市发展中应对风险的薄弱环节并提出改进的意见。从 气候风险视角出发分析城市在面对多种灾害风险下的韧性变化,从承灾体脆弱性、孕灾环境敏感性、致灾因子危险性和 防灾减灾能力4个维度构建气候风险下的韧性评估体系,提供理论基础。通过构建基于投影寻踪的遗传算法模型和耦合 激励评价模型进行非线性评估,对长三角中心区2010—2021年间的相关指标和综合韧性进行评价,分析影响城市韧性变 化的主要影响因素,识别其分布的时空演变特征。最后根据结果提出长三角中心区城市韧性提升的建议,为相关研究提 供借鉴。

Abstract: Global climate change brings stronger climate risks, and the assessment of urban resilience can identify weak links in urban development and propose improvements. This paper analyzes the resilience changes of cities in the face of multiple disaster risks from the perspective of climate risk, constructs a resilience assessment system under climate risk from the four dimensions of vulnerability of disaster-bearing bodies, sensitivity of hazard-inducing environment, risk of disaster factors and disaster prevention and mitigation capacity, provides a theoretical basis, and evaluates the indicators and comprehensive resilience of the central area of the Yangtze River Delta from 2010 to 2021 by constructing a genetic algorithm model and a coupled incentive evaluation model based on projection tracing for nonlinear evaluation. The main influencing factors affecting the change in urban resilience are analyzed, and the temporal and spatial evolution characteristics of their distribution are identified. Finally, according to the results, suggestions on resilience improvement are put forward, which provides references for the research and construction of resilience in the central area of the Yangtze River Delta.

关键词:气候风险;时空演变;城市韧性;耦合激励法;非线性评估

Keyword: climatic risk; spatial and temporal evolution; urban resilience; coupling excitation method; nonlinear evaluation

中图分类号:TU984

文献标识码: A

资金资助

浙江省 浙江省社科规划课题重点项目 23NDJC026Z

北京大学 北京大学深圳研究生院委托课题 H20230586

WALKER B, GUNDERSON L, KINZIG A, et al. A handful of heuristics and some propositions for understanding resilience in social-ecological systems[J]. Ecology and Society, 2006, 11(1): 13.
HOLLING C S. Resilience and stability of ecological systems[J]. Annual Review of Ecology and Systematics, 1973, 4(1): 1-23.
李红波. 韧性理论视角下乡村聚落研究启示[J].地理科学,2020,40(4):556-562.
LI Hongbo. Rural settlements research from the perspective of resilience theory[J]. Scientia Geographica Sinica, 2020, 40(4): 556-562.
陈长坤,陈以琴,施波,等. 雨洪灾害情境下城市韧性评估模型[J]. 中国安全科学学报,2018,28(4):1-6.
CHEN Changkun, CHEN Yiqin, SHI Bo, et al. An model for evaluating urban resilience to rainstorm flood disasters[J]. China Safety Science Journal,2018, 28(4): 1-6.
李亚,翟国方,顾福妹. 城市基础设施韧性的定量评估方法研究综述[J]. 城市发展研究,2016,23(6):113-122.
LI Ya, ZHAI Guofang, GU Fumei. Review on methods of quantification of urban infrastructure resilience[J]. Urban Development Studies, 2016,23(6): 113-122.
杨春岳,彭飞,隋丽丽. 中国边境地区的经济韧性特征及影响因素分析[J]. 生产力研究,2022(12):43-48.
YANG Chunyue, PENG Fei, SUI Lili. Analysis of economic resilience characteristics and influencing factors in China's border areas[J]. Productivity Research, 2022(12): 43-48.
彭翀,林樱子,顾朝林. 长江中游城市网络结构韧性评估及其优化策略[J]. 地理研究,2018,37(6):1193-1207.
PENG Chong, LIN Yingzi, GU Chaolin. Evaluation and optimization strategy of city network structural resilience in the middle reaches of Yangtze River[J]. Geographical Research, 2018, 37(6): 1193-1207.
白立敏,修春亮,冯兴华,等. 中国城市韧性综合评估及其时空分异特征[J]. 世界地理研究,2019,28(6):77-87.
BAI Limin, XIU Chunliang, FENG Xinghua, et al.A comprehensive assessment of urban resilience and its spatial differentiation in China[J]. World Regional Studies, 2019, 28(6): 77-87.
王少剑,崔子恬,林靖杰,等. 珠三角地区城镇化与生态韧性的耦合协调研究[J]. 地理学报,2021,76(4):973-991.
WANG Shaojian, CUI Zitian, LIN Jingjie, et al. Coupling relationship between urbanization and ecological resilience in the Pearl River Delta[J]. Acta Geographica Sinica, 2021, 76(4): 973-991.
王彩丽,闫绪娴. 成渝城市群城市韧性时空格局演变及障碍因子识别[J]. 重庆大学学报(社会科学版),2023(3):21-33.
WANG Caili, YAN Xuxian. Spatiotemporal revolution and obstacles identification of urban resilience in Chengdu-Chongqing urban
agglomeration[J]. Journal of Chongqing University (Social Science Edition), 2023(3): 21-33.
孙阳,张落成,姚士谋. 基于社会生态系统视角的长三角地级城市韧性度评价[J]. 中国人口•资源与环境,2017,27(8):151-158.
SUN Yang, ZHANG Luocheng, YAO Shimou. Evaluating resilience of prefecture cities in the Yangtze River Delta region[J]. China Population, Resources and Environment, 2017, 27(8): 151-158.
陈浩然,彭翀,林樱子. 应对突发公共卫生事件的社区韧性评估与差异化提升策略——基于武汉市4个新旧社区的考察[J]. 上海城市规划,
2023(1):25-32.
CHEN Haoran, PENG Chong, LIN Yingzi. Community resilience assessment and differentiated improvement strategies in response to public health emergencies: a case study of four old or new communities in Wuhan[J]. Shanghai Urban Planning Review, 2023(1): 25-32.
修春亮,魏冶,王绮. 基于“规模—密度—形态”的大连市城市韧性评估[J]. 地理学报,2018,73(12):2315-2328.
XIU Chunliang, WEI Ye, WANG Qi. Evaluation of urban resilience of Dalian City based on the perspective of "size-density-morphology"[J]. Acta Geographica Sinica, 2018, 73(12): 2315-2328.
张明斗,冯晓青. 中国城市韧性度综合评价[J].城市问题,2018(10):27-36.
ZHANG Mingdou, FENG Xiaoqing. Compre-hensive evaluation of urban resilience in China[J].Urban Problems, 2018(10): 27-36.
黄亚江,李书全,项思思. 基于AHP-PSO模糊组合赋权法的地铁火灾安全韧性评估[J]. 灾害学,2021,36(3):15-20.
HUANG Yajiang, LI Shuquan, XIANG Sisi. Evaluation of subway fire safety resilience based on AHP-PSO fuzzy combination weighting method[J]. Journal of Catastrophology, 2021, 36(3): 15-20.
李 寻 昌,张文勇,杨威,等. 基 于 直 觉 模 糊 集TOPSIS的新冠疫情防控韧性评估[J]. 安全与环境学报,2021,21(4):1652-1661.
LI Xunchang, ZHANG Wenyong, YANG Wei, et al. Resilience assessment of COVID-19 prevention and control based on intuitive fuzzy set TOPSIS[J]. Journal of Safety and Environment, 2021, 21(4): 1652-1661.
江斯达,占文凤,杨俊,等. 局地气候分区框架下城市热岛时空分异特征研究进展[J]. 地理学报,2020,75(9):1860-1878.
JIANG Sida, ZHAN Wenfeng, YANG Jun, et al. Urban heat island studies based on local climate zones: a systematic overview[J]. Acta Geographica Sinica, 2020, 75(9): 1860-1878.
谢五三,吴蓉,丁小俊. 基于FloodArea模型的城市内涝灾害风险评估与预警[J]. 长江流域资源与环境,2018,27(12):2848-2855.
XIE Wusan, WU Rong, DING Xiaojun. Risk assessment and early warning of urban waterlogging based on FloodArea model[J]. Resources and Environment in the Yangtze Basin, 2018, 27(12): 2848-2855.
同丽嘎,李雪铭,斯琴,等. 高温热浪暴露风险评价——以内蒙古包头市为例[J]. 干旱区地理,2017,40(2):284-292.
TONG Liga, LI Xueming, SI Qin, et al. Risk assessment of population exposure to heat wave: a case of Baotou City, Inner Mongolia, China[J]. Arid Land Geography, 2017, 40(2): 284-292.
陈天,刘君男. 粤港澳大湾区高温灾害韧性评估与提升策略[J]. 上海城市规划,2023(1):9-17.
CHEN Tian, LIU Junnan. High-temperature disaster resilience evaluation and promotion in Guangdong Hong Kong-Macao Greater Bay Area[J]. Shanghai Urban Planning Review, 2023(1): 9-17.
王鹏,杨柯,雷杰,等. 泸定6.8级地震公路地质灾害链效应分析[J]. 灾害学,2023(2):121-126.
WANG Peng, YANG Ke, LEI Jie, et al. Analysis of the chain effect of highway geological disasters in Luding M6.8 Earthquake[J]. Journal of Catastrophology, 2023(2): 121-126.
史培军. 三论灾害研究的理论与实践[J]. 自然灾害学报,2009,18(5):1-9.
SHI Peijun. Theory on disaster science and disaster dynamics[J]. Journal of Natural Disasters,2009, 18(5): 1-9.
李思宇,梁达,韦燕芳,等. 基于贝叶斯网络的干旱—森林火灾灾害链定量建模研究[J]. 自然灾害学报,2023,32(1):38-46.
LI Siyu, LIANG Da, WEI Yanfang, et al. Quantitative modeling of drought-forest fire disaster chain based on the Bayesian network[J].
Journal of Natural Disasters, 2023, 32(1): 38-46.
王紫薇,蔡红艳,段兆轩,等. “一带一路”沿线地区自然灾害危险性与灾损空间格局研究[J].地理研究,2022,41(7):2016-2029.
WANG Ziwei, CAI Hongyan, DUAN Zhaoxuan, et al. Spatial pattern of natural disaster hazard and loss in the Belt and Road region[J]. Geographical Research, 2022, 41(7): 2016-2029.
李云飞,许才顺,池招招,等. 基于多灾害耦合叠加模型的区域地震风险评估[J]. 安全与环境学报,2022,22(3):1477-1485.
LI Yunfei, XU Caishun, CHI Zhaozhao, et al. Risk evaluation of regional earthquake based on multi-hazard coupling superposition model[J]. Journal of Safety and Environment, 2022, 22(3): 1477-1485.
冷红,李泓锐,袁青. 气候变化背景下空间健康风险的评估方法及韧性规划应对[J]. 上海城市规划,2022(6):16-23.
LENG Hong, LI Hongrui, YUAN Qing. Assessment methods and resilience planning response for spatial health risks[J]. Shanghai Urban Planning Review, 2022(6): 16-23.
郑颖生,王墨,李建军,等. 城市高温风险评估与气候适应性规划策略——以亚热带高密度城市深圳为例[J]. 规划师,2021,37(14):13-19.
ZHENG Yingsheng, WANG Mo, LI Jianjun, et al.Risk assessment of high temperature and adaptive planning strategies: Shenzhen example[J].Planners, 2021, 37(14): 13-19.
马冰然,曾逸凡,曾维华,等. 气候变化背景下城市应对极端降水的适应性方案研究——以西宁海绵城市试点区为例[J]. 环境科学学报,2019,39(4):1361-1370.
MA Bingran, ZENG Yifan, ZENG Weihua, et al. Adapt to urban extreme precipitation under climate change: a pilot scale study in Xining, China[J]. Acta Scientiae Circumstantiae, 2019, 39(4): 1361-1370.
王威,夏陈红,马东辉,等. 耦合激励机制下多灾种综合风险评估方法[J]. 中国安全科学学报,2019,29(3):161-167.
WANG Wei, XIA Chenhong, MA Donghui, et al. Multi-hazard comprehensive risk assessment based on coupling incentive mechanism[J]. China Safety Science Journal, 2019, 29(3): 161-167.
裴孝东,吴静,薛俊波,等. 中国城市气候变化适应性评价[J]. 城市发展研究,2022,29(3):39-46.
PEI Xiaodong, WU Jing, XUE Junbo, et al. Assessment on cities' adaptation to climate change in China[J]. Urban Development Studies, 2022,29(3): 39-46.
任国玉,任玉玉,吴萍,等. 与“洪”共存——中国主要城市区域气候变化风险评估及未来情景预测[R]. 2021.
REN Guoyu, REN Yuyu, WU Ping, et al. Coexistence with "Hong": climate change risk assessment and future scenario prediction in major cities in China[R]. 2021.
杨航. 灾害应对过程的社会韧性研究——基于滇西北金沙江上游灾害应对的考察[J]. 灾害学,2023(3):1-8.
YANG Hang. Research on social resilience in disaster response process—investigation on disaster response in the upper reaches of Jinsha River in Northwest Yunnan[J]. Journal of Catastrophology, 2023(3): 1-8.
刘新立,史培军. 空间不完备信息条件下的区域
自然灾害风险评估——实例部分[J]. 自然灾害
学报,2000(1):26-32.
LIU Xinli, SHI Peijun. The risk assessment of regional natural disaster under the condition of spatial incomplete information[J]. Journal of Natural Disasters, 2000(1): 26-32.
侯丽丽,都瓦拉,银山,等. 基于牧户尺度的草原火灾风险评价——以东乌旗汗敖包嘎查为例[J].生态学报,2022,42(3):1059-1070.
HOU Lili, DU Wala, YIN Shan, et al. Grassland fire risk assessment based on herder scale: taking Khan Obo Village, eastern uzhumugin Banner as an example[J]. Acta Ecologica Sinica, 2022, 42(3): 1059-1070.
李伟伟,易平涛,郭亚军. 有序分位加权集结算子及在激励评价中的应用[J]. 系统工程理论与实践,2017,37(2):452-459.
LI Weiwei, YI Pingtao, GUO Yajun. Ordered fractile weighted aggregation operators and the application in incentive evaluation[J]. Systems Engineering-Theory & Practice, 2017, 37(2): 452-459.
黄崇福. 综合风险评估的一个基本模式[J]. 应用基础与工程科学学报,2008(3):371-381.
HUANG Chongfu. A basic model for assessing integrated risk[J]. Journal of Basic Science and Engineering, 2008(3): 371-381.
钱龙霞,王红瑞,张韧,等. 基于降维思想的水资源脆弱性非线性评估模型及其应用[J]. 工程科学与技术,2017,49(3):60-67.
QIAN Longxia, WANG Hongrui, ZHANG Ren, et al. Nonlinear assessment model for water resources vulnerability analysis based on dimension reduction method and its applications[J]. Advanced Engineering Sciences, 2017, 49(3): 60-67.

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