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首页> 外文期刊>Journal of Sensors >Geometrical Properties of Spilled Oil on Seawater Detected Using a LiDAR Sensor
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Geometrical Properties of Spilled Oil on Seawater Detected Using a LiDAR Sensor

机译:使用LIDAR传感器检测到海水上溢油的几何特性

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摘要

We report on a small-size light detection and ranging (LiDAR) sensor, which offers the possibility of being used in the field during oil spill incidents. In the present study, we develop an algorithm that can distinguish between seawater and oil through the use of a laser at 905?nm wavelength. We investigate the ability of the sensor to detect three different oil types (light crude, bunker A, and bunker C) through experiments and analyze the differences between the types and volumes of spilled oil (1, 5, 10, 15, 20, 25, 30, 35, 40, and 50?mL). The results showed that our algorithm for detecting oil spills over seawater was successful: the LiDAR sensor was able to detect different oil types and volumes. Spilled oil area coverage ranged by more than 50% of the detected area, and the viscosity of bunker C oil reached up to 73%. In addition, the experimental oil spills were mainly formed of oil films of 1?mm and 2?mm thicknesses, which confirmed geometrical properties. Follow-up research should further investigate the characteristics of oil slick thickness measured by the LiDAR system and undertake field tests to assess the feasibility of using the LiDAR system in pollution incidents.
机译:我们报告了一个小尺寸的光检测和测距(LIDAR)传感器,其提供了在漏油事件中使用的可能性。在本研究中,我们开发了一种算法,可以通过在905Ω波长下使用激光来区分海水和油。我们调查传感器通过实验检测三种不同的油类型(轻质原油,掩盖A和Bunker C)的能力,并分析溢油类型和体积之间的差异(1,5,10,15,20,25 ,30,35,40和50?ml)。结果表明,我们在海水上检测漏油的算法是成功:激光雷达传感器能够检测不同的油类型和体积。溢出的油面积覆盖率范围为50%以上的检测区域,掩体C油的粘度达到高达73%。此外,实验油溢出主要由油膜形成1Ωmm和2毫米的厚度,这确认了几何特性。后续研究还应进一步调查LIDAR系统测量的油光滑厚度的特性,并进行现场测试,以评估使用LIDAR系统在污染事件中的可行性。

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