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An analysis of the radar backscatter from oil-covered sea surfaces using moment method and Monte-Carlo simulation: preliminary results

Authors
Yang, Chan-SuPark, Seong-MinOh, YisokOuchi, Kazuo
Issue Date
Jan-2013
Publisher
SPRINGER
Keywords
method of moments; Monte-Carlo technique; oil spills; backscattering coefficient
Citation
ACTA OCEANOLOGICA SINICA, v.32, no.1, pp.59 - 67
Journal Title
ACTA OCEANOLOGICA SINICA
Volume
32
Number
1
Start Page
59
End Page
67
URI
https://scholarworks.bwise.kr/hongik/handle/2020.sw.hongik/17212
DOI
10.1007/s13131-013-0267-7
ISSN
0253-505X
Abstract
An analysis of the radar backscattering from the ocean surface covered by oil spill is presented using a microwave scattering model and Monte-Carlo simulation. In the analysis, a one-dimensional rough sea surface is numerically generated with an ocean waveheight spectrum for a given wind velocity. A two-layered medium is then generated by adding a thin oil layer on the simulated rough sea surface. The electric fields backscattered from the sea surface with two-layered medium are computed with the method of moments (MoM), and the backscattering coefficients are statistically obtained with N independent samples for each oil-spilled surface using the Monte-Carlo technique for various conditions of surface roughness, oil-layer thickness, frequency, polarization and incidence angle. The numerical simulation results are compared with theoretical models for clean sea surfaces and SAR images of an oil-spilled sea surface caused by the Hebei (Hebei province, China) Spirit oil tanker in 2007. Further, conditions for better oil spill extraction are sought by the numerical simulation on the effects of wind speed and oil-layer thickness at different incidence angles on the backscattering coefficients.
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