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中文核心期刊

基于射线跟踪技术的浅海波导中目标回声计算

Echo calculation of targets submerged in a shallow water waveguide based on ray-tracing technique

  • 摘要: 基于浅海波导中目标回声计算的射线声学方法,将数值模型推广到任意声速剖面的情况,发展了基于射线跟踪技术的浅海波导中复杂目标回声的数值计算方法。应用HAPRO声线模型跟踪计算本征声线,并结合板块元方法计算浅海波导中的目标声散射。算例比较了冬、夏两季典型声速剖面和细沙、黏土海底等不同浅海环境情况下的目标回声特性。计算表明,浅海波导中球体和横向放置的长圆柱体的等效目标强度ETS与自由空间中的目标强度TS很接近,声速剖面和海底底质对这类目标的ETS影响很小,传统意义上的声呐方程基本上成立。竖向放置的长度/波长比远大于1长圆柱以及benchmark潜艇等复杂形状目标的ETS与自由空间中的TS差别较大,传统的主动声呐方程存在较大误差。

     

    Abstract: The geometrical acoustic method calculating echoes from targets submerged in a shallow water waveguide is y profile. A numerical procedure for calculating echoes from complex shaped objects based on ray-tracing technique is developed. The procedure incorporates HAPRO ray-tracing model to obtain eigenrays and planar elements method for scattering calculation. Several numerical examples are given to reveal the echo characteristics in different shallow water environments, especially for two typical velocity profiles in winter and summer, along with two bottom types of fine sand and clay respectively. The results indicate that Equivalent Target Strength (ETS) of a submerged sphere and an elongated cylinder set at cross direction in shallow water are close to their corresponding Target Strength (TS) in the free space. The ordinary active sonar equation is basically valid for this kind of targets which are insensitive to the velocity profile and bottom type. However, when length/wavelength is much larger than 1, ETS of an elongated cylinder set at longitudinal direction and some complicated targets such as benchmark submarine model are remarkably different with TS in the free space, so the ordinary active sonar equation has larger error.

     

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