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Jin Yaqiu,Huang Xingzhong,Yin Jieyi. 1993. Back-scattering from rough sea surface with foams. Acta Oceanologica Sinica, (4):563-572
Back-scattering from rough sea surface with foams
Back-scattering from rough sea surface with foams
Received:December 12, 1992  Revised:March 10, 1993
DOI:
Key words:Radiative transfer  two-scale randomly rough surface  back-scattering  wind
中文关键词:  Radiative transfer  two-scale randomly rough surface  back-scattering  wind
基金项目:This work was supported by the National Natural Science Foundation of China and Fok Ying Tung Education Foundation.
Author NameAffiliation
Jin Yaqiu Department of Electronic Engineering, Fudan University, Shanghai 200433, China 
Huang Xingzhong Department of Electronic Engineering, Fudan University, Shanghai 200433, China 
Yin Jieyi Department of Electronic Science, China East Normal University, Shanghai 200062, China 
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Abstract:
      By using iterative method to solve the vector radiative transfer equation of discrete scatterers with randomly rough under-boundary, the back-scattering coefficient is derived, and is applied to the two-scale model of sea surface with foam scatterers driven by strong wind.By employing the modified probability density function of Cox and Munk's, and Pierson's sea spectrum, numerical results of polarized back-scattering are calculated.The functional dependence on wind speed and direction, observation angle, polarization and other parameters are discussed, and theoretical results are favorably matched with experimental data.
中文摘要:
      By using iterative method to solve the vector radiative transfer equation of discrete scatterers with randomly rough under-boundary, the back-scattering coefficient is derived, and is applied to the two-scale model of sea surface with foam scatterers driven by strong wind.By employing the modified probability density function of Cox and Munk's, and Pierson's sea spectrum, numerical results of polarized back-scattering are calculated.The functional dependence on wind speed and direction, observation angle, polarization and other parameters are discussed, and theoretical results are favorably matched with experimental data.
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