Moisture in building materials, particularly in cultural heritage structures, can cause reduction in mechanical strength, decrease in indoor comfort and alteration of thermal properties, aesthetic decay, and even material loss. To non-invasively quantify moisture content in porous materials, Active Infrared Thermography was used. The method was applied in the laboratory on brick sample with different moisture contents, as well as on a reference stone sample with known thermophysical properties, to evaluate thermal inertia as a function of water content using a comparative approach. A heat flux was applied to the sample using a lamp, and thermal inertia was derived from the absorbed heat, influenced by the material’s absorption coefficient. An indirect optical calibration enables estimation of this coefficient without applying high-emissivity or high-absorption coatings, preserving the integrity of sensitive heritage materials.

Active IR Thermography for Assessing Moisture Content in Porous Building Materials: Application of the Thermal Inertia Method

Guolo, Erika
;
Bison, Paolo;Ferrarini, Giovanni;Peron, Fabio
2025-01-01

Abstract

Moisture in building materials, particularly in cultural heritage structures, can cause reduction in mechanical strength, decrease in indoor comfort and alteration of thermal properties, aesthetic decay, and even material loss. To non-invasively quantify moisture content in porous materials, Active Infrared Thermography was used. The method was applied in the laboratory on brick sample with different moisture contents, as well as on a reference stone sample with known thermophysical properties, to evaluate thermal inertia as a function of water content using a comparative approach. A heat flux was applied to the sample using a lamp, and thermal inertia was derived from the absorbed heat, influenced by the material’s absorption coefficient. An indirect optical calibration enables estimation of this coefficient without applying high-emissivity or high-absorption coatings, preserving the integrity of sensitive heritage materials.
2025
Proceedings AITA 2025
Inglese
129
12
1
4
4
MDPI
Basel
SVIZZERA
18th International Workshop on Advanced Infrared Technology and Applications (AITA 2025)
15-19 Settembre 2025
Kobe
Internazionale
contributo
Comitato scientifico
https://www.mdpi.com/2504-3900/129/1/12
active IR thermography; moisture content; thermophysical properties; building materials
Al momento della validazione, la ricerca del contributo in WOS ha dato esito negativo
no
open
info:eu-repo/semantics/conferenceObject
5
3. Contributo in atti di convegno (Proceedings)::3.1 Contributo in atti di convegno
Guolo, Erika; Cadelano, Gianluca; Bison, Paolo; Ferrarini, Giovanni; Peron, Fabio
273
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11578/365849
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