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An Experimental Study of the Special Aspects of Scalar-Vector Sound Field Spatial Structures in the Shallow Sea Area

机译:浅海区标量矢量声场空间结构特殊方面的实验研究

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摘要

This paper discusses the results of an experimental study of the spatial structure of a scalar-vector sound field formed during towing of a low-frequency acoustic source on the continental shelf of the Sea of Japan. Methodologically, the experiment was carried out by towing the acoustic source emitting a 134 Hz tone signal at a depth of 20 m on various acoustic paths at distances of up to 10 km from the combined receiving system, which consisted of a sound pressure receiver and three orthogonal sound pressure gradient components. Particular attention was paid to the investigation of the interference structure of scalar and vector fields in controlled hydrological conditions. The quantitative characteristics and features of the formation of signal interference at several depths along the tracks are discussed. The most interesting are the unique results of comparing horizontal and vertical field components, which make it possible to identify the presence of vortex structures in the acoustic source field on several tracks. The possibility of practical application of current research results is analyzed.
机译:本文讨论了在日本海洋大陆架上牵引期间形成的标量 - 矢量声场的空间结构的实验研究结果。方法上,通过在距离组合接收系统高达10公里的距离上的各种声学路径上牵引发射134Hz音调信号的声学源,通过距离距离电压接收器和三个组合的距离,通过牵引发射134Hz色调信号的声源,该实验在高达10千米的距离。正交声压梯度组件。特别注意对受控水文条件中标量的干扰结构和矢量场的调查。讨论了沿着轨道的几个深度形成信号干扰的定量特性和特征。最有趣的是比较水平和垂直场部件的独特结果,这使得可以在几个轨道上识别声源场中的涡流结构的存在。分析了当前研究结果实际应用的可能性。

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