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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Quantitative reconstruction of ultrasound fields in optically transparent isotropic solids
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Quantitative reconstruction of ultrasound fields in optically transparent isotropic solids

机译:光学透明各向同性固体中超声场的定量重建

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This contribution reports on a method of utilizing light refractive tomography (LRT) to reconstruct ultrasound dilatation fields in optically transparent isotropic solids. Furthermore, it proposes the description of ultrasound in solids using a normal stress component, which shares the same unit with sound pressure and can be approximately derived from dilatation. After giving the theoretical support for this novel application, we reconstruct the distribution of normal stress ;8;zz in a cross section within poly(methyl methacrylate) (PMMA). Because of the lack of techniques for verifying the measurement results directly, systematic errors of the LRT measurements in PMMA are checked by comparing the results from LRT and hydrophone measurements in water. The small differences relative to the maximum pressure (e.g., <2% at the center) indicate the reliability of the corresponding LRT measurements in PMMA. With the aid of numerical simulations, the uncertainty of the reconstructed dilatation is determined to be about 5% near the rotation axis. We also succeed in reconstructing ultrasound fields throughout water and PMMA in time and in three spatial dimensions. The reconstructed fields match the corresponding numerical simulation quite well; e.g., the simulation predicts most of the phenomena emerging in the reconstructed images. The reliability of the measurement is then verified by calculating two quantities; each of them is computed with two different methods. Small differences between results are achieved in both cases (i.e., -5.1% and -1.3%).
机译:该贡献报告了一种利用光折射层析成像(LRT)在光学透明的各向同性固体中重建超声膨胀场的方法。此外,它提出了使用法向应力分量描述固体中的超声的方法,该法向应力分量与声压共享相同的单位,并且可以近似地从膨胀得出。在为这种新颖的应用提供理论支持之后,我们在聚甲基丙烯酸甲酯(PMMA)内的横截面中重构了法向应力; 8; zz的分布。由于缺乏直接验证测量结果的技术,因此通过比较LRT和水中水听器测量的结果来检查PMMA中LRT测量的系统误差。相对于最大压力的较小差异(例如,中心处<2%)表明PMMA中相应LRT测量的可靠性。借助于数值模拟,在旋转轴附近确定重构的膨胀的不确定性为大约5%。我们还成功地在时间和三个空间维度上重建了整个水和PMMA中的超声场。重建的场很好地匹配了相应的数值模拟。例如,模拟预测了在重建图像中出现的大多数现象。然后,通过计算两个量来验证测量的可靠性。他们每个人都有两种不同的方法来计算。在两种情况下,结果之间的差异都很小(即-5.1%和-1.3%)。

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