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Numerical and experimental study on wave propagation in granular media using a spectral-element method

机译:谱元法在颗粒介质中波传播的数值和实验研究

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Acoustic systems with various operating frequencies are commonly used for the detection of objects buried in the marine sediments. However, the propagation of acoustic waves in sediments is generally much more complicated than in water because sediments are, in general, granular media composed of solid and fluid parts. It makes the understanding of signals more difficult and engineers have to rely on a cut-and-try method for the design of the new sub-bottom devices which results in an increase of the total cost of sea surveys. Therefore, a better understanding of wave propagation in the granular media and of the numerical model used for the prediction of reflected signals from buried objects is required. In the present study, we evaluate the performances of the prediction tools based on the spectral element method for the simulation of backscattered signals by comparing them to experimental results obtained in a tank filled with water and calibrated glass beads having a wide range of ratio of the grain size to the wavelength.
机译:具有各种工作频率的声学系统通常用于检测掩埋在海洋沉积物中的物体。但是,声波在沉积物中的传播通常要比在水中传播复杂得多,因为沉积物通常是由固体和流体部分组成的颗粒介质。这使得对信号的理解更加困难,工程师不得不依靠“试穿”的方法来设计新的水下设备,这会导致海洋勘测的总成本增加。因此,需要对粒状介质中的波传播以及用于预测来自掩埋物体的反射信号的数值模型有更好的理解。在本研究中,我们通过将频谱分析方法与在装满水和比例比很宽的校准玻璃珠的水箱中获得的实验结果进行比较,评估了基于频谱元素法的背向散射信号仿真工具的性能。晶粒尺寸对波长的影响。

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