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首页> 外文期刊>Frontiers in Environmental Science >The Value of Near Real-Time Earth Observations for Improved Flood Disaster Response
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The Value of Near Real-Time Earth Observations for Improved Flood Disaster Response

机译:近实时地球观测对改善洪水灾害响应的价值

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Information is a critical resource in disaster response scenarios. Data regarding the geographic extent, severity, and socioeconomic impacts of a disaster event can help guide emergency responders and relief operations, particularly when delivered within hours of data acquisition. Information from remote observations provides a valuable tool for assessing conditions ‘on the ground’ more quickly and efficiently. Here, we evaluate the social value of a near real-time flood impact system using a disaster response case study, and quantify the Value of Information (VOI) of satellite-based observations for rapid response using a hypothetical flooding disaster in Bangkok, Thailand. MODIS imagery from NASA’s Land, Atmosphere Near real-time Capability for EOS (LANCE) system is used to produce operational estimates of inundation depths and economic damages. These rapid Earth observations are coupled with a decision-analytical model to inform decisions on emergency vehicle routing. Emergency response times from vehicles routed using flood damage data are compared with baseline routes without the benefit of advance information on road conditions. Our results illustrate how the application of near real-time Earth observations can improve the response time and reduce potential encounters with flood hazards when compared with baseline routing strategies. Results indicate a potential significant economic benefit (i.e. millions of dollars) from applying near real-time Earth observations for improved flood disaster response and management.
机译:在灾难应对方案中,信息是至关重要的资源。有关灾难事件的地理范围,严重性和社会经济影响的数据可以帮助指导应急人员和救援行动,尤其是在数据采集小时之内交付时。来自远程观测的信息提供了一种宝贵的工具,可以更快,更有效地评估“地面”状况。在这里,我们使用灾害响应案例研究来评估近实时洪水影响系统的社会价值,并使用泰国曼谷的假设洪水灾害来量化基于卫星的观测对快速响应的信息价值(VOI)。来自NASA的土地,大气的MODIS图像EOS(LANCE)系统的近实时功能用于生成淹没深度和经济损失的运营估算。这些快速的地球观测与决策分析模型相结合,可为应急车辆路线的决策提供依据。将使用洪灾损失数据路由的车辆的应急响应时间与基准路线进行比较,而无需事先提供路况信息。我们的结果说明了与基准路由策略相比,近实时地球观测的应用如何能够改善响应时间并减少洪水威胁的潜在危害。结果表明,通过应用近乎实时的地球观测结果来改善洪水灾害的响应和管理,可能产生潜在的重大经济效益(即数百万美元)。

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