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Design and Construction of a Specified Rough Interface for Calibrated Acoustic Measurements

机译:校准声学测量指定粗略接口的设计与构造

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Several mechanisms have been proposed to explain the observed penetration of an incident acoustic wave into sediment at angles below the compressional critical angle. A series of well-controlled laboratory measurements were made and compared with the results of a first-order perturbation theory model to evaluate the accuracy of one of these mechanisms, transmission due to interface roughness. An acrylic disc was used to mimic sediment in the laboratory measurements. Properties of the acrylic were determined in the initial measurements and then used to construct a numerical model. The model was validated by a later set of measurements and then extended for the rough interface case through the addition of first-order perturbation theory scattering terms. The extended model was used to select a roughness spectrum for use in a transmission-type scattering experiment. A realization of the roughness spectrum was machined into one face of the acrylic disc. Considerable care was required in the fabrication of the rough interface as its accuracy was essential to the success of the experiment. The results of the transmission-type scattering experiment compared well with the results of the model and clearly demonstrated subcritical scattering at the water-acrylic boundary due to interface roughness.
机译:已经提出了几种机制来解释入射声波在压缩临界角下方的角度下观察到的入射声波沉积物。进行了一系列良好的受控实验室测量,并与一阶扰动理论模型的结果进行了比较,以评估这些机制之一的准确性,由于界面粗糙度而传输。丙烯酸盘用于模拟实验室测量中的沉积物。在初始测量中测定丙烯酸的性质,然后用​​于构建数值模型。通过稍后的一组测量来验证该模型,然后通过添加一阶扰动理论散射术语来延伸粗略界面案例。扩展模型用于选择用于传输式散射实验的粗糙度频谱。将粗糙度光谱的实现加工成丙烯酸盘的一面。在制造粗糙的界面时需要相当大的护理,因为它的准确性对实验成功至关重要。透射型散射实验的结果与模型的结果相比较,并且由于界面粗糙度而清楚地证明了在水 - 丙烯酸边界处的亚临界散射。

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