红外热成像在反热传导问题中的应用:热线源和边界条件的恢复

Christophe Le Niliot, Paulin Gallet
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引用次数: 51

摘要

本文介绍了红外热成像技术在解决反热传导问题中的应用。本文描述的方法是基于瞬态热扩散方程的边界元法。研究的逆问题涉及未知边界条件或热线源强度的时空重构。由于系统中缺乏信息,需要一些额外的测量来解决这个问题。在本文提出的例子中,额外的信息是由红外扫描仪提供的。红外图像中的测量值在模型中用作狄利克雷边界条件或指定扫描边界上的温度和热流密度的特殊边界条件。本文给出了线源强度识别和不可及边界上未知热通量重建的一些实验结果。文中所有的例子都与二维瞬态扩散有关。由于反问题是病态的,采用时间和空间正则化技术来稳定解,降低后者对测量误差的敏感性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Infrared thermography applied to the resolution of inverse heat conduction problems: recovery of heat line sources and boundary conditions

In this paper we present an application of infrared thermography for inverse heat conduction problems resolution. The approach described in the paper is based on a Boundary Element Method formulation of the transient heat diffusion equation. The inverse problems under investigation concern the time and space reconstruction of unknown boundary conditions or heat line source strength. As there is a lack of information in the system, some additional measurements are necessary to solve the problem. In the examples proposed in this paper the extra information is provided by an infrared scanner. The measurements contained in the infrared pictures are used in the model as a Dirichlet boundary condition or as a special boundary condition prescribing both temperature and heat flux density on the scanned boundary. We present some experimental results concerning line source strength identification and the reconstruction of unknown heat fluxes applied on an out of reach boundary. All the examples presented in this paper are related to 2D transient diffusion. As the inverse problem is ill-posed, time and space regularization techniques are used to stabilize the solution and reduce the sensitivity of the latter to measurement errors.

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