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Numerical Modeling of a Time Reversal Experiment in Shallow Singapore Waters

机译:浅新加坡水域时间逆转实验的数值模型

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The Time Reversal Mirror (TRM) technique is a very useful tool in many underwater applications. Its usefulness in reverberation rejection and underwater communications has already been established through experiments by the Marine Physical Laboratory. The design of a TRM experiment is specific to the location and environment where it is being conducted. This paper presents theoretical and numerical analysis of a time reversal experiment which will be conducted in very shallow water (15-20m depth) in Singapore waters. The objective of the numerical simulation was to arrive at the various design parameters for the experiment and thus to predict its performance. The main parameters under question were the optimum frequencies to be used and the focusing ranges to be investigated. Extensive measurements were carried out at the selected site to obtain information about the ambient noise, time evolving sound speed structure and also the sound velocity in the sea-bed. The bottom sound speed was computed from the bulk density and porosity of the core samples collected from various locations at the site using an empirical formula. Direct measurements were also done to find out the propagation losses at three different frequencies (7.5, 10 and 12.5kHz) and at three different depths (4, 8 and 12m) over a 500m range. A short description of the system hardware also is presented.
机译:时间反镜(TRM)技术是许多水下应用中的一个非常有用的工具。它已经通过海洋物理实验室的实验建立了其对混响拒绝和水下通信的有用性。 TRM实验的设计特定于正在进行的位置和环境。本文介绍了一次逆转实验的理论和数值分析,该实验将在新加坡水域的非常浅水(15-20米深度)中进行。数值模拟的目的是到达实验的各种设计参数,从而预测其性能。所质量的主要参数是要使用的最佳频率,并进行对焦范围。在所选地点进行广泛的测量,以获得关于环境噪声,时间不断发展的声速结构以及海床的声速的信息。使用经验公式从现场的各个位置收集的核心密度和孔隙率计算底部声速。还进行了直接测量,以在三种不同频率(7.5,10和12.5kHz)和500米范围内的三种不同深度(4,8和12m)的传播损耗。还提出了系统硬件的简短描述。

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