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Numerical and Imitative Simulation of Sound Signal and Noise Propagation in Shallow Sea

机译:浅海中声信号和噪声传播的数值和模拟

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On the basis of the exact wave approach and under the using of the imbedding method ideas the correspondent software was developed and calculations of acoustical fields in the shallow sea from monochromatic source, radiating in the middle frequencies 500 - 1000 Hz, were carried out. We investigate the influence of real factors presenting in the coastal ocean area on the possibilities of a reception of useful signal from the source. Namely these are the antiwaveguide sound speed depth stratification, having the features of the thermocline origin, the presence of a bottom, having some complex impedance structure, finally the presence of a complex field of the underwater acoustical noise. For the last factor the possibilities of imitative simulation are considered. Sound field simulation is carried out on an example of the scalar and vectorial power characteristic behaviour, namely these are the acoustical energy (scalar intensity) and the sound power flux density (vector). The considered models and calculation results can be useful for the prognosis of results of experimental measurements in a coastal ocean area.
机译:在精确的波路方法和在使用嵌入式方法思想的基础上,开发了通信软件并从单色源计算浅海中的声场,进行中频率500-1000Hz。我们调查沿海海域呈现在沿海海域的实际因素对来自来源的有用信号的可能性的影响。即,这些是抗摆尺度声速深度分层,具有热管源的特征,底部的存在,具有一些复杂的阻抗结构,最后存在水下声学噪声的复杂场。对于最后一个因素,考虑了模拟模拟的可能性。声场仿真在标量和矢量功率特性行为的示例上进行,即这些是声能(标量强度)和声音电量密度(向量)。考虑的模型和计算结果对于沿海地区的实验测量结果的预后可用。

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