利用SAR图像和地理信息系统绘制沿海地区溢油应急响应图

H. Assilzadeh, Y. Gao
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引用次数: 9

摘要

溢油灾害是由于作业、运输、船舶事故、人为失误或洪水、地震等其他灾害而发生的意外事故。大多数石油泄漏发生在沿海和海洋环境,这使得事故的应急响应变得非常困难和复杂。复杂的作业涉及复杂的海洋和海岸条件,特别是在恶劣天气下,难以进入事故现场。这类事件的管理需要有组织的贡献,包括从监测和发现到减轻和救济的灾害行动的所有程序。本文介绍了SAR图像和GIS技术在沿海溢油治理中的应用方法。该框架是基于自动侦测和绘制溢油合成孔径雷达图像,并提供溢油位置和范围地图,其中包括溢油厚度和地理参考资料,如沿海地区的主要城镇和特征。然后将SAR图像处理的输出输入到溢油轨迹仿真模型中,模拟溢油的下一个目的地。溢油轨迹预测了溢油在海洋环境中的运动、扩散和海岸影响。轨迹模拟的输出向量用作创建其他灾害产品的输入数据,包括溢油风险图、受影响地区图和应急响应图。每个产品都展示了不同分析方面的结果,包括情景分析、风险分析、损害分析和应急响应分析,使用GIS中的卫星SAR图像和图像分析软件。所有的模型和应用程序都被描述和描述。
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Oil Spill emergency response mapping for coastal area using SAR imagery and GIS
Oil spill disaster is unexpected accident occurs through failures in operations, transportations, ship accidents, human errors or due to other disasters such as flood and earthquake. Most of oil spills happen in coastal and sea environment that make the emergency response for the accident much difficult and complicate. Intricate operations involve through complexity of sea and coastal conditions, especially in bad weather where the access to the accident site is difficult. Management of such event needs an organized contribution, covering all procedures of disaster operation from monitoring and detection to mitigation and relief. This paper presents methods of SAR image and GIS technology applications for oil spill management in coastal area. The developed framework is based on automatic detecting and mapping of oil spills in SAR image and provision of oil spill location and extent map which includes information about the spill thicknesses and geographic references such as major towns and features along the coastal area. The output from SAR image processing then transferred into oil spill trajectory simulation model to simulate the next destinations of oil spill. Oil spill trajectory predicts the movement, spreading, and coastal impact of oil spill in the marine environment. The output vectors from trajectory simulation used as input data for creating other disaster products including oil spill risk map, affected area map and emergency response map. Each product demonstrates the results from various analyses aspects, include situational analysis, risk analysis, damage analysis, and emergency response analysis using satellite SAR image in GIS and image analysis software. All the models and applications are described and depicted.
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