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Time Reversal Self-Adaptive Focusing in Anisotropic Elastic Solid Medium

机译:各向异性弹性固体介质中的时间反转自适应聚焦

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摘要

In this paper, the time reversal method in an anisotropic elastic solid is theoretically studied for the first time. The transversely isotropic anisotropic medium (6mm crystal structure) is modeled as the anisotropic elastic solid. Aunidirectional glass-reinforced epoxy-fiber is chosen as the material of the 6mm anisotropic medium. The time reversal acoustic field is numerically investigated by the ray approximation method. The focused acoustic field has different characteristics in different directions. The focused field is also symmetrical about the principal axes. It is found that the width of the principal lobe of the focused acoustic field reaches the minimum in the maximum group velocity direction and reaches the maximum in the minimum group velocity direction. The relation of the time reversal acoustic field to the parameters of the anisotropic medium is also studied in detail.
机译:本文首次对各向异性弹性固体中的时间反转方法进行了理论研究。将横观各向同性各向异性介质(6mm晶体结构)建模为各向异性弹性固体。选择单向玻璃纤维增​​强环氧树脂纤维作为6mm各向异性介质的材料。通过射线近似法对时间反向声场进行了数值研究。聚焦声场在不同方向上具有不同的特性。聚焦场也围绕主轴对称。发现聚焦声场的主波瓣的宽度在最大群速度方向上达到最小,并且在最小群速度方向上达到最大。还详细研究了时间反转声场与各向异性介质参数之间的关系。

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