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Elastic least-squares reverse-time migration with density variation for flaw imaging in heterogeneous structures

机译:弹性最小二乘与异构结构中的瑕疵成像的密度变化相反 - 时间迁移

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摘要

Ultrasonic techniques are able to accurately detect and characterize flaws in homogeneous structures. Elastic reverse time migration (ERTM) is a powerful tool to reconstruct high-resolution images of flaws. To achieve images with better quality, the solution can be obtained by iteratively finding an image generating the modeled data which can best match the measured data in a least-squares sense, i.e. least-squares migration (LSM). Combing ERTM and LSM, conventional elastic least-squares reverse time migration (ELSRTM) methods are based on the assumption of a constant density, which can lead to inaccurate amplitudes and parameter crosstalk artifacts in the reconstructed images. In this paper, an ultrasonic imaging technique based on the ELSRTM which considers density as well as longitudinal-(L-) and shear-wave (S-wave) velocity variations is explored for imaging flaws in heterogeneous structures. The ELSRTM with density variations can simultaneously reconstruct density and L- and S-wave velocity images, which can provide amplitude-preserving images and mitigate crosstalk artifacts. This method is applied to numerical as well as physical laboratory experiments and the results appear promising for flaw identification in heterogeneous structures.
机译:超声波技术能够精确地检测和表征均匀结构中的缺陷。弹性相反时间迁移(ERTM)是重建漏洞的高分辨率图像的强大工具。为了实现具有更好质量的图像,可以通过迭代地找到生成建模数据的图像来获得解决方案,该模型可以最佳地匹配最小二乘isse中的测量数据,即最小二乘迁移(LSM)。梳理ERTM和LSM,传统的弹性最小二乘反向时间迁移(ELSRTM)方法基于恒定密度的假设,这可能导致重建图像中的不准确的幅度和参数串扰伪影。本文探讨了基于将密度以及纵向(L-)和剪切波(S波)和剪切波(S波)速度变化的超声成像技术用于异构结构中的成像缺陷。具有密度变化的ELSRTM可以同时重建密度和L型和S波速度图像,其可以提供幅度保存的图像和减轻串扰伪影。该方法适用于数值以及物理实验室实验,结果看起来有希望在异构结构中缺陷。

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