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Normal mode acoustic intensity flux in Pekeris waveguide and its cross spectra signal processing (2009 No.1)
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HUI Junying SUN Guocang ZHAO Anbang

 

(College of Underwater Acoustic Engineering, Harbin Engineering University  Harbin 150001)

 

Received Jan.9, 2008

 

Revised Feb.2, 2008

 

Abstract The layered media normal mode theory has been well established in the middle of the last century, but few attentions have been paid to the practice velocity field. The combined descriptions of the pressure field and particle velocity field in Pekeris waveguide, especially the vertical acoustic intensity flux are proposed in this paper. The result of the study shows that both the horizontal and the vertical acoustic intensity flux have active and reactive component because of the interference between the normal modes. When an acoustic vector sensor is placed appropriately, the reactive component of the vertical acoustic intensity flux in low frequency acoustic field can be used to tell the source's specified depth, although it can't transport energy. Then the reactive component of the vertical acoustic intensity flux is of importance for vector signal processing. The pressure and particle velocity cross spectra signal processing algorithm is proposed to distinguish the targets.

 

PACS numbers: 43.30, 43.60

 
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