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Estimation of underwater acoustic fields at high frequencies

机译:高频水下声场估计

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A parametric modeling of the underwater acoustic field is investigated in a laboratory scale at high frequencies (150-850 kHz). The aim is to develop experimentally verifiable theoretical models to investigate the acoustic field propagation in elastic and viscoelastic or porous media. To achieve this goal, the efforts have been directed to three integral parts pertaining to the development of the methods. The first part deals with the modeling of the underwater acoustic field following different approaches. The second treats the development of an efficient estimator to identify the model parameters from the experimental data. The third and the final part is the experimental verification of the theoretical approaches. Two new but different approaches are investigated and compared for the modeling of the bounded field diffracted in a water medium. Once the parametric models for the incident underwater acoustic field are determined, the application to the estimation of acoustical properties of viscoelastic or porous media by transmission or reflection measurements is carried out.
机译:在实验室规模下以高频率(150-850 kHz)研究了水下声场的参数化模型。目的是开发可通过实验验证的理论模型,以研究声场在弹性和粘弹性或多孔介质中的传播。为了实现这个目标,已经将努力指向与方法开发有关的三个组成部分。第一部分以不同的方法处理水下声场的建模。第二种方法处理有效估计器的发展,以便从实验数据中识别模型参数。第三部分也是最后一部分是对理论方法的实验验证。研究了两种新的但不同的方法,并比较了在水介质中衍射的有界场的建模。一旦确定了入射水下声场的参数模型,就可以将其应用于通过透射或反射测量来估计粘弹性或多孔介质的声学特性。

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