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A Review of Oil Spill Remote Sensing

机译:溢油遥感研究述评

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摘要

The technical aspects of oil spill remote sensing are examined and the practical uses and drawbacks of each technology are given with a focus on unfolding technology. The use of visible techniques is ubiquitous, but limited to certain observational conditions and simple applications. Infrared cameras offer some potential as oil spill sensors but have several limitations. Both techniques, although limited in capability, are widely used because of their increasing economy. The laser fluorosensor uniquely detects oil on substrates that include shoreline, water, soil, plants, ice, and snow. New commercial units have come out in the last few years. Radar detects calm areas on water and thus oil on water, because oil will reduce capillary waves on a water surface given moderate winds. Radar provides a unique option for wide area surveillance, all day or night and rainy/cloudy weather. Satellite-carried radars with their frequent overpass and high spatial resolution make these day–night and all-weather sensors essential for delineating both large spills and monitoring ship and platform oil discharges. Most strategic oil spill mapping is now being carried out using radar. Slick thickness measurements have been sought for many years. The operative technique at this time is the passive microwave. New techniques for calibration and verification have made these instruments more reliable.
机译:对溢油遥感的技术方面进行了检查,并以展开技术为重点给出了每种技术的实际用途和缺点。可见技术的使用无处不在,但仅限于某些观察条件和简单的应用。红外摄像机可以作为漏油传感器,但有一些局限性。两种技术虽然功能有限,但由于其经济性的提高而被广泛使用。激光氟传感器独特地检测包括海岸线,水,土壤,植物,冰和雪在内的基底上的油。在最近几年中出现了新的商业部门。雷达可以检测出水面上的平静区域,因此可以检测出水面上的油,因为在中等风速下,油会减少水面上的毛细波。雷达为全天候监视,白天或黑夜以及阴雨天气提供了独特的选择。卫星式雷达具有频繁的立交桥和较高的空间分辨率,因此这些昼夜和全天候传感器对于描绘大范围溢油和监控船舶和平台油的排放至关重要。现在,大多数战略漏油图都是使用雷达进行的。滑动厚度测量已经被寻求了很多年。此时的手术技术是无源微波。校准和验证的新技术使这些仪器更加可靠。

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