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February 22, 2026Sensors0 citationsOpen Access

Beyond the Page: Solar Loading Thermographic Imaging and Predictive Modeling for Ancient Book Diagnostics—Preliminary Results

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EMElena MariniUniversity of L'AquilaGRGilda RussoUniversity of L'AquilaHZHai ZhangHarbin Institute of Technology

Key Points

  • The research focuses on using non-destructive testing techniques to detect subsurface defects in ancient books, aiming to improve their conservation.
  • Acquired thermographic images using solar loading thermography during a diagnostic campaign in Harbin, China.
  • Processed images with advanced image-processing methods including MdFIF, PCT, and RPCT.
  • Developed a predictive thermal model using numerical simulations in COMSOL Multiphysics®.
  • Compared localized thermal anomalies from both image processing and numerical simulation approaches.
  • Demonstrated the capability of non-destructive testing to reliably identify artificial defects.
  • Confirmed the effectiveness of advanced image processing combined with numerical simulation for diagnostic accuracy.
  • Enhanced detection of subtle or low-contrast thermal anomalies, supporting more informed conservation strategies.

Abstract

This study investigates the application of NDTs for the detection of sub-surface defects in an ancient book, with the aim of improving conservation methods in the field of cultural heritage. A sequence of thermographic images in a solar loading thermography (SLT) scenario was acquired during a diagnostic campaign in Harbin, China, to identify four distinct fabricated dowels made of Wool, Rubber, Teflon®, and Synthetic material. The images were processed in two ways: the first combined advanced image-processing methods: pre-processing via MdFIF, post-processing, PCT and RPCT, applied both to the original sequence and to the MdFIF-filtered thermograms. The second approach employed numerical simulations in COMSOL Multiphysics® to develop a predictive thermal model. The comparison of localized thermal anomalies obtained from the two approaches demonstrated the capability of NDTs to reliably reveal artificial defects, confirming their suitability for diagnostic conservation. Overall, the integration of advanced image processing with numerical simulation enhances diagnostic accuracy, particularly for subtle or low-contrast anomalies, thereby enabling more informed condition assessment and supporting rapid, targeted, and preventive conservation strategies.

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Cite This Study

Marini et al. (2026) studied this question.

synapsesocial.com/papers/699a9d7a482488d673cd365bhttps://doi.org/10.3390/s26041358
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