利用地理信息系统和遥感技术评估卡赫拉曼马拉什关键基础设施的地震脆弱性

IF 2.2 4区 地球科学 Q3 ENVIRONMENTAL SCIENCES
Mehmet Cetin, Ceren Ozcan Tatar, Yalcin Ozturk, Balca Agacsapan, Zahra Khoda Karimi, Mehtap Ozenen Kavlak, Muzeyyen Anil Senyel Kurkcuoglu, Ahmet Dabanli, Alper Cabuk, Tuncay Kucukpehlivan, Saye Nihan Cabuk
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引用次数: 0

摘要

本研究采用先进技术,特别是遥感(RS)和地理信息系统(GIS),调查地震对卡赫拉曼马拉什关键基础设施的影响。关键基础设施包括对国家安全、经济稳定和公众福祉至关重要的物理和数字系统。这些相互依存的系统(包括能源、交通、通信、供水、医疗保健和应急服务)的中断或故障会对地区安全和社会需求产生深远影响。在救灾过程中保护关键基础设施并确定其优先次序,对于最大限度地减少损失和加快恢复至关重要。本研究采用创新方法,将建筑物损坏评估结果与兴趣点(POI)数据相结合,迅速评估地震对卡赫拉曼马拉什关键基础设施的影响。对 15 个兴趣点类别中 57 个关键基础设施的实时地震脆弱性进行了分析。结果表明,金融机构和商业区是受损最严重的 POI,而集结点的受损程度则最小。历史设施、医疗设施、政府机构、道路设施和体育设施也受到不同程度的损坏。总体而言,34% 的关键基础设施结构受到了损坏。所提出的方法提供了一种实用的方法,可在基于灾难的评估过程中快速识别受损的关键基础设施 POI,填补了研究空白。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Assessing Earthquake-Induced Vulnerability of Critical Infrastructure in Kahramanmaraş Using Geographic Information Systems and Remote Sensing Technologies

Assessing Earthquake-Induced Vulnerability of Critical Infrastructure in Kahramanmaraş Using Geographic Information Systems and Remote Sensing Technologies

This study employs advanced technologies, specifically remote sensing (RS) and geographic information systems (GIS), to investigate the impact of earthquakes on critical infrastructure in Kahramanmaraş. Critical infrastructure encompasses physical and digital systems crucial for national security, economic stability, and public well-being. Disruption or failure of these interdependent systems, including energy, transportation, communication, water supply, healthcare, and emergency services, can have profound impacts on regional security and societal necessities. Protecting and prioritizing critical infrastructure during disaster response is vital for minimizing damage and expediting recovery. The study employs an innovative approach by integrating building damage assessment results with Point of Interest (POI) data to swiftly assess earthquake effects on critical infrastructure in Kahramanmaraş. Real-time earthquake vulnerability of 57 critical infrastructure elements in 15 POI categories is analyzed. Results indicate financial institutions and commercial areas as the most damaged POIs, while muster points exhibit the least damage. Historical facilities, health facilities, governmental institutions, road facilities, and sports facilities also show varying degrees of damage. Overall, 34% of critical infrastructure structures experienced damage. The proposed method offers a pragmatic approach for rapidly identifying damaged critical infrastructure POIs during disaster-based assessments, addressing a research gap.

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来源期刊
Journal of the Indian Society of Remote Sensing
Journal of the Indian Society of Remote Sensing ENVIRONMENTAL SCIENCES-REMOTE SENSING
CiteScore
4.80
自引率
8.00%
发文量
163
审稿时长
7 months
期刊介绍: The aims and scope of the Journal of the Indian Society of Remote Sensing are to help towards advancement, dissemination and application of the knowledge of Remote Sensing technology, which is deemed to include photo interpretation, photogrammetry, aerial photography, image processing, and other related technologies in the field of survey, planning and management of natural resources and other areas of application where the technology is considered to be appropriate, to promote interaction among all persons, bodies, institutions (private and/or state-owned) and industries interested in achieving advancement, dissemination and application of the technology, to encourage and undertake research in remote sensing and related technologies and to undertake and execute all acts which shall promote all or any of the aims and objectives of the Indian Society of Remote Sensing.
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