A blade coating inspection method based on an electromagnetic inverse scattering approach

A. Randazzo, E. Pignone
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引用次数: 2

Abstract

The quantitative evaluation of blade coatings is a key task for evaluating the structural integrity in power generation plants. Several conventional techniques are available, e.g., the ones based on micrographic analysis and eddy current techniques. However, the small thickness (of the order of hundreds of microns) of the highly conductive coatings of the blades allows the use of electromagnetic fields to inspect those structures. In this paper, an innovative multi-frequency approach based on electromagnetic waves is preliminarily proposed. In this method, the coating characterization problem is formulated as an inverse scattering problem, in which the measured scattered-field data are inverted in order to retrieve the information on the relevant diagnostic parameters. A new and efficient inversion technique, which exhibit high regularization capabilities, is employed. In this paper, the proposed approach is preliminary validated by means of a simplified structure, in order to study its feasibility for the solution of the coating characterization problem.
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基于电磁逆散射法的叶片涂层检测方法
叶片涂层的定量评价是电站结构完整性评价的关键。几种传统的技术是可用的,例如,基于显微分析和涡流技术的技术。然而,叶片的高导电性涂层的小厚度(几百微米的数量级)允许使用电磁场来检查这些结构。本文初步提出了一种基于电磁波的创新多频方法。在该方法中,涂层表征问题被表述为一个反散射问题,即对测量的散射场数据进行反演,以检索相关诊断参数的信息。采用了一种新的、高效的、具有高正则化能力的反演技术。本文通过一个简化的结构对所提出的方法进行了初步验证,以研究其解决涂层表征问题的可行性。
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