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Study of scattering from time-varying Gerstners sea surface using second-order small slope approximation

Study of scattering from time-varying Gerstners sea surface using second-order small slope approximation
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摘要 Backscattered fields from one-dimensional time-varying Gerstners sea surface are calculated utilising the secondorder small slope approximation. It is well known that spectral properties of the backscattered echoes relate to the velocity of the small elementary scatterers on sea surface profiles. Therefore, modeling Doppler spectra from the ocean requires an accurate description of the sea surface motion. The profile of nonlinear Gerstners sea surface shows verticalskewness of sea waves, it is sharper at the crest and flatter at the trough than linear waves, and its maximum slope position is closer to the crest than to the trough. Furthermore, the horizontal component of the small elementary scatterers orbit velocity on the sea surface, which yields noticeable influence on Doppler spectra, can be obtained conveniently by Gerstners sea surface model. In this study the characteristics of Doppler spectra of backscattered fields from time-varying Gerstners sea surface are investigated and the dependences of the Doppler frequency and the Doppler bandwidth on the parameters, such as the wind speed, the radar frequency, the incident angle, etc. are discussed. It is shown that the Doppler bandwidth of microwave scattered fields from Gerstners sea surface is considerably broadened. For the case of high frequency backscattered fields, the values of the higher-order spectrum peaks are larger than those obtained by linear sea surface. Backscattered fields from one-dimensional time-varying Gerstners sea surface are calculated utilising the secondorder small slope approximation. It is well known that spectral properties of the backscattered echoes relate to the velocity of the small elementary scatterers on sea surface profiles. Therefore, modeling Doppler spectra from the ocean requires an accurate description of the sea surface motion. The profile of nonlinear Gerstners sea surface shows verticalskewness of sea waves, it is sharper at the crest and flatter at the trough than linear waves, and its maximum slope position is closer to the crest than to the trough. Furthermore, the horizontal component of the small elementary scatterers orbit velocity on the sea surface, which yields noticeable influence on Doppler spectra, can be obtained conveniently by Gerstners sea surface model. In this study the characteristics of Doppler spectra of backscattered fields from time-varying Gerstners sea surface are investigated and the dependences of the Doppler frequency and the Doppler bandwidth on the parameters, such as the wind speed, the radar frequency, the incident angle, etc. are discussed. It is shown that the Doppler bandwidth of microwave scattered fields from Gerstners sea surface is considerably broadened. For the case of high frequency backscattered fields, the values of the higher-order spectrum peaks are larger than those obtained by linear sea surface.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2010年第5期260-268,共9页 中国物理B(英文版)
基金 Project supported by the Young Scientists Fund of the National Natural Science Foundation of China (Grant No. 40906088) the National Natural Science Foundation of China (Grant No. 60971067) Specialised Research Fund for the Doctoral Program of Higher Education (Grant No. 200804231021)
关键词 Gerstners sea surface electromagnetic scattering Doppler spectra second-order small slope approximation Gerstners sea surface, electromagnetic scattering, Doppler spectra, second-order small slope approximation
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参考文献20

  • 1Toporkov J V and Brown G S 2000 IEEE Trans. Geosci. Remote Sensing 38 1616.
  • 2Apel J R 1994 J. Geophys. Res. 99 16269.
  • 3Rino C L, Crystal T L, Koide A K, Ngo H D and Guthart H 1991 Radio Sci. 26 51.
  • 4Johnson J T, Toporkov J V and Brown G S 2001 IEEE Trans. Geosci. Remote Sensing 39 2411.
  • 5Guo L X, Wang R, Wang Y H and Wu Z S 2008 Acta Phys. Sin. 57 3464 (in Chinese).
  • 6Guo L X, Wang R, Wang Y H and Wu Z S 2005 Acta Phys. Sin. 54 96 (in Chinese).
  • 7Barrick D E 1977 Remote Sensing Environ. 6 201.
  • 8Barrick D E 1977 Radio Sci. 12 415.
  • 9Lipa B 1978 J. Geophys. Res. 83 959.
  • 10Gerstner F J 1809 Also Reprinted in Ann. der Physik 32 412.

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