首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >CLOUD-BASED GEOSPATIAL PLATFORM IN SUPPORT OF SUSTAINABLE DEVELOPMENT GOALS 2030: HOW TO BE PREPARED FOR EARTHQUAKE DISASTERS?
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CLOUD-BASED GEOSPATIAL PLATFORM IN SUPPORT OF SUSTAINABLE DEVELOPMENT GOALS 2030: HOW TO BE PREPARED FOR EARTHQUAKE DISASTERS?

机译:基于云的地理空间平台支持可持续发展目标2030:如何为地震灾害做好准备?

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In July 2, 2018, the United Nations Economic and Social Council (ECOSOC) adopted a resolution of the strategic framework of disaster risk reduction. Many seismic countries have experienced challenges with natural hazards, such as earthquakes every year. Seismic safety monitoring and infrastructures, including building vulnerability assessment of earthquake are significant means to protect the safety of people and reduce the loss of property. We present cloud-based Geospatial Information Technologies in this study to support the Sustainable Development Goals (SDGs) 2030 in earthquake disaster loss reduction, mitigation, and resilience. The authors investigated and programmed the instruction building codes of the Federal Emergency Management Agency. We developed sophisticated algorithms to construct a geospatial cloud-based system to support the implementation of disaster risk reduction for strengthening infrastructures and resiliency of pre and post-earthquakes. However, the content is entirely based on the understanding of geospatial knowledge, engineering, and services to the people for a better world for future generations. The objectives of this study are to (1) participate in global sharing of experiences on utilizing geospatial information technologies to address disasters resilience and challenging issues of determining the vulnerability of buildings and estimation of risk as well as recommendation for retrofitting; and (2) developing Geospatial Infrastructure Management Ecosystem (GeoIME) including, Geospatial Rapid Visual Screening (GeoRVS) cloud-based platform. They enable the determination of the vulnerability of infrastructures, such as buildings and the estimation of risk for disaster reduction and management. This study shows that we reduced the cost and time for inspecting a building by 75% and %80, respectively. The application of this study can be used for retrofitting and rehabilitation of infrastructures like buildings and bridges for before and after earthquakes. Finally, we propose recommendations that might be helpful to countries having similar issues, and it has great potential for scalability and customization in other disasters such as floods.
机译:2018年7月2日,联合国经济及社会理事会(ECOSOC)通过了解决减少灾害风险战略框架的决议。许多地震国家对每年的地震等自然灾害产生了挑战。地震安全监测和基础设施,包括建筑漏洞评估地震的评估是保护人们的安全性并降低财产损失的重要手段。我们在本研究中展示基于云的地理空间信息技术,以支持地震灾害丢失,减缓和弹性的可持续发展目标(SDGS)2030。作者调查并编程了联邦应急管理机构的指令建筑规范。我们开发了复杂的算法,以构建基于地理空间云的系统,以支持减少灾害风险的实施,以加强地震后和后地震的基础设施和弹性。然而,内容完全基于对人民对人民的理解,为未来几代人提供更美好的世界。本研究的目标是(1)参与全球共享关于利用地理空间信息技术的经验,以解决灾害恢复力,具有挑战性的解决建筑物脆弱性和风险估算的问题以及改造的建议; (2)开发地理空间基础设施管理生态系统(地理时间),包括地理空间快速视觉筛选(Georvs)基于云的平台。它们能够确定基础设施的脆弱性,例如建筑物和减灾和管理风险的估算。本研究表明,我们降低了将建筑物分别检验75%和%80的成本和时间。本研究的应用可用于改装和恢复地震前后建筑物和桥梁等基础设施。最后,我们提出了可能对具有类似问题的国家有帮助的建议,并且在洪水等其他灾难中具有巨大可扩展性和定制的潜力。

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