论文标题

在高度异构背景中的超声成像

Ultrasonic imaging in highly heterogeneous backgrounds

论文作者

Pourahmadian, Fatemeh, Haddar, Houssem

论文摘要

这项工作正式研究了差异演化指标,作为在随机异质固体中弹性转化和破裂的超声跟踪的工具。在周期性传感的框架内,假定背景包含(i)一组多重连接的粘弹性,各向异性和分段均匀夹杂物,以及(ii)可能是不相交骨折和孔的结合。 (i)和(ii)中散射器的支持,材料特性和界面条件是未知的,而基质的弹性常数。该领域经历了任意化学机械起源的渐进式变化,以使其在未来时代的几何构型和弹性特性是不同的。在每个感应步骤$ t_ \ circ,t_1,\ ldots,$多模式事件都是由一组边界激发产生的,并且在观察表面上捕获了所得的散射场。然后,测试数据用于通过求解光谱散射方程来构建波前密度序列。在固定和不断发展的散点子上分析了与不同对获得的波前相关的入射场,以进行几何和弹性演化方案,既需要互生界面和体积变换。主要定理在静态裂缝的位点建立了相关入射场的不变性,并在给定的两对时间步长之间建立了夹杂物,同时证明了修改后区域相同字段的变化。这些结果为复杂复合材料成像的差分进化指标提供了理论上的基础,从而在具有许多未知特征的背景下实现了进化的独特层析成像。

This work formally investigates the differential evolution indicators as a tool for ultrasonic tracking of elastic transformation and fracturing in randomly heterogeneous solids. Within the framework of periodic sensing, it is assumed that the background contains (i) a multiply connected set of viscoelastic, anisotropic, and piecewise homogeneous inclusions, and (ii) a union of possibly disjoint fractures and pores. The support, material properties, and interfacial condition of scatterers in (i) and (ii) are unknown, while elastic constants of the matrix are provided. The domain undergoes progressive variations of arbitrary chemo-mechanical origins such that its geometric configuration and elastic properties at future times are distinct. At every sensing step $t_\circ, t_1, \ldots,$ multi-modal incidents are generated by a set of boundary excitations, and the resulting scattered fields are captured over the observation surface. The test data are then used to construct a sequence of wavefront densities by solving the spectral scattering equation. The incident fields affiliated with distinct pairs of obtained wavefronts are analyzed over the stationary and evolving scatterers for a suit of geometric and elastic evolution scenarios entailing both interfacial and volumetric transformations. The main theorem establishes the invariance of pertinent incident fields at the loci of static fractures and inclusions between a given pair of time steps, while certifying variation of the same fields over the modified regions. These results furnish a basis for theoretical justification of differential evolution indicators for imaging in complex composites which, in turn, enable the exclusive tomography of evolution in a background endowed with many unknown features.

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