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首页> 外文期刊>Journal of Heat Transfer >Diffusion-Based Thermal Tomography
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Diffusion-Based Thermal Tomography

机译:基于扩散的热层析成像

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摘要

Thermal imaging is one of the fastest growing areas of nondestructive testing. The basic idea is to apply heat to a material and study the way the temperature changes within the material to learn about its composition. The technique is rapid, relatively inexpensive, and, most importantly, has a wide coverage area with a single experimental measurement. One of the main research goals in thermal imaging has been to improve flaw definition through advanced image processing. Tomographic imaging is a very attractive way to achieve this goal. Although there have been some attempts to implement tomographic principles for thermal imaging, they have been only marginally successful. One possible reason for this is that conventional tomography algorithms rely on wave propagation (either electromagnetic or acoustic) and are inherently unsuitable for thermal diffusion without suitable modifications. In this research program, a modified approach to thermal imaging is proposed that fully accounts for diffusion phenomena in a tomographic imaging algorithm. Here, instead of the large area source used in conventional thermal imaging applications, a raster scanned point source is employed in order to provide the well-defined source-receiver positions required for tomographic imaging. An algorithm for the forward propagation problem, based on the Galerkin finite element method in connection with the corresponding weak formulation for the thermal diffusion is considered. A thermal diffusion modified version of the algebraic reconstruction technique (ART) is used for image reconstruction. Examples of tomographic images are presented from synthetically generated data to illustrate the utility of the approach.
机译:热成像是无损检测发展最快的领域之一。基本思想是对材料施加热量并研究材料内部温度的变化方式,以了解其组成。该技术是快速的,相对便宜的,并且最重要的是,具有单个实验测量的覆盖范围很广。热成像的主要研究目标之一是通过高级图像处理来改善缺陷的清晰度。层析成像是实现此目标的一种非常有吸引力的方法。尽管已经进行了一些尝试来实现热成像的断层扫描原理,但是它们只是勉强成功。造成这种情况的一个可能原因是,常规层析成像算法依赖于波传播(电磁或声波传播),并且固有地不适合进行热扩散而没有适当的修改。在此研究计划中,提出了一种改进的热成像方法,该方法充分考虑了层析成像算法中的扩散现象。在这里,代替常规热成像应用中使用的大面积光源,而是采用光栅扫描点光源,以提供断层成像所需的轮廓分明的光源-接收器位置。考虑了基于Galerkin有限元方法并结合相应的热扩散弱公式的正向传播算法。代数重建技术(ART)的热扩散修改版本用于图像重建。从合成生成的数据中显示了层析图像的示例,以说明该方法的实用性。

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